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Abner Bucol | Silliman University - Academia.edu

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class="left-panel-container"><div class="user-info-component-wrapper"><div class="user-summary-cta-container"><div class="user-summary-container"><div class="social-profile-avatar-container"><img class="profile-avatar u-positionAbsolute" alt="Abner Bucol" border="0" onerror="if (this.src != &#39;//a.academia-assets.com/images/s200_no_pic.png&#39;) this.src = &#39;//a.academia-assets.com/images/s200_no_pic.png&#39;;" width="200" height="200" src="https://0.academia-photos.com/47324603/13127361/14440109/s200_abner.bucol.jpg" /></div><div class="title-container"><h1 class="ds2-5-heading-sans-serif-sm">Abner Bucol</h1><div class="affiliations-container fake-truncate js-profile-affiliations"><div><a class="u-tcGrayDarker" href="https://silliman.academia.edu/">Silliman University</a>, <a class="u-tcGrayDarker" href="https://silliman.academia.edu/Departments/Biology/Documents">Biology</a>, <span class="u-tcGrayDarker">Graduate Student</span></div></div></div></div><div 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data-broccoli-component="user-info.followees-count" data-click-track="profile-expand-user-info-following"><p class="label">Following</p><p class="data">13</p></div></a><a><div class="stat-container js-profile-coauthors" data-broccoli-component="user-info.coauthors-count" data-click-track="profile-expand-user-info-coauthors"><p class="label">Co-authors</p><p class="data">7</p></div></a><a href="/ABucol/mentions"><div class="stat-container"><p class="label">Mentions</p><p class="data">1</p></div></a><span><div class="stat-container"><p class="label"><span class="js-profile-total-view-text">Public Views</span></p><p class="data"><span class="js-profile-view-count"></span></p></div></span></div></div></div><div class="right-panel-container"><div class="user-content-wrapper"><div class="uploads-container" id="social-redesign-work-container"><div class="upload-header"><h2 class="ds2-5-heading-sans-serif-xs">Uploads</h2></div><div class="nav-container backbone-profile-documents-nav 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js-tab-pane tab-pane active" id="all"><div class="profile--tab_heading_container js-section-heading" data-section="Papers" id="Papers"><h3 class="profile--tab_heading_container">Papers by Abner Bucol</h3></div><div class="js-work-strip profile--work_container" data-work-id="113803064"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/113803064/What_Determines_the_Minimum_Body_Size_for_Vertebrates"><img alt="Research paper thumbnail of What Determines the Minimum Body Size for Vertebrates?" class="work-thumbnail" src="https://a.academia-assets.com/images/blank-paper.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/113803064/What_Determines_the_Minimum_Body_Size_for_Vertebrates">What Determines the Minimum Body Size for Vertebrates?</a></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">The minimum body size of vertebrate species lies just above 6 millimeters, in stark contrast to t...</span><a class="js-work-more-abstract" data-broccoli-component="work_strip.more_abstract" data-click-track="profile-work-strip-more-abstract" href="javascript:;"><span> more </span><span><i class="fa fa-caret-down"></i></span></a><span class="js-work-more-abstract-untruncated hidden">The minimum body size of vertebrate species lies just above 6 millimeters, in stark contrast to the minimum sizes attained by species of other major taxonomic groups. This paper presents two connected hypotheses explaining this minimum size obtainable with a vertebrate Bauplan.Firstly, the complex bodies of vertebrates might not be amendable to reduction below a certain level of complexity. We hypothesize that this lower limit for organ complexity hold especially true for the vertebrate body’s most complex organ, the brain. This is at least partially due to poor scaling of the brain to small sizes, and a coding strategy known as population coding. In the context of poor scaling of a complex Bauplan, we discuss the relative sparsity of paedomorphism and parasitism in vertebrates.Second, these constrains will disproportionately affect the smaller bodies and brains of juvenile or larval animals. This, in turn requires a certain minimum egg size to for a juvenile or larva to reach a size where it can independently function. Due to that minimum egg size, the number of eggs per female will decrease with decreasing female body size, indirectly limiting adult size. That problem is likely aggravated since extremely small animals are likely to be low in the food web and in need of high reproductive rates to offset high mortalities caused by predation. Hence, below a certain body size a female will not be able to produce enough eggs to reach the population replacement value. We demonstrate the scaling relationships relevant for this argument with data from gobiid fishes. The first argument is about animal body complexity; the second argument stems from ecology.</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="113803064"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="113803064"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 113803064; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=113803064]").text(description); $(".js-view-count[data-work-id=113803064]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 113803064; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='113803064']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 113803064, container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (false){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "-1" } } $('.js-work-strip[data-work-id=113803064]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":113803064,"title":"What Determines the Minimum Body Size for Vertebrates?","translated_title":"","metadata":{"abstract":"The minimum body size of vertebrate species lies just above 6 millimeters, in stark contrast to the minimum sizes attained by species of other major taxonomic groups. 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Higher temperatures are often associated with smaller size, rapid initial growth rates, and early maturation, generally described as the Temperature-Size Rule (TSR). The longevity of most ectotherms also declines at warmer, lower latitudes. However, these patterns may be modified by increases in food resources that can flow on to continuous growth and large adult size. The present study estimates age-based demographic parameters of large-bodied tropical wrasses (Hemigymnus melapterus, H. fasciatus, Cheilinus fasciatus, and Oxycheilinus digramma) collected from Philippine fish markets (9-11°N) and sampled from Palm (18.53-18.70°S) and Whitsunday (20.05-20.21°S) reefs on the Great Barrier Reef, Australia (GBR). Differences in longevity, initial growth rates, and the age at sexual maturation at a biogeographic scale, between the Philippines and GBR, conformed to predictions of the TSR. However, Philippine specimens exhibited greater relative body condition and sustained periods of growth beyond sexual maturity resulting in larger adult size than GBR samples. Size-structure data from Philippine marine reserves and fished sites indicated that these differences were not confounded by fishery-dependent sampling. Moreover, latitudinal length-weight relationships could not be explained by lower densities of the focal wrasses in the Philippines or by relative gonad size. Less pronounced patterns of demographic variation that differed across species were evident at a regional scale, among Palm and Whitsunday reefs. Patterns of demographic variation between the Philippines and GBR strongly suggest that differences in food resource levels will be important in explaining the observed geographic variation.","publication_date":{"day":22,"month":8,"year":2022,"errors":{}},"publication_name":"Marine Biology","grobid_abstract_attachment_id":110671438},"translated_abstract":null,"internal_url":"https://www.academia.edu/113803062/Patterns_of_biogeographic_and_regional_life_history_trait_variation_in_four_large_bodied_tropical_wrasses","translated_internal_url":"","created_at":"2024-01-20T22:41:47.859-08:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":47324603,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":110671438,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/110671438/thumbnails/1.jpg","file_name":"s00227-022-04098-9.pdf","download_url":"https://www.academia.edu/attachments/110671438/download_file?st=MTczMzE2NjI4Niw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Patterns_of_biogeographic_and_regional_l.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/110671438/s00227-022-04098-9-libre.pdf?1705820817=\u0026response-content-disposition=attachment%3B+filename%3DPatterns_of_biogeographic_and_regional_l.pdf\u0026Expires=1733169885\u0026Signature=Q76Z01EoW98IaHYrsCxNNNGAGu8dz--K0x4UxMw1xGcLKjyxM74~32xa-4VaLc7hN29ae2pJJGvLznyR92XDVslvTNsIJinf4v-UEmWo8G4UkIOSfxnWKsmD7X-RKEn3rQfVr~tt2hbJncNZU9uB-WMJfnsuc3ycmmZJSPwxXG2nbLZM291GZzdJ-UmRBqXx8vRzK4Qi0EdE3Bt5y9E9W8doWRJXeIWZWVSY-sBJgv~mGzVSyWIEn4qYS0NjoRPUCRUi6NWexmvkD9CnI8sNcJGCHNkf7CDqR0eXKDQOObZSEiEjyx2sL~Ihm6SvTn2M3F1oblOSQPsrW~5pHAPuSw__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"Patterns_of_biogeographic_and_regional_life_history_trait_variation_in_four_large_bodied_tropical_wrasses","translated_slug":"","page_count":16,"language":"en","content_type":"Work","owner":{"id":47324603,"first_name":"Abner","middle_initials":null,"last_name":"Bucol","page_name":"ABucol","domain_name":"silliman","created_at":"2016-04-19T02:08:19.082-07:00","display_name":"Abner Bucol","url":"https://silliman.academia.edu/ABucol"},"attachments":[{"id":110671438,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/110671438/thumbnails/1.jpg","file_name":"s00227-022-04098-9.pdf","download_url":"https://www.academia.edu/attachments/110671438/download_file?st=MTczMzE2NjI4Niw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Patterns_of_biogeographic_and_regional_l.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/110671438/s00227-022-04098-9-libre.pdf?1705820817=\u0026response-content-disposition=attachment%3B+filename%3DPatterns_of_biogeographic_and_regional_l.pdf\u0026Expires=1733169885\u0026Signature=Q76Z01EoW98IaHYrsCxNNNGAGu8dz--K0x4UxMw1xGcLKjyxM74~32xa-4VaLc7hN29ae2pJJGvLznyR92XDVslvTNsIJinf4v-UEmWo8G4UkIOSfxnWKsmD7X-RKEn3rQfVr~tt2hbJncNZU9uB-WMJfnsuc3ycmmZJSPwxXG2nbLZM291GZzdJ-UmRBqXx8vRzK4Qi0EdE3Bt5y9E9W8doWRJXeIWZWVSY-sBJgv~mGzVSyWIEn4qYS0NjoRPUCRUi6NWexmvkD9CnI8sNcJGCHNkf7CDqR0eXKDQOObZSEiEjyx2sL~Ihm6SvTn2M3F1oblOSQPsrW~5pHAPuSw__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":158,"name":"Marine Biology","url":"https://www.academia.edu/Documents/in/Marine_Biology"},{"id":7710,"name":"Biology","url":"https://www.academia.edu/Documents/in/Biology"},{"id":9846,"name":"Ecology","url":"https://www.academia.edu/Documents/in/Ecology"},{"id":47884,"name":"Biological Sciences","url":"https://www.academia.edu/Documents/in/Biological_Sciences"},{"id":58054,"name":"Environmental Sciences","url":"https://www.academia.edu/Documents/in/Environmental_Sciences"},{"id":564469,"name":"Juvenile","url":"https://www.academia.edu/Documents/in/Juvenile"},{"id":587964,"name":"Reef","url":"https://www.academia.edu/Documents/in/Reef"},{"id":1407962,"name":"Latitude","url":"https://www.academia.edu/Documents/in/Latitude"},{"id":1542800,"name":"Ectotherm","url":"https://www.academia.edu/Documents/in/Ectotherm"}],"urls":[{"id":38771081,"url":"https://link.springer.com/content/pdf/10.1007/s00227-022-04098-9.pdf"}]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="113803061"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/113803061/First_Record_of_the_Convict_Cichlid_Amatitlania_nigrofasciata_G%C3%BCnther_1867_on_Mindanao_Island_Philippines_with_remarks_on_some_endemic_and_introduced_fishes_in_Sawaga_River_Bukidnon"><img alt="Research paper thumbnail of First Record of the Convict Cichlid Amatitlania nigrofasciata (Günther, 1867) on Mindanao Island, Philippines with remarks on some endemic and introduced fishes in Sawaga River, Bukidnon" class="work-thumbnail" src="https://attachments.academia-assets.com/110671468/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/113803061/First_Record_of_the_Convict_Cichlid_Amatitlania_nigrofasciata_G%C3%BCnther_1867_on_Mindanao_Island_Philippines_with_remarks_on_some_endemic_and_introduced_fishes_in_Sawaga_River_Bukidnon">First Record of the Convict Cichlid Amatitlania nigrofasciata (Günther, 1867) on Mindanao Island, Philippines with remarks on some endemic and introduced fishes in Sawaga River, Bukidnon</a></div><div class="wp-workCard_item"><span>Asian Journal of Biodiversity</span><span>, Jan 25, 2021</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="76593dd723b15b85d7b6384716a35674" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:110671468,&quot;asset_id&quot;:113803061,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/110671468/download_file?st=MTczMzE2NjI4Niw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="113803061"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="113803061"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 113803061; 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We provide the first record of this species from Mindanao based on samples collected from the Sawaga River, Bukidnon, Mindanao Island. We also provided remarks of some fishes, including one endemic fish, the Half-beak (Nomorhamphus philippinus), and other introduced species recently sampled in the Sawaga River. We highlight the need to document the spread of introduced species in the river systems of Mindanao.","publication_date":{"day":25,"month":1,"year":2021,"errors":{}},"publication_name":"Asian Journal of Biodiversity","grobid_abstract_attachment_id":110671468},"translated_abstract":null,"internal_url":"https://www.academia.edu/113803061/First_Record_of_the_Convict_Cichlid_Amatitlania_nigrofasciata_G%C3%BCnther_1867_on_Mindanao_Island_Philippines_with_remarks_on_some_endemic_and_introduced_fishes_in_Sawaga_River_Bukidnon","translated_internal_url":"","created_at":"2024-01-20T22:41:47.410-08:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":47324603,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":110671468,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/110671468/thumbnails/1.jpg","file_name":"2030.pdf","download_url":"https://www.academia.edu/attachments/110671468/download_file?st=MTczMzE2NjI4Niw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"First_Record_of_the_Convict_Cichlid_Amat.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/110671468/2030-libre.pdf?1705820796=\u0026response-content-disposition=attachment%3B+filename%3DFirst_Record_of_the_Convict_Cichlid_Amat.pdf\u0026Expires=1733169886\u0026Signature=YDAjflSXyjfanDO7v2gw8ff2IM7g25tC2M4L0Q28eK460HfFo7e4rQnDIpcmx-U~KfzYpOYj0w8VodlNKW-9KcLUY4IxVUFiJw3Xxuur0-oQoJlqxwrKdl-TFEyZmjGOARKZonUq2DXbqkLJbtkbFYa4~dEhAFGj0OlZ6H41bdb6PuaYaAs9g8mncRFkxs6XxQe7lVtUYF2rayJamyxOhTMZ0zoPSTY-6nlAjuv~70xps86IHB5ZMjDu5Eu5ypFF~mZ28FmjOpBV4ZBWYKrdIFBUKwX9eNKg6fOy5ZvOdIRAnKN-6qtE1Gn6KtE5PGqJL5PisO12B-PzYd7I~RS00A__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"First_Record_of_the_Convict_Cichlid_Amatitlania_nigrofasciata_Günther_1867_on_Mindanao_Island_Philippines_with_remarks_on_some_endemic_and_introduced_fishes_in_Sawaga_River_Bukidnon","translated_slug":"","page_count":9,"language":"en","content_type":"Work","owner":{"id":47324603,"first_name":"Abner","middle_initials":null,"last_name":"Bucol","page_name":"ABucol","domain_name":"silliman","created_at":"2016-04-19T02:08:19.082-07:00","display_name":"Abner Bucol","url":"https://silliman.academia.edu/ABucol"},"attachments":[{"id":110671468,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/110671468/thumbnails/1.jpg","file_name":"2030.pdf","download_url":"https://www.academia.edu/attachments/110671468/download_file?st=MTczMzE2NjI4Niw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"First_Record_of_the_Convict_Cichlid_Amat.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/110671468/2030-libre.pdf?1705820796=\u0026response-content-disposition=attachment%3B+filename%3DFirst_Record_of_the_Convict_Cichlid_Amat.pdf\u0026Expires=1733169886\u0026Signature=YDAjflSXyjfanDO7v2gw8ff2IM7g25tC2M4L0Q28eK460HfFo7e4rQnDIpcmx-U~KfzYpOYj0w8VodlNKW-9KcLUY4IxVUFiJw3Xxuur0-oQoJlqxwrKdl-TFEyZmjGOARKZonUq2DXbqkLJbtkbFYa4~dEhAFGj0OlZ6H41bdb6PuaYaAs9g8mncRFkxs6XxQe7lVtUYF2rayJamyxOhTMZ0zoPSTY-6nlAjuv~70xps86IHB5ZMjDu5Eu5ypFF~mZ28FmjOpBV4ZBWYKrdIFBUKwX9eNKg6fOy5ZvOdIRAnKN-6qtE1Gn6KtE5PGqJL5PisO12B-PzYd7I~RS00A__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":261,"name":"Geography","url":"https://www.academia.edu/Documents/in/Geography"},{"id":173285,"name":"Fishery","url":"https://www.academia.edu/Documents/in/Fishery"},{"id":2007906,"name":"Asian Biodiversity","url":"https://www.academia.edu/Documents/in/Asian_Biodiversity"}],"urls":[{"id":38771080,"url":"https://doi.org/10.7828/ajob.v12i1.1399"}]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="113803059"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/113803059/Geographic_variability_in_the_gonadal_development_and_sexual_ontogeny_of_scp_i_Hemigymnus_i_i_Cheilinus_i_scp_and_scp_i_Oxycheilinus_i_scp_wrasses_among_scp_Indo_Pacific_scp_coral_reefs"><img alt="Research paper thumbnail of Geographic variability in the gonadal development and sexual ontogeny of &lt;scp&gt;&lt;i&gt;Hemigymnus&lt;/i&gt;, &lt;i&gt;Cheilinus&lt;/i&gt;&lt;/scp&gt; and &lt;scp&gt;&lt;i&gt;Oxycheilinus&lt;/i&gt;&lt;/scp&gt; wrasses among &lt;scp&gt;Indo‐Pacific&lt;/scp&gt; coral reefs" class="work-thumbnail" src="https://a.academia-assets.com/images/blank-paper.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/113803059/Geographic_variability_in_the_gonadal_development_and_sexual_ontogeny_of_scp_i_Hemigymnus_i_i_Cheilinus_i_scp_and_scp_i_Oxycheilinus_i_scp_wrasses_among_scp_Indo_Pacific_scp_coral_reefs">Geographic variability in the gonadal development and sexual ontogeny of &lt;scp&gt;&lt;i&gt;Hemigymnus&lt;/i&gt;, &lt;i&gt;Cheilinus&lt;/i&gt;&lt;/scp&gt; and &lt;scp&gt;&lt;i&gt;Oxycheilinus&lt;/i&gt;&lt;/scp&gt; wrasses among &lt;scp&gt;Indo‐Pacific&lt;/scp&gt; coral reefs</a></div><div class="wp-workCard_item"><span>Journal of Fish Biology</span><span>, Aug 5, 2021</span></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">Patterns of reproductive ontogeny in four species of coral reef wrasses (F: Labridae) Hemigymnus ...</span><a class="js-work-more-abstract" data-broccoli-component="work_strip.more_abstract" data-click-track="profile-work-strip-more-abstract" href="javascript:;"><span> more </span><span><i class="fa fa-caret-down"></i></span></a><span class="js-work-more-abstract-untruncated hidden">Patterns of reproductive ontogeny in four species of coral reef wrasses (F: Labridae) Hemigymnus melapterus, Hemigymnus fasciatus, Cheilinus fasciatus and Oxycheilinus digramma were investigated. Populations of each species were sampled from two island groups of the central Great Barrier Reef (GBR), Australia, and from coral reefs in the central Philippines. These three sampling locations span 30° of latitude. The GBR and Philippine reefs experience biologically significant differences in water temperature, geography and human activity. The studied wrasses are effectively unfished in Australia but heavily fished in the Philippines. Gonad weights, histology and demographic data were obtained across the entire size and age range of H. melapterus, C. fasciatus and O. digramma from all locations. Analysis identified three processes of male recruitment: functional gonochorism and both forms of protogynous hermaphroditism, monandry and diandry. The expression of these distinct sexual ontogenies was locality dependent. Populations of H. melapterus, H. fasciatus, C. fasciatus and O. digramma on the GBR showed consistently uniform patterns of sexual ontogeny, with all species being exclusively monandric. H. melapterus, C. fasciatus and O. digramma in the Philippines displayed complex sexual ontogenies, with all species showing histological evidence of both diandry and functional gonochorism. Reproductive investment in gonadal tissue, and population sex structure, also differed between GBR and Philippine coral reefs. Philippine populations had substantially lower gonado‐somatic indices than populations on the GBR. Nonetheless, Philippine populations matured more rapidly and displayed a protracted timing of sex change over a large size and age range. Thus, mature females appeared earlier and persisted later into ontogeny in the Philippines than on GBR reefs. Protracted timing of sex change on Philippine reefs is likely linked to the presence of primary males in the population, which is known to reduce the strength of selection for mature females to undergo sex change and become male. Hypotheses based on social structure of fish populations, environmental factors and evolutionary history were developed to account for the different patterns of sexual ontogeny in the focal wrasses.</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="113803059"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="113803059"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 113803059; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=113803059]").text(description); $(".js-view-count[data-work-id=113803059]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 113803059; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='113803059']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 113803059, container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (false){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "-1" } } $('.js-work-strip[data-work-id=113803059]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":113803059,"title":"Geographic variability in the gonadal development and sexual ontogeny of \u003cscp\u003e\u003ci\u003eHemigymnus\u003c/i\u003e, \u003ci\u003eCheilinus\u003c/i\u003e\u003c/scp\u003e and \u003cscp\u003e\u003ci\u003eOxycheilinus\u003c/i\u003e\u003c/scp\u003e wrasses among \u003cscp\u003eIndo‐Pacific\u003c/scp\u003e coral reefs","translated_title":"","metadata":{"abstract":"Patterns of reproductive ontogeny in four species of coral reef wrasses (F: Labridae) Hemigymnus melapterus, Hemigymnus fasciatus, Cheilinus fasciatus and Oxycheilinus digramma were investigated. Populations of each species were sampled from two island groups of the central Great Barrier Reef (GBR), Australia, and from coral reefs in the central Philippines. These three sampling locations span 30° of latitude. The GBR and Philippine reefs experience biologically significant differences in water temperature, geography and human activity. The studied wrasses are effectively unfished in Australia but heavily fished in the Philippines. Gonad weights, histology and demographic data were obtained across the entire size and age range of H. melapterus, C. fasciatus and O. digramma from all locations. Analysis identified three processes of male recruitment: functional gonochorism and both forms of protogynous hermaphroditism, monandry and diandry. The expression of these distinct sexual ontogenies was locality dependent. Populations of H. melapterus, H. fasciatus, C. fasciatus and O. digramma on the GBR showed consistently uniform patterns of sexual ontogeny, with all species being exclusively monandric. H. melapterus, C. fasciatus and O. digramma in the Philippines displayed complex sexual ontogenies, with all species showing histological evidence of both diandry and functional gonochorism. Reproductive investment in gonadal tissue, and population sex structure, also differed between GBR and Philippine coral reefs. Philippine populations had substantially lower gonado‐somatic indices than populations on the GBR. Nonetheless, Philippine populations matured more rapidly and displayed a protracted timing of sex change over a large size and age range. Thus, mature females appeared earlier and persisted later into ontogeny in the Philippines than on GBR reefs. Protracted timing of sex change on Philippine reefs is likely linked to the presence of primary males in the population, which is known to reduce the strength of selection for mature females to undergo sex change and become male. Hypotheses based on social structure of fish populations, environmental factors and evolutionary history were developed to account for the different patterns of sexual ontogeny in the focal wrasses.","publisher":"Wiley-Blackwell","publication_date":{"day":5,"month":8,"year":2021,"errors":{}},"publication_name":"Journal of Fish Biology"},"translated_abstract":"Patterns of reproductive ontogeny in four species of coral reef wrasses (F: Labridae) Hemigymnus melapterus, Hemigymnus fasciatus, Cheilinus fasciatus and Oxycheilinus digramma were investigated. Populations of each species were sampled from two island groups of the central Great Barrier Reef (GBR), Australia, and from coral reefs in the central Philippines. These three sampling locations span 30° of latitude. The GBR and Philippine reefs experience biologically significant differences in water temperature, geography and human activity. The studied wrasses are effectively unfished in Australia but heavily fished in the Philippines. Gonad weights, histology and demographic data were obtained across the entire size and age range of H. melapterus, C. fasciatus and O. digramma from all locations. Analysis identified three processes of male recruitment: functional gonochorism and both forms of protogynous hermaphroditism, monandry and diandry. The expression of these distinct sexual ontogenies was locality dependent. Populations of H. melapterus, H. fasciatus, C. fasciatus and O. digramma on the GBR showed consistently uniform patterns of sexual ontogeny, with all species being exclusively monandric. H. melapterus, C. fasciatus and O. digramma in the Philippines displayed complex sexual ontogenies, with all species showing histological evidence of both diandry and functional gonochorism. Reproductive investment in gonadal tissue, and population sex structure, also differed between GBR and Philippine coral reefs. Philippine populations had substantially lower gonado‐somatic indices than populations on the GBR. Nonetheless, Philippine populations matured more rapidly and displayed a protracted timing of sex change over a large size and age range. Thus, mature females appeared earlier and persisted later into ontogeny in the Philippines than on GBR reefs. Protracted timing of sex change on Philippine reefs is likely linked to the presence of primary males in the population, which is known to reduce the strength of selection for mature females to undergo sex change and become male. Hypotheses based on social structure of fish populations, environmental factors and evolutionary history were developed to account for the different patterns of sexual ontogeny in the focal wrasses.","internal_url":"https://www.academia.edu/113803059/Geographic_variability_in_the_gonadal_development_and_sexual_ontogeny_of_scp_i_Hemigymnus_i_i_Cheilinus_i_scp_and_scp_i_Oxycheilinus_i_scp_wrasses_among_scp_Indo_Pacific_scp_coral_reefs","translated_internal_url":"","created_at":"2024-01-20T22:41:46.933-08:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":47324603,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[],"slug":"Geographic_variability_in_the_gonadal_development_and_sexual_ontogeny_of_scp_i_Hemigymnus_i_i_Cheilinus_i_scp_and_scp_i_Oxycheilinus_i_scp_wrasses_among_scp_Indo_Pacific_scp_coral_reefs","translated_slug":"","page_count":null,"language":"en","content_type":"Work","owner":{"id":47324603,"first_name":"Abner","middle_initials":null,"last_name":"Bucol","page_name":"ABucol","domain_name":"silliman","created_at":"2016-04-19T02:08:19.082-07:00","display_name":"Abner Bucol","url":"https://silliman.academia.edu/ABucol"},"attachments":[],"research_interests":[{"id":173,"name":"Zoology","url":"https://www.academia.edu/Documents/in/Zoology"},{"id":7710,"name":"Biology","url":"https://www.academia.edu/Documents/in/Biology"},{"id":9846,"name":"Ecology","url":"https://www.academia.edu/Documents/in/Ecology"},{"id":11873,"name":"Fish Biology","url":"https://www.academia.edu/Documents/in/Fish_Biology"},{"id":26327,"name":"Medicine","url":"https://www.academia.edu/Documents/in/Medicine"},{"id":55608,"name":"Ontogeny","url":"https://www.academia.edu/Documents/in/Ontogeny"},{"id":64336,"name":"Population","url":"https://www.academia.edu/Documents/in/Population"},{"id":143611,"name":"Coral Reef","url":"https://www.academia.edu/Documents/in/Coral_Reef"},{"id":170652,"name":"Fisheries Sciences","url":"https://www.academia.edu/Documents/in/Fisheries_Sciences"},{"id":249747,"name":"Coral","url":"https://www.academia.edu/Documents/in/Coral"},{"id":338196,"name":"Sex Change","url":"https://www.academia.edu/Documents/in/Sex_Change"},{"id":587964,"name":"Reef","url":"https://www.academia.edu/Documents/in/Reef"}],"urls":[{"id":38771078,"url":"https://rss.onlinelibrary.wiley.com/doi/am-pdf/10.1111/jfb.14842"}]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="113803058"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/113803058/What_Determines_the_Minimum_Body_Size_for_Vertebrates"><img alt="Research paper thumbnail of What Determines the Minimum Body Size for Vertebrates?" class="work-thumbnail" src="https://a.academia-assets.com/images/blank-paper.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/113803058/What_Determines_the_Minimum_Body_Size_for_Vertebrates">What Determines the Minimum Body Size for Vertebrates?</a></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">The minimum body size of vertebrate species lies just above 6 millimeters, in stark contrast to t...</span><a class="js-work-more-abstract" data-broccoli-component="work_strip.more_abstract" data-click-track="profile-work-strip-more-abstract" href="javascript:;"><span> more </span><span><i class="fa fa-caret-down"></i></span></a><span class="js-work-more-abstract-untruncated hidden">The minimum body size of vertebrate species lies just above 6 millimeters, in stark contrast to the minimum sizes attained by species of other major taxonomic groups. This paper presents two connected hypotheses explaining this minimum size obtainable with a vertebrate Bauplan.Firstly, the complex bodies of vertebrates might not be amendable to reduction below a certain level of complexity. We hypothesize that this lower limit for organ complexity hold especially true for the vertebrate body’s most complex organ, the brain. This is at least partially due to poor scaling of the brain to small sizes, and a coding strategy known as population coding. In the context of poor scaling of a complex Bauplan, we discuss the relative sparsity of paedomorphism and parasitism in vertebrates.Second, these constrains will disproportionately affect the smaller bodies and brains of juvenile or larval animals. This, in turn requires a certain minimum egg size to for a juvenile or larva to reach a siz...</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="113803058"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="113803058"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 113803058; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=113803058]").text(description); $(".js-view-count[data-work-id=113803058]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 113803058; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='113803058']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 113803058, container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (false){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "-1" } } $('.js-work-strip[data-work-id=113803058]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":113803058,"title":"What Determines the Minimum Body Size for Vertebrates?","translated_title":"","metadata":{"abstract":"The minimum body size of vertebrate species lies just above 6 millimeters, in stark contrast to the minimum sizes attained by species of other major taxonomic groups. This paper presents two connected hypotheses explaining this minimum size obtainable with a vertebrate Bauplan.Firstly, the complex bodies of vertebrates might not be amendable to reduction below a certain level of complexity. We hypothesize that this lower limit for organ complexity hold especially true for the vertebrate body’s most complex organ, the brain. This is at least partially due to poor scaling of the brain to small sizes, and a coding strategy known as population coding. In the context of poor scaling of a complex Bauplan, we discuss the relative sparsity of paedomorphism and parasitism in vertebrates.Second, these constrains will disproportionately affect the smaller bodies and brains of juvenile or larval animals. This, in turn requires a certain minimum egg size to for a juvenile or larva to reach a siz...","publisher":"California Digital Library (CDL)"},"translated_abstract":"The minimum body size of vertebrate species lies just above 6 millimeters, in stark contrast to the minimum sizes attained by species of other major taxonomic groups. This paper presents two connected hypotheses explaining this minimum size obtainable with a vertebrate Bauplan.Firstly, the complex bodies of vertebrates might not be amendable to reduction below a certain level of complexity. We hypothesize that this lower limit for organ complexity hold especially true for the vertebrate body’s most complex organ, the brain. This is at least partially due to poor scaling of the brain to small sizes, and a coding strategy known as population coding. In the context of poor scaling of a complex Bauplan, we discuss the relative sparsity of paedomorphism and parasitism in vertebrates.Second, these constrains will disproportionately affect the smaller bodies and brains of juvenile or larval animals. This, in turn requires a certain minimum egg size to for a juvenile or larva to reach a siz...","internal_url":"https://www.academia.edu/113803058/What_Determines_the_Minimum_Body_Size_for_Vertebrates","translated_internal_url":"","created_at":"2024-01-20T22:41:46.811-08:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":47324603,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[],"slug":"What_Determines_the_Minimum_Body_Size_for_Vertebrates","translated_slug":"","page_count":null,"language":"en","content_type":"Work","owner":{"id":47324603,"first_name":"Abner","middle_initials":null,"last_name":"Bucol","page_name":"ABucol","domain_name":"silliman","created_at":"2016-04-19T02:08:19.082-07:00","display_name":"Abner Bucol","url":"https://silliman.academia.edu/ABucol"},"attachments":[],"research_interests":[{"id":7710,"name":"Biology","url":"https://www.academia.edu/Documents/in/Biology"},{"id":64336,"name":"Population","url":"https://www.academia.edu/Documents/in/Population"},{"id":88930,"name":"Predation","url":"https://www.academia.edu/Documents/in/Predation"},{"id":478644,"name":"Vertebrate","url":"https://www.academia.edu/Documents/in/Vertebrate"},{"id":564469,"name":"Juvenile","url":"https://www.academia.edu/Documents/in/Juvenile"}],"urls":[]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="113803057"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/113803057/A_study_on_the_invertebrate_and_vertebrate_biodiversity_of_the_Jalaur_River_system_of_Iloilo_Panay_Philippines"><img alt="Research paper thumbnail of A study on the invertebrate and vertebrate biodiversity of the Jalaur River system of Iloilo, Panay, Philippines" class="work-thumbnail" src="https://a.academia-assets.com/images/blank-paper.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/113803057/A_study_on_the_invertebrate_and_vertebrate_biodiversity_of_the_Jalaur_River_system_of_Iloilo_Panay_Philippines">A study on the invertebrate and vertebrate biodiversity of the Jalaur River system of Iloilo, Panay, Philippines</a></div><div class="wp-workCard_item"><span>Silliman Journal</span><span>, 2010</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="113803057"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="113803057"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 113803057; 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To what extent, then, do macroalgal habitats contribute to small‐scale tropical reef fisheries? To address this question we: (1) Quantified the macroalgae‐associated fish component in catches from 133 small‐scale fisheries, (2) Compared life‐history traits relevant to fishing (e.g. growth, longevity) in macroalgal and coral‐associated fishes, (3) Examined how macroalgae‐associated species can influence catch diversity, trophic level and vulnerability and (4) Explored how tropical fisheries change with the expansion of macroalgal habitats using a case study of fishery‐independent data for Seychelles. Fish that utilised macroalgal habitats comprise 24% of the catch, but very few fished species relied entirely on macroalgal or coral habitats post‐settlement. 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$(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="113803053"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/113803053/Fishes_from_the_deep_demersal_habitats_off_Manado_North_Sulawesi_Indonesia_and_Negros_Island_Philippines"><img alt="Research paper thumbnail of Fishes from the deep demersal habitats off Manado, North Sulawesi, Indonesia and Negros Island, Philippines" class="work-thumbnail" src="https://attachments.academia-assets.com/110671436/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/113803053/Fishes_from_the_deep_demersal_habitats_off_Manado_North_Sulawesi_Indonesia_and_Negros_Island_Philippines">Fishes from the deep demersal habitats off Manado, North Sulawesi, Indonesia and Negros Island, Philippines</a></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">This paper is a study of some rare and poorly known deep demersal fishes in two Indo-Pacific loca...</span><a class="js-work-more-abstract" data-broccoli-component="work_strip.more_abstract" data-click-track="profile-work-strip-more-abstract" href="javascript:;"><span> more </span><span><i class="fa fa-caret-down"></i></span></a><span class="js-work-more-abstract-untruncated hidden">This paper is a study of some rare and poorly known deep demersal fishes in two Indo-Pacific localities, one in the central Philippines (off Negros Island) and another off Manado, northern Sulawesi. The occurrence of the shark Indonesian Wobbegong Orectolobus leptolineatus in the Philippines is also confirmed. The recent information on the Indonesian Coelacanth (Latimeria menadoensis) and other fish species are also presented. The presence of an angled-rough shark, which is tentatively identified herein as Oxynotus cf japonicus, is also reported for the first time to occur in North Sulawesi waters, Indonesia. Keywords : Indonesia, Philippines, deep, demersal fishes, habitat.</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="209137bbbcaa87079ae112ff749c752f" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:110671436,&quot;asset_id&quot;:113803053,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/110671436/download_file?st=MTczMzE2NjI4Niw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="113803053"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="113803053"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 113803053; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=113803053]").text(description); $(".js-view-count[data-work-id=113803053]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 113803053; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='113803053']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 113803053, container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (true){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "209137bbbcaa87079ae112ff749c752f" } } $('.js-work-strip[data-work-id=113803053]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":113803053,"title":"Fishes from the deep demersal habitats off Manado, North Sulawesi, Indonesia and Negros Island, Philippines","translated_title":"","metadata":{"abstract":"This paper is a study of some rare and poorly known deep demersal fishes in two Indo-Pacific localities, one in the central Philippines (off Negros Island) and another off Manado, northern Sulawesi. 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The recent information on the Indonesian Coelacanth (Latimeria menadoensis) and other fish species are also presented. The presence of an angled-rough shark, which is tentatively identified herein as Oxynotus cf japonicus, is also reported for the first time to occur in North Sulawesi waters, Indonesia. 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$(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="113803052"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/113803052/Development_of_reproductive_potential_in_protogynous_coral_reef_fishes_within_Philippine_no_take_marine_reserves"><img alt="Research paper thumbnail of Development of reproductive potential in protogynous coral reef fishes within Philippine no‐take marine reserves" class="work-thumbnail" src="https://a.academia-assets.com/images/blank-paper.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/113803052/Development_of_reproductive_potential_in_protogynous_coral_reef_fishes_within_Philippine_no_take_marine_reserves">Development of reproductive potential in protogynous coral reef fishes within Philippine no‐take marine reserves</a></div><div class="wp-workCard_item"><span>Journal of Fish Biology</span><span>, 2021</span></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">ABSTRACTEmpirical evidence for increases in the reproductive potential (egg output per unit area)...</span><a class="js-work-more-abstract" data-broccoli-component="work_strip.more_abstract" data-click-track="profile-work-strip-more-abstract" href="javascript:;"><span> more </span><span><i class="fa fa-caret-down"></i></span></a><span class="js-work-more-abstract-untruncated hidden">ABSTRACTEmpirical evidence for increases in the reproductive potential (egg output per unit area) of coral reef fish in no‐take marine reserves (NTMRs) is sparse. Here, we inferred the development of reproductive potential in two species of protogynous reef fishes, Chlorurus bleekeri (Labridae: Scarinae) and Cephalopholis argus (Epinephelidae), inside and outside of Philippine NTMRs. We estimated key reproductive parameters and applied these to species‐specific density and length data from 17 NTMRs (durations of protection 0–11 years) and paired fished sites (controls) in a space‐for‐time substitution approach. For C. argus, we also used density and length data collected almost annually over 29 years from a NTMR and an adjacent control at Apo Island. The results suggest that C. bleekeri can develop 6.0 times greater reproductive potential in NTMRs than controls after 11 years of protection, equivalent to approximately 582,000 more eggs produced 500 m−2 inside NTMRs. Enhancement of r...</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="113803052"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="113803052"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 113803052; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=113803052]").text(description); $(".js-view-count[data-work-id=113803052]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 113803052; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='113803052']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 113803052, container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (false){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "-1" } } $('.js-work-strip[data-work-id=113803052]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":113803052,"title":"Development of reproductive potential in protogynous coral reef fishes within Philippine no‐take marine reserves","translated_title":"","metadata":{"abstract":"ABSTRACTEmpirical evidence for increases in the reproductive potential (egg output per unit area) of coral reef fish in no‐take marine reserves (NTMRs) is sparse. Here, we inferred the development of reproductive potential in two species of protogynous reef fishes, Chlorurus bleekeri (Labridae: Scarinae) and Cephalopholis argus (Epinephelidae), inside and outside of Philippine NTMRs. We estimated key reproductive parameters and applied these to species‐specific density and length data from 17 NTMRs (durations of protection 0–11 years) and paired fished sites (controls) in a space‐for‐time substitution approach. For C. argus, we also used density and length data collected almost annually over 29 years from a NTMR and an adjacent control at Apo Island. The results suggest that C. bleekeri can develop 6.0 times greater reproductive potential in NTMRs than controls after 11 years of protection, equivalent to approximately 582,000 more eggs produced 500 m−2 inside NTMRs. Enhancement of r...","publisher":"Wiley","publication_date":{"day":null,"month":null,"year":2021,"errors":{}},"publication_name":"Journal of Fish Biology"},"translated_abstract":"ABSTRACTEmpirical evidence for increases in the reproductive potential (egg output per unit area) of coral reef fish in no‐take marine reserves (NTMRs) is sparse. Here, we inferred the development of reproductive potential in two species of protogynous reef fishes, Chlorurus bleekeri (Labridae: Scarinae) and Cephalopholis argus (Epinephelidae), inside and outside of Philippine NTMRs. We estimated key reproductive parameters and applied these to species‐specific density and length data from 17 NTMRs (durations of protection 0–11 years) and paired fished sites (controls) in a space‐for‐time substitution approach. For C. argus, we also used density and length data collected almost annually over 29 years from a NTMR and an adjacent control at Apo Island. The results suggest that C. bleekeri can develop 6.0 times greater reproductive potential in NTMRs than controls after 11 years of protection, equivalent to approximately 582,000 more eggs produced 500 m−2 inside NTMRs. Enhancement of r...","internal_url":"https://www.academia.edu/113803052/Development_of_reproductive_potential_in_protogynous_coral_reef_fishes_within_Philippine_no_take_marine_reserves","translated_internal_url":"","created_at":"2024-01-20T22:41:45.719-08:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":47324603,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[],"slug":"Development_of_reproductive_potential_in_protogynous_coral_reef_fishes_within_Philippine_no_take_marine_reserves","translated_slug":"","page_count":null,"language":"en","content_type":"Work","owner":{"id":47324603,"first_name":"Abner","middle_initials":null,"last_name":"Bucol","page_name":"ABucol","domain_name":"silliman","created_at":"2016-04-19T02:08:19.082-07:00","display_name":"Abner Bucol","url":"https://silliman.academia.edu/ABucol"},"attachments":[],"research_interests":[{"id":173,"name":"Zoology","url":"https://www.academia.edu/Documents/in/Zoology"},{"id":7710,"name":"Biology","url":"https://www.academia.edu/Documents/in/Biology"},{"id":9846,"name":"Ecology","url":"https://www.academia.edu/Documents/in/Ecology"},{"id":11873,"name":"Fish Biology","url":"https://www.academia.edu/Documents/in/Fish_Biology"},{"id":26327,"name":"Medicine","url":"https://www.academia.edu/Documents/in/Medicine"},{"id":143611,"name":"Coral Reef","url":"https://www.academia.edu/Documents/in/Coral_Reef"},{"id":170652,"name":"Fisheries Sciences","url":"https://www.academia.edu/Documents/in/Fisheries_Sciences"},{"id":173285,"name":"Fishery","url":"https://www.academia.edu/Documents/in/Fishery"},{"id":587964,"name":"Reef","url":"https://www.academia.edu/Documents/in/Reef"}],"urls":[{"id":38771073,"url":"https://onlinelibrary.wiley.com/doi/pdf/10.1111/jfb.14861"}]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="113803051"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/113803051/Macroalgal_meadow_habitats_support_fish_and_fisheries_in_diverse_tropical_seascapes"><img alt="Research paper thumbnail of Macroalgal meadow habitats support fish and fisheries in diverse tropical seascapes" class="work-thumbnail" src="https://attachments.academia-assets.com/110671465/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/113803051/Macroalgal_meadow_habitats_support_fish_and_fisheries_in_diverse_tropical_seascapes">Macroalgal meadow habitats support fish and fisheries in diverse tropical seascapes</a></div><div class="wp-workCard_item"><span>Fish and Fisheries</span><span>, 2020</span></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">Canopy‐forming macroalgae can construct extensive meadow habitats in tropical seascapes occupied ...</span><a class="js-work-more-abstract" data-broccoli-component="work_strip.more_abstract" data-click-track="profile-work-strip-more-abstract" href="javascript:;"><span> more </span><span><i class="fa fa-caret-down"></i></span></a><span class="js-work-more-abstract-untruncated hidden">Canopy‐forming macroalgae can construct extensive meadow habitats in tropical seascapes occupied by fishes that span a diversity of taxa, life‐history stages and ecological roles. Our synthesis assessed whether these tropical macroalgal habitats have unique fish assemblages, provide fish nurseries and support local fisheries. We also applied a meta‐analysis of independent surveys across 23 tropical reef locations in 11 countries to examine how macroalgal canopy condition is related to the abundance of macroalgal‐associated fishes. Over 627 fish species were documented in tropical macroalgal meadows, with 218 of these taxa exhibiting higher local abundance within this habitat (cf. nearby coral reef) during at least one life‐history stage. Major overlap (40%–43%) in local fish species richness among macroalgal and seagrass or coral reef habitats suggest macroalgal meadows may provide an important habitat refuge. Moreover, the prominence of juvenile fishes suggests macroalgal meadows f...</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="9763f7d0026dd878dfdce5bbdf065386" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:110671465,&quot;asset_id&quot;:113803051,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/110671465/download_file?st=MTczMzE2NjI4Nyw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="113803051"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="113803051"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 113803051; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=113803051]").text(description); $(".js-view-count[data-work-id=113803051]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 113803051; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='113803051']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 113803051, container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (true){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "9763f7d0026dd878dfdce5bbdf065386" } } $('.js-work-strip[data-work-id=113803051]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":113803051,"title":"Macroalgal meadow habitats support fish and fisheries in diverse tropical seascapes","translated_title":"","metadata":{"abstract":"Canopy‐forming macroalgae can construct extensive meadow habitats in tropical seascapes occupied by fishes that span a diversity of taxa, life‐history stages and ecological roles. Our synthesis assessed whether these tropical macroalgal habitats have unique fish assemblages, provide fish nurseries and support local fisheries. We also applied a meta‐analysis of independent surveys across 23 tropical reef locations in 11 countries to examine how macroalgal canopy condition is related to the abundance of macroalgal‐associated fishes. Over 627 fish species were documented in tropical macroalgal meadows, with 218 of these taxa exhibiting higher local abundance within this habitat (cf. nearby coral reef) during at least one life‐history stage. Major overlap (40%–43%) in local fish species richness among macroalgal and seagrass or coral reef habitats suggest macroalgal meadows may provide an important habitat refuge. Moreover, the prominence of juvenile fishes suggests macroalgal meadows f...","publisher":"Wiley","publication_date":{"day":null,"month":null,"year":2020,"errors":{}},"publication_name":"Fish and Fisheries"},"translated_abstract":"Canopy‐forming macroalgae can construct extensive meadow habitats in tropical seascapes occupied by fishes that span a diversity of taxa, life‐history stages and ecological roles. Our synthesis assessed whether these tropical macroalgal habitats have unique fish assemblages, provide fish nurseries and support local fisheries. We also applied a meta‐analysis of independent surveys across 23 tropical reef locations in 11 countries to examine how macroalgal canopy condition is related to the abundance of macroalgal‐associated fishes. Over 627 fish species were documented in tropical macroalgal meadows, with 218 of these taxa exhibiting higher local abundance within this habitat (cf. nearby coral reef) during at least one life‐history stage. Major overlap (40%–43%) in local fish species richness among macroalgal and seagrass or coral reef habitats suggest macroalgal meadows may provide an important habitat refuge. Moreover, the prominence of juvenile fishes suggests macroalgal meadows f...","internal_url":"https://www.academia.edu/113803051/Macroalgal_meadow_habitats_support_fish_and_fisheries_in_diverse_tropical_seascapes","translated_internal_url":"","created_at":"2024-01-20T22:41:45.469-08:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":47324603,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":110671465,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/110671465/thumbnails/1.jpg","file_name":"01_Fulton_Macroalgal_meadow_habitats_2020.pdf","download_url":"https://www.academia.edu/attachments/110671465/download_file?st=MTczMzE2NjI4Nyw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Macroalgal_meadow_habitats_support_fish.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/110671465/01_Fulton_Macroalgal_meadow_habitats_2020-libre.pdf?1705820971=\u0026response-content-disposition=attachment%3B+filename%3DMacroalgal_meadow_habitats_support_fish.pdf\u0026Expires=1733169887\u0026Signature=L7vN5ou1XGge-LpBq2uxoJSQ~FQav2Gs7hXvIDVyvY7zfZSPvnJ6Z3wcfVesPfzYSgiYZFgIGzz3cTELJHDonWcwd40Lxy9yRFET7B8bt7LRV2gqNWPLJl9BRMIJz84h3Z3dBEi3ctuAps-pEwmk1HPb0pssdaBdl5ZQtmHhNF8Ew8yw3zE3xdaPI5iNJH8fnTKiP~0GGWtyU6Rj0hJNksKv8OaZe3r0JAMVZM3QqumHCeElk-HwyrwnUBJpKPOt8ek9llLHZxeDW1Fyjd-FiH2hPo0JD4Z17dwLD1rgSkIX5NOIOQzlQjFB9n6qQmWL4Ho7r5M6uiNquEVwgdVwjQ__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"Macroalgal_meadow_habitats_support_fish_and_fisheries_in_diverse_tropical_seascapes","translated_slug":"","page_count":18,"language":"en","content_type":"Work","owner":{"id":47324603,"first_name":"Abner","middle_initials":null,"last_name":"Bucol","page_name":"ABucol","domain_name":"silliman","created_at":"2016-04-19T02:08:19.082-07:00","display_name":"Abner Bucol","url":"https://silliman.academia.edu/ABucol"},"attachments":[{"id":110671465,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/110671465/thumbnails/1.jpg","file_name":"01_Fulton_Macroalgal_meadow_habitats_2020.pdf","download_url":"https://www.academia.edu/attachments/110671465/download_file?st=MTczMzE2NjI4Nyw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Macroalgal_meadow_habitats_support_fish.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/110671465/01_Fulton_Macroalgal_meadow_habitats_2020-libre.pdf?1705820971=\u0026response-content-disposition=attachment%3B+filename%3DMacroalgal_meadow_habitats_support_fish.pdf\u0026Expires=1733169887\u0026Signature=L7vN5ou1XGge-LpBq2uxoJSQ~FQav2Gs7hXvIDVyvY7zfZSPvnJ6Z3wcfVesPfzYSgiYZFgIGzz3cTELJHDonWcwd40Lxy9yRFET7B8bt7LRV2gqNWPLJl9BRMIJz84h3Z3dBEi3ctuAps-pEwmk1HPb0pssdaBdl5ZQtmHhNF8Ew8yw3zE3xdaPI5iNJH8fnTKiP~0GGWtyU6Rj0hJNksKv8OaZe3r0JAMVZM3QqumHCeElk-HwyrwnUBJpKPOt8ek9llLHZxeDW1Fyjd-FiH2hPo0JD4Z17dwLD1rgSkIX5NOIOQzlQjFB9n6qQmWL4Ho7r5M6uiNquEVwgdVwjQ__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":261,"name":"Geography","url":"https://www.academia.edu/Documents/in/Geography"},{"id":9846,"name":"Ecology","url":"https://www.academia.edu/Documents/in/Ecology"},{"id":50242,"name":"Seagrass","url":"https://www.academia.edu/Documents/in/Seagrass"},{"id":52604,"name":"Recruitment","url":"https://www.academia.edu/Documents/in/Recruitment"},{"id":85707,"name":"Habitat","url":"https://www.academia.edu/Documents/in/Habitat"},{"id":143611,"name":"Coral Reef","url":"https://www.academia.edu/Documents/in/Coral_Reef"},{"id":170652,"name":"Fisheries Sciences","url":"https://www.academia.edu/Documents/in/Fisheries_Sciences"},{"id":173285,"name":"Fishery","url":"https://www.academia.edu/Documents/in/Fishery"},{"id":461660,"name":"Nursery","url":"https://www.academia.edu/Documents/in/Nursery"},{"id":1666301,"name":"Sargassum","url":"https://www.academia.edu/Documents/in/Sargassum"}],"urls":[{"id":38771072,"url":"https://onlinelibrary.wiley.com/doi/pdf/10.1111/faf.12455"}]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="113803050"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/113803050/Microplastics_in_marine_sediments_and_rabbitfish_Siganus_fuscescens_from_selected_coastal_areas_of_Negros_Oriental_Philippines"><img alt="Research paper thumbnail of Microplastics in marine sediments and rabbitfish (Siganus fuscescens) from selected coastal areas of Negros Oriental, Philippines" class="work-thumbnail" src="https://attachments.academia-assets.com/110671464/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/113803050/Microplastics_in_marine_sediments_and_rabbitfish_Siganus_fuscescens_from_selected_coastal_areas_of_Negros_Oriental_Philippines">Microplastics in marine sediments and rabbitfish (Siganus fuscescens) from selected coastal areas of Negros Oriental, Philippines</a></div><div class="wp-workCard_item"><span>Marine Pollution Bulletin</span><span>, 2019</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="8d8078644b2a056ea1058837094a6b09" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:110671464,&quot;asset_id&quot;:113803050,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/110671464/download_file?st=MTczMzE2NjI4Nyw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="113803050"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="113803050"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 113803050; 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dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "8d8078644b2a056ea1058837094a6b09" } } $('.js-work-strip[data-work-id=113803050]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":113803050,"title":"Microplastics in marine sediments and rabbitfish (Siganus fuscescens) from selected coastal areas of Negros Oriental, Philippines","translated_title":"","metadata":{"publisher":"Elsevier BV","ai_title_tag":"Microplastics in Rabbitfish and Sediments of Negros Oriental","grobid_abstract":"The Philippines is currently ranked as the third top producer of plastic wastes, yet little research has been conducted on marine plastic pollution in this fisherydependent, developing country. This study is the first in the nation to quantify and characterize microplastics ingested by a commercially important fish, the rabbitfish (Siganus fuscescens), in the coastal areas of Negros Oriental, central Philippines. Across all sites, the diversity of microplastic polymer types was highest in the guts of S. fuscescens from Dumaguete, a densely populated city. Microplastic particles extracted from subtidal sediment samples from Silliman Beach in Dumaguete were dominated by semi-synthetic microfibers (rayon), probably from clothing and textiles. However, these microplastic types were absent in the guts of fish, likely due to the different location and character of their feeding habitats. 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$(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="113803049"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/113803049/Abundance_and_Diversity_of_Fishes_in_Bayawan_River_Negros_Oriental_Philipines"><img alt="Research paper thumbnail of Abundance and Diversity of Fishes in Bayawan River, Negros Oriental, Philipines" class="work-thumbnail" src="https://attachments.academia-assets.com/110671434/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/113803049/Abundance_and_Diversity_of_Fishes_in_Bayawan_River_Negros_Oriental_Philipines">Abundance and Diversity of Fishes in Bayawan River, Negros Oriental, Philipines</a></div><div class="wp-workCard_item"><span>JURNAL ILMIAH SAINS</span><span>, 2019</span></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">ABSTRACTThis study aimed to: 1) identify fish species found in Bayawan River; 2) determine fish a...</span><a class="js-work-more-abstract" data-broccoli-component="work_strip.more_abstract" data-click-track="profile-work-strip-more-abstract" href="javascript:;"><span> more </span><span><i class="fa fa-caret-down"></i></span></a><span class="js-work-more-abstract-untruncated hidden">ABSTRACTThis study aimed to: 1) identify fish species found in Bayawan River; 2) determine fish abundance and species composition in three segments of  the river; 3) characterize physico-chemical and hydrological parameters of the river; and 4) correlate fish abundance and diversity with the physico-chemical and hydrological characteristics of Bayawan River.  The fishes of Bayawan River in Negros Oriental, central Philippines were assessed for three sampling months (December 2018-February 2019). Abundance and diversity of fishes were quantified in relation to physico-chemical and hydrological parameters. The data were analyzed using Shannon-Wiener Diversity Index (Hˈ), Margalef’s Index (species richness), Principal Component Analysis (PCA), and Canonical Correspondence Analysis (CCA). The Shannon-Weiner Diversity Index (Hˈ) across sampling months ranged from 2.3-3 showing a relatively diverse ecosystem. However, the number of species decreased from December 2018 to February 2019 (27...</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="3ddf3d835f41b92b75207fa33b7030bf" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:110671434,&quot;asset_id&quot;:113803049,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/110671434/download_file?st=MTczMzE2NjI4Nyw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="113803049"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="113803049"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 113803049; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=113803049]").text(description); $(".js-view-count[data-work-id=113803049]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 113803049; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='113803049']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 113803049, container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (true){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "3ddf3d835f41b92b75207fa33b7030bf" } } $('.js-work-strip[data-work-id=113803049]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":113803049,"title":"Abundance and Diversity of Fishes in Bayawan River, Negros Oriental, Philipines","translated_title":"","metadata":{"abstract":"ABSTRACTThis study aimed to: 1) identify fish species found in Bayawan River; 2) determine fish abundance and species composition in three segments of  the river; 3) characterize physico-chemical and hydrological parameters of the river; and 4) correlate fish abundance and diversity with the physico-chemical and hydrological characteristics of Bayawan River.  The fishes of Bayawan River in Negros Oriental, central Philippines were assessed for three sampling months (December 2018-February 2019). Abundance and diversity of fishes were quantified in relation to physico-chemical and hydrological parameters. The data were analyzed using Shannon-Wiener Diversity Index (Hˈ), Margalef’s Index (species richness), Principal Component Analysis (PCA), and Canonical Correspondence Analysis (CCA). The Shannon-Weiner Diversity Index (Hˈ) across sampling months ranged from 2.3-3 showing a relatively diverse ecosystem. 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The data were analyzed using Shannon-Wiener Diversity Index (Hˈ), Margalef’s Index (species richness), Principal Component Analysis (PCA), and Canonical Correspondence Analysis (CCA). The Shannon-Weiner Diversity Index (Hˈ) across sampling months ranged from 2.3-3 showing a relatively diverse ecosystem. 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$(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="113803048"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/113803048/Deep_reef_fishes_in_the_world_s_epicenter_of_marine_biodiversity"><img alt="Research paper thumbnail of Deep reef fishes in the world’s epicenter of marine biodiversity" class="work-thumbnail" src="https://attachments.academia-assets.com/110671466/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/113803048/Deep_reef_fishes_in_the_world_s_epicenter_of_marine_biodiversity">Deep reef fishes in the world’s epicenter of marine biodiversity</a></div><div class="wp-workCard_item"><span>Coral Reefs</span><span>, 2019</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="9c821ff3cbf78c1f9a74092a673115a5" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:110671466,&quot;asset_id&quot;:113803048,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/110671466/download_file?st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="113803048"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="113803048"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 113803048; 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Here, we improve the understanding of fish species diversity and distribution patterns in the Philippines by analyzing data from mesophotic coral ecosystems (MCEs; 30-150 m depth) obtained via mixed-gas rebreather diving and baited remote underwater video surveys. A total of 277 fish species from 50 families was documented, which includes thirteen newly discovered and undescribed species. There were 27 new records for the Philippines and 110 depth range extensions, indicating that many reef fishes have a broader geographic distribution and greater depth limits than previously reported. High taxonomic beta-diversity, mainly associated with family and genus turnover with depth, and significant effects of traits such as species body size, mobility and geographic range with maximum recorded depth, were observed. These results suggest that MCEs are characterized by unique assemblages with distinct ecological and biogeographic traits. A high proportion (60.5%) of the fish species are targeted by fishing, suggesting that Philippine MCEs are as vulnerable to overfishing as shallow reefs. Our findings support calls to expand conservation efforts beyond shallow reefs and draw attention to the need to explicitly include deep reefs in marine protected areas to help preserve the unique biodiversity of MCEs in the Philippines.","publication_date":{"day":null,"month":null,"year":2019,"errors":{}},"publication_name":"Coral 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class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/113803047/Benthic_habitat_and_fish_assemblage_structure_from_shallow_to_mesophotic_depths_in_a_storm_impacted_marine_protected_area"><img alt="Research paper thumbnail of Benthic habitat and fish assemblage structure from shallow to mesophotic depths in a storm-impacted marine protected area" class="work-thumbnail" src="https://attachments.academia-assets.com/110671471/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/113803047/Benthic_habitat_and_fish_assemblage_structure_from_shallow_to_mesophotic_depths_in_a_storm_impacted_marine_protected_area">Benthic habitat and fish assemblage structure from shallow to mesophotic depths in a storm-impacted marine protected area</a></div><div class="wp-workCard_item"><span>Coral Reefs</span><span>, 2017</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="9a7d6c837d2423d1ba8b912f75c444d3" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:110671471,&quot;asset_id&quot;:113803047,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/110671471/download_file?st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="113803047"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="113803047"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 113803047; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=113803047]").text(description); $(".js-view-count[data-work-id=113803047]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 113803047; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='113803047']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 113803047, container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (true){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "9a7d6c837d2423d1ba8b912f75c444d3" } } $('.js-work-strip[data-work-id=113803047]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":113803047,"title":"Benthic habitat and fish assemblage structure from shallow to mesophotic depths in a storm-impacted marine protected area","translated_title":"","metadata":{"publisher":"Springer Science and Business Media LLC","grobid_abstract":"Baseline ecological studies of mesophotic coral ecosystems are lacking in the equatorial Indo-West Pacific region where coral reefs are highly threatened by anthropogenic and climate-induced disturbances. Here, we used baited remote underwater video to describe benthic habitat and fish assemblage structure from 10 to 80 m depth at Apo Island, a well-managed marine protected area in the Philippines. We conducted surveys 2 yr after two storms (in 2011 and 2012) caused severe damage to shallow coral communities within the no-take marine reserve (NTMR) of Apo Island, which led to declines in fish populations that had built up over three decades. We found that hard coral cover was restricted to \\ 40 m deep in the storm-impacted NTMR and a nearby fished area not impacted by storms. Benthic cover at mesophotic depths ([ 30 m) was dominated by sand/rubble and rock (dead coral) with low cover of soft corals, sponges and macroalgae. Storm damage appeared to have reached the deepest limit of the fringing reef (40 m) and reduced variability in benthic structure within the NTMR. Species richness and/or abundance of most trophic groups of fish declined with increasing depth regardless of storm damage. There were differences in taxonomic and trophic structure and degree of targeting by fisheries between shallow and mesophotic fish assemblages. Threatened shark species and a fish species previously unreported in the Philippines were recorded at mesophotic depths. Our findings provide a first glimpse of the benthic and fish assemblage structure of Philippine coral reef ecosystems across a wide depth gradient. This work also underscores how a combination of limited coral reef development at mesophotic depths close to shallow reefs and severe habitat loss caused by storms would result in minimal depth refuge for reef fish populations.","publication_date":{"day":null,"month":null,"year":2017,"errors":{}},"publication_name":"Coral 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Reef","url":"https://www.academia.edu/Documents/in/Coral_Reef"},{"id":162136,"name":"Storm","url":"https://www.academia.edu/Documents/in/Storm"},{"id":249747,"name":"Coral","url":"https://www.academia.edu/Documents/in/Coral"},{"id":376955,"name":"Threatened Species","url":"https://www.academia.edu/Documents/in/Threatened_Species"},{"id":527507,"name":"Marine Protected Area","url":"https://www.academia.edu/Documents/in/Marine_Protected_Area"},{"id":587964,"name":"Reef","url":"https://www.academia.edu/Documents/in/Reef"},{"id":3538297,"name":"Benthic habitat","url":"https://www.academia.edu/Documents/in/Benthic_habitat"}],"urls":[{"id":38771068,"url":"http://link.springer.com/content/pdf/10.1007/s00338-017-1635-0.pdf"}]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="113803038"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/113803038/First_Record_of_the_Convict_Cichlid_Amatitlania_nigrofasciata_G%C3%BCnther_1867_on_Mindanao_Island_Philippines_with_remarks_on_some_endemic_and_introduced_fishes_in_Sawaga_River_Bukidnon"><img alt="Research paper thumbnail of First Record of the Convict Cichlid Amatitlania nigrofasciata (Günther, 1867) on Mindanao Island, Philippines with remarks on some endemic and introduced fishes in Sawaga River, Bukidnon" class="work-thumbnail" src="https://attachments.academia-assets.com/110671447/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/113803038/First_Record_of_the_Convict_Cichlid_Amatitlania_nigrofasciata_G%C3%BCnther_1867_on_Mindanao_Island_Philippines_with_remarks_on_some_endemic_and_introduced_fishes_in_Sawaga_River_Bukidnon">First Record of the Convict Cichlid Amatitlania nigrofasciata (Günther, 1867) on Mindanao Island, Philippines with remarks on some endemic and introduced fishes in Sawaga River, Bukidnon</a></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">The Convict Cichlid Amatitlania nigrofasciata (Gunther, 1867) is an introduced freshwater fish. W...</span><a class="js-work-more-abstract" data-broccoli-component="work_strip.more_abstract" data-click-track="profile-work-strip-more-abstract" href="javascript:;"><span> more </span><span><i class="fa fa-caret-down"></i></span></a><span class="js-work-more-abstract-untruncated hidden">The Convict Cichlid Amatitlania nigrofasciata (Gunther, 1867) is an introduced freshwater fish. We provide the first record of this species from Mindanao based on samples collected from the Sawaga River, Bukidnon, Mindanao Island. We also provided an account of some fishes, including one endemic fish, the Half-beak ( Nomorhamphus philippinus ), and other introduced species recently sampled in the Sawaga River. We highlight the need to document the spread of introduced species in the river systems of Mindanao. Keywords : Amatitlania nigrofasciata, Sawaga River, freshwater fish</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="2a7733921bd31bd9feac9f7fe5dc1dfa" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:110671447,&quot;asset_id&quot;:113803038,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/110671447/download_file?st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="113803038"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="113803038"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 113803038; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=113803038]").text(description); $(".js-view-count[data-work-id=113803038]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 113803038; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='113803038']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 113803038, container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (true){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "2a7733921bd31bd9feac9f7fe5dc1dfa" } } $('.js-work-strip[data-work-id=113803038]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":113803038,"title":"First Record of the Convict Cichlid Amatitlania nigrofasciata (Günther, 1867) on Mindanao Island, Philippines with remarks on some endemic and introduced fishes in Sawaga River, Bukidnon","translated_title":"","metadata":{"abstract":"The Convict Cichlid Amatitlania nigrofasciata (Gunther, 1867) is an introduced freshwater fish. 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Present CPUE of Caulerpa is significantly lower than it was in the 1980s. Probable factors attributing to this decline are briefly enumerated and discussed.</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="56510cb80a2456b7f664b11a3015bb80" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:82012520,&quot;asset_id&quot;:73522185,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/82012520/download_file?st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="73522185"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="73522185"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 73522185; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=73522185]").text(description); $(".js-view-count[data-work-id=73522185]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 73522185; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='73522185']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 73522185, container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (true){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "56510cb80a2456b7f664b11a3015bb80" } } $('.js-work-strip[data-work-id=73522185]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":73522185,"title":"A Brief Note of Lato (Caulerpa racemosa) Harvest at Solong-on, Siquijor, Philippines","translated_title":"","metadata":{"abstract":"Nearly 30 years since an assessment on the local harvest of Caulerpa racemosa at Solong-on, Siquijor, we conducted a similar study in November 2013. 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$(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> </div><div class="profile--tab_content_container js-tab-pane tab-pane" data-section-id="5343776" id="papers"><div class="js-work-strip profile--work_container" data-work-id="113803064"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/113803064/What_Determines_the_Minimum_Body_Size_for_Vertebrates"><img alt="Research paper thumbnail of What Determines the Minimum Body Size for Vertebrates?" class="work-thumbnail" src="https://a.academia-assets.com/images/blank-paper.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/113803064/What_Determines_the_Minimum_Body_Size_for_Vertebrates">What Determines the Minimum Body Size for Vertebrates?</a></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">The minimum body size of vertebrate species lies just above 6 millimeters, in stark contrast to t...</span><a class="js-work-more-abstract" data-broccoli-component="work_strip.more_abstract" data-click-track="profile-work-strip-more-abstract" href="javascript:;"><span> more </span><span><i class="fa fa-caret-down"></i></span></a><span class="js-work-more-abstract-untruncated hidden">The minimum body size of vertebrate species lies just above 6 millimeters, in stark contrast to the minimum sizes attained by species of other major taxonomic groups. This paper presents two connected hypotheses explaining this minimum size obtainable with a vertebrate Bauplan.Firstly, the complex bodies of vertebrates might not be amendable to reduction below a certain level of complexity. We hypothesize that this lower limit for organ complexity hold especially true for the vertebrate body’s most complex organ, the brain. This is at least partially due to poor scaling of the brain to small sizes, and a coding strategy known as population coding. In the context of poor scaling of a complex Bauplan, we discuss the relative sparsity of paedomorphism and parasitism in vertebrates.Second, these constrains will disproportionately affect the smaller bodies and brains of juvenile or larval animals. This, in turn requires a certain minimum egg size to for a juvenile or larva to reach a size where it can independently function. Due to that minimum egg size, the number of eggs per female will decrease with decreasing female body size, indirectly limiting adult size. That problem is likely aggravated since extremely small animals are likely to be low in the food web and in need of high reproductive rates to offset high mortalities caused by predation. Hence, below a certain body size a female will not be able to produce enough eggs to reach the population replacement value. We demonstrate the scaling relationships relevant for this argument with data from gobiid fishes. The first argument is about animal body complexity; the second argument stems from ecology.</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="113803064"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="113803064"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 113803064; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=113803064]").text(description); $(".js-view-count[data-work-id=113803064]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 113803064; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='113803064']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 113803064, container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (false){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "-1" } } $('.js-work-strip[data-work-id=113803064]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":113803064,"title":"What Determines the Minimum Body Size for Vertebrates?","translated_title":"","metadata":{"abstract":"The minimum body size of vertebrate species lies just above 6 millimeters, in stark contrast to the minimum sizes attained by species of other major taxonomic groups. This paper presents two connected hypotheses explaining this minimum size obtainable with a vertebrate Bauplan.Firstly, the complex bodies of vertebrates might not be amendable to reduction below a certain level of complexity. We hypothesize that this lower limit for organ complexity hold especially true for the vertebrate body’s most complex organ, the brain. This is at least partially due to poor scaling of the brain to small sizes, and a coding strategy known as population coding. In the context of poor scaling of a complex Bauplan, we discuss the relative sparsity of paedomorphism and parasitism in vertebrates.Second, these constrains will disproportionately affect the smaller bodies and brains of juvenile or larval animals. This, in turn requires a certain minimum egg size to for a juvenile or larva to reach a size where it can independently function. Due to that minimum egg size, the number of eggs per female will decrease with decreasing female body size, indirectly limiting adult size. That problem is likely aggravated since extremely small animals are likely to be low in the food web and in need of high reproductive rates to offset high mortalities caused by predation. Hence, below a certain body size a female will not be able to produce enough eggs to reach the population replacement value. We demonstrate the scaling relationships relevant for this argument with data from gobiid fishes. The first argument is about animal body complexity; the second argument stems from ecology.","publication_date":{"day":6,"month":4,"year":2022,"errors":{}}},"translated_abstract":"The minimum body size of vertebrate species lies just above 6 millimeters, in stark contrast to the minimum sizes attained by species of other major taxonomic groups. This paper presents two connected hypotheses explaining this minimum size obtainable with a vertebrate Bauplan.Firstly, the complex bodies of vertebrates might not be amendable to reduction below a certain level of complexity. We hypothesize that this lower limit for organ complexity hold especially true for the vertebrate body’s most complex organ, the brain. This is at least partially due to poor scaling of the brain to small sizes, and a coding strategy known as population coding. In the context of poor scaling of a complex Bauplan, we discuss the relative sparsity of paedomorphism and parasitism in vertebrates.Second, these constrains will disproportionately affect the smaller bodies and brains of juvenile or larval animals. This, in turn requires a certain minimum egg size to for a juvenile or larva to reach a size where it can independently function. Due to that minimum egg size, the number of eggs per female will decrease with decreasing female body size, indirectly limiting adult size. That problem is likely aggravated since extremely small animals are likely to be low in the food web and in need of high reproductive rates to offset high mortalities caused by predation. Hence, below a certain body size a female will not be able to produce enough eggs to reach the population replacement value. We demonstrate the scaling relationships relevant for this argument with data from gobiid fishes. The first argument is about animal body complexity; the second argument stems from ecology.","internal_url":"https://www.academia.edu/113803064/What_Determines_the_Minimum_Body_Size_for_Vertebrates","translated_internal_url":"","created_at":"2024-01-20T22:41:48.497-08:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":47324603,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[],"slug":"What_Determines_the_Minimum_Body_Size_for_Vertebrates","translated_slug":"","page_count":null,"language":"en","content_type":"Work","owner":{"id":47324603,"first_name":"Abner","middle_initials":null,"last_name":"Bucol","page_name":"ABucol","domain_name":"silliman","created_at":"2016-04-19T02:08:19.082-07:00","display_name":"Abner Bucol","url":"https://silliman.academia.edu/ABucol"},"attachments":[],"research_interests":[{"id":7710,"name":"Biology","url":"https://www.academia.edu/Documents/in/Biology"},{"id":64336,"name":"Population","url":"https://www.academia.edu/Documents/in/Population"},{"id":88930,"name":"Predation","url":"https://www.academia.edu/Documents/in/Predation"},{"id":478644,"name":"Vertebrate","url":"https://www.academia.edu/Documents/in/Vertebrate"},{"id":564469,"name":"Juvenile","url":"https://www.academia.edu/Documents/in/Juvenile"}],"urls":[{"id":38771083,"url":"https://doi.org/10.32942/osf.io/k72at"}]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="113803063"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/113803063/Diminishing_sustainability_of_traditional_fishing_practices_in_Siquijor_Island_central_Philippines"><img alt="Research paper thumbnail of Diminishing sustainability of traditional fishing practices in Siquijor Island, central Philippines" class="work-thumbnail" src="https://a.academia-assets.com/images/blank-paper.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/113803063/Diminishing_sustainability_of_traditional_fishing_practices_in_Siquijor_Island_central_Philippines">Diminishing sustainability of traditional fishing practices in Siquijor Island, central Philippines</a></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="113803063"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="113803063"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 113803063; 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$(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="113803062"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/113803062/Patterns_of_biogeographic_and_regional_life_history_trait_variation_in_four_large_bodied_tropical_wrasses"><img alt="Research paper thumbnail of Patterns of biogeographic and regional life-history trait variation in four large-bodied tropical wrasses" class="work-thumbnail" src="https://attachments.academia-assets.com/110671438/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/113803062/Patterns_of_biogeographic_and_regional_life_history_trait_variation_in_four_large_bodied_tropical_wrasses">Patterns of biogeographic and regional life-history trait variation in four large-bodied tropical wrasses</a></div><div class="wp-workCard_item"><span>Marine Biology</span><span>, Aug 22, 2022</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="4a2fd66d3655c8a50226943680c38307" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:110671438,&quot;asset_id&quot;:113803062,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/110671438/download_file?st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&st=MTczMzE2NjI4Niw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="113803062"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="113803062"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 113803062; 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dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "4a2fd66d3655c8a50226943680c38307" } } $('.js-work-strip[data-work-id=113803062]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":113803062,"title":"Patterns of biogeographic and regional life-history trait variation in four large-bodied tropical wrasses","translated_title":"","metadata":{"publisher":"Springer Science+Business Media","ai_title_tag":"Demographic Variation of Tropical Wrasses across Latitudes","grobid_abstract":"Ectotherms display substantial demographic variation across latitudinal gradients of temperature. Higher temperatures are often associated with smaller size, rapid initial growth rates, and early maturation, generally described as the Temperature-Size Rule (TSR). The longevity of most ectotherms also declines at warmer, lower latitudes. However, these patterns may be modified by increases in food resources that can flow on to continuous growth and large adult size. The present study estimates age-based demographic parameters of large-bodied tropical wrasses (Hemigymnus melapterus, H. fasciatus, Cheilinus fasciatus, and Oxycheilinus digramma) collected from Philippine fish markets (9-11°N) and sampled from Palm (18.53-18.70°S) and Whitsunday (20.05-20.21°S) reefs on the Great Barrier Reef, Australia (GBR). Differences in longevity, initial growth rates, and the age at sexual maturation at a biogeographic scale, between the Philippines and GBR, conformed to predictions of the TSR. However, Philippine specimens exhibited greater relative body condition and sustained periods of growth beyond sexual maturity resulting in larger adult size than GBR samples. Size-structure data from Philippine marine reserves and fished sites indicated that these differences were not confounded by fishery-dependent sampling. Moreover, latitudinal length-weight relationships could not be explained by lower densities of the focal wrasses in the Philippines or by relative gonad size. Less pronounced patterns of demographic variation that differed across species were evident at a regional scale, among Palm and Whitsunday reefs. Patterns of demographic variation between the Philippines and GBR strongly suggest that differences in food resource levels will be important in explaining the observed geographic variation.","publication_date":{"day":22,"month":8,"year":2022,"errors":{}},"publication_name":"Marine Biology","grobid_abstract_attachment_id":110671438},"translated_abstract":null,"internal_url":"https://www.academia.edu/113803062/Patterns_of_biogeographic_and_regional_life_history_trait_variation_in_four_large_bodied_tropical_wrasses","translated_internal_url":"","created_at":"2024-01-20T22:41:47.859-08:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":47324603,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":110671438,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/110671438/thumbnails/1.jpg","file_name":"s00227-022-04098-9.pdf","download_url":"https://www.academia.edu/attachments/110671438/download_file?st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&st=MTczMzE2NjI4Niw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Patterns_of_biogeographic_and_regional_l.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/110671438/s00227-022-04098-9-libre.pdf?1705820817=\u0026response-content-disposition=attachment%3B+filename%3DPatterns_of_biogeographic_and_regional_l.pdf\u0026Expires=1733169885\u0026Signature=Q76Z01EoW98IaHYrsCxNNNGAGu8dz--K0x4UxMw1xGcLKjyxM74~32xa-4VaLc7hN29ae2pJJGvLznyR92XDVslvTNsIJinf4v-UEmWo8G4UkIOSfxnWKsmD7X-RKEn3rQfVr~tt2hbJncNZU9uB-WMJfnsuc3ycmmZJSPwxXG2nbLZM291GZzdJ-UmRBqXx8vRzK4Qi0EdE3Bt5y9E9W8doWRJXeIWZWVSY-sBJgv~mGzVSyWIEn4qYS0NjoRPUCRUi6NWexmvkD9CnI8sNcJGCHNkf7CDqR0eXKDQOObZSEiEjyx2sL~Ihm6SvTn2M3F1oblOSQPsrW~5pHAPuSw__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"Patterns_of_biogeographic_and_regional_life_history_trait_variation_in_four_large_bodied_tropical_wrasses","translated_slug":"","page_count":16,"language":"en","content_type":"Work","owner":{"id":47324603,"first_name":"Abner","middle_initials":null,"last_name":"Bucol","page_name":"ABucol","domain_name":"silliman","created_at":"2016-04-19T02:08:19.082-07:00","display_name":"Abner Bucol","url":"https://silliman.academia.edu/ABucol"},"attachments":[{"id":110671438,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/110671438/thumbnails/1.jpg","file_name":"s00227-022-04098-9.pdf","download_url":"https://www.academia.edu/attachments/110671438/download_file?st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&st=MTczMzE2NjI4Niw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Patterns_of_biogeographic_and_regional_l.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/110671438/s00227-022-04098-9-libre.pdf?1705820817=\u0026response-content-disposition=attachment%3B+filename%3DPatterns_of_biogeographic_and_regional_l.pdf\u0026Expires=1733169885\u0026Signature=Q76Z01EoW98IaHYrsCxNNNGAGu8dz--K0x4UxMw1xGcLKjyxM74~32xa-4VaLc7hN29ae2pJJGvLznyR92XDVslvTNsIJinf4v-UEmWo8G4UkIOSfxnWKsmD7X-RKEn3rQfVr~tt2hbJncNZU9uB-WMJfnsuc3ycmmZJSPwxXG2nbLZM291GZzdJ-UmRBqXx8vRzK4Qi0EdE3Bt5y9E9W8doWRJXeIWZWVSY-sBJgv~mGzVSyWIEn4qYS0NjoRPUCRUi6NWexmvkD9CnI8sNcJGCHNkf7CDqR0eXKDQOObZSEiEjyx2sL~Ihm6SvTn2M3F1oblOSQPsrW~5pHAPuSw__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":158,"name":"Marine Biology","url":"https://www.academia.edu/Documents/in/Marine_Biology"},{"id":7710,"name":"Biology","url":"https://www.academia.edu/Documents/in/Biology"},{"id":9846,"name":"Ecology","url":"https://www.academia.edu/Documents/in/Ecology"},{"id":47884,"name":"Biological Sciences","url":"https://www.academia.edu/Documents/in/Biological_Sciences"},{"id":58054,"name":"Environmental Sciences","url":"https://www.academia.edu/Documents/in/Environmental_Sciences"},{"id":564469,"name":"Juvenile","url":"https://www.academia.edu/Documents/in/Juvenile"},{"id":587964,"name":"Reef","url":"https://www.academia.edu/Documents/in/Reef"},{"id":1407962,"name":"Latitude","url":"https://www.academia.edu/Documents/in/Latitude"},{"id":1542800,"name":"Ectotherm","url":"https://www.academia.edu/Documents/in/Ectotherm"}],"urls":[{"id":38771081,"url":"https://link.springer.com/content/pdf/10.1007/s00227-022-04098-9.pdf"}]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="113803061"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/113803061/First_Record_of_the_Convict_Cichlid_Amatitlania_nigrofasciata_G%C3%BCnther_1867_on_Mindanao_Island_Philippines_with_remarks_on_some_endemic_and_introduced_fishes_in_Sawaga_River_Bukidnon"><img alt="Research paper thumbnail of First Record of the Convict Cichlid Amatitlania nigrofasciata (Günther, 1867) on Mindanao Island, Philippines with remarks on some endemic and introduced fishes in Sawaga River, Bukidnon" class="work-thumbnail" src="https://attachments.academia-assets.com/110671468/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/113803061/First_Record_of_the_Convict_Cichlid_Amatitlania_nigrofasciata_G%C3%BCnther_1867_on_Mindanao_Island_Philippines_with_remarks_on_some_endemic_and_introduced_fishes_in_Sawaga_River_Bukidnon">First Record of the Convict Cichlid Amatitlania nigrofasciata (Günther, 1867) on Mindanao Island, Philippines with remarks on some endemic and introduced fishes in Sawaga River, Bukidnon</a></div><div class="wp-workCard_item"><span>Asian Journal of Biodiversity</span><span>, Jan 25, 2021</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="76593dd723b15b85d7b6384716a35674" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:110671468,&quot;asset_id&quot;:113803061,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/110671468/download_file?st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&st=MTczMzE2NjI4Niw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="113803061"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="113803061"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 113803061; 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We provide the first record of this species from Mindanao based on samples collected from the Sawaga River, Bukidnon, Mindanao Island. We also provided remarks of some fishes, including one endemic fish, the Half-beak (Nomorhamphus philippinus), and other introduced species recently sampled in the Sawaga River. 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$(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="113803059"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/113803059/Geographic_variability_in_the_gonadal_development_and_sexual_ontogeny_of_scp_i_Hemigymnus_i_i_Cheilinus_i_scp_and_scp_i_Oxycheilinus_i_scp_wrasses_among_scp_Indo_Pacific_scp_coral_reefs"><img alt="Research paper thumbnail of Geographic variability in the gonadal development and sexual ontogeny of &lt;scp&gt;&lt;i&gt;Hemigymnus&lt;/i&gt;, &lt;i&gt;Cheilinus&lt;/i&gt;&lt;/scp&gt; and &lt;scp&gt;&lt;i&gt;Oxycheilinus&lt;/i&gt;&lt;/scp&gt; wrasses among &lt;scp&gt;Indo‐Pacific&lt;/scp&gt; coral reefs" class="work-thumbnail" src="https://a.academia-assets.com/images/blank-paper.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/113803059/Geographic_variability_in_the_gonadal_development_and_sexual_ontogeny_of_scp_i_Hemigymnus_i_i_Cheilinus_i_scp_and_scp_i_Oxycheilinus_i_scp_wrasses_among_scp_Indo_Pacific_scp_coral_reefs">Geographic variability in the gonadal development and sexual ontogeny of &lt;scp&gt;&lt;i&gt;Hemigymnus&lt;/i&gt;, &lt;i&gt;Cheilinus&lt;/i&gt;&lt;/scp&gt; and &lt;scp&gt;&lt;i&gt;Oxycheilinus&lt;/i&gt;&lt;/scp&gt; wrasses among &lt;scp&gt;Indo‐Pacific&lt;/scp&gt; coral reefs</a></div><div class="wp-workCard_item"><span>Journal of Fish Biology</span><span>, Aug 5, 2021</span></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">Patterns of reproductive ontogeny in four species of coral reef wrasses (F: Labridae) Hemigymnus ...</span><a class="js-work-more-abstract" data-broccoli-component="work_strip.more_abstract" data-click-track="profile-work-strip-more-abstract" href="javascript:;"><span> more </span><span><i class="fa fa-caret-down"></i></span></a><span class="js-work-more-abstract-untruncated hidden">Patterns of reproductive ontogeny in four species of coral reef wrasses (F: Labridae) Hemigymnus melapterus, Hemigymnus fasciatus, Cheilinus fasciatus and Oxycheilinus digramma were investigated. Populations of each species were sampled from two island groups of the central Great Barrier Reef (GBR), Australia, and from coral reefs in the central Philippines. These three sampling locations span 30° of latitude. The GBR and Philippine reefs experience biologically significant differences in water temperature, geography and human activity. The studied wrasses are effectively unfished in Australia but heavily fished in the Philippines. Gonad weights, histology and demographic data were obtained across the entire size and age range of H. melapterus, C. fasciatus and O. digramma from all locations. Analysis identified three processes of male recruitment: functional gonochorism and both forms of protogynous hermaphroditism, monandry and diandry. The expression of these distinct sexual ontogenies was locality dependent. Populations of H. melapterus, H. fasciatus, C. fasciatus and O. digramma on the GBR showed consistently uniform patterns of sexual ontogeny, with all species being exclusively monandric. H. melapterus, C. fasciatus and O. digramma in the Philippines displayed complex sexual ontogenies, with all species showing histological evidence of both diandry and functional gonochorism. Reproductive investment in gonadal tissue, and population sex structure, also differed between GBR and Philippine coral reefs. Philippine populations had substantially lower gonado‐somatic indices than populations on the GBR. Nonetheless, Philippine populations matured more rapidly and displayed a protracted timing of sex change over a large size and age range. Thus, mature females appeared earlier and persisted later into ontogeny in the Philippines than on GBR reefs. Protracted timing of sex change on Philippine reefs is likely linked to the presence of primary males in the population, which is known to reduce the strength of selection for mature females to undergo sex change and become male. Hypotheses based on social structure of fish populations, environmental factors and evolutionary history were developed to account for the different patterns of sexual ontogeny in the focal wrasses.</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="113803059"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="113803059"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 113803059; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=113803059]").text(description); $(".js-view-count[data-work-id=113803059]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 113803059; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='113803059']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 113803059, container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (false){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "-1" } } $('.js-work-strip[data-work-id=113803059]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":113803059,"title":"Geographic variability in the gonadal development and sexual ontogeny of \u003cscp\u003e\u003ci\u003eHemigymnus\u003c/i\u003e, \u003ci\u003eCheilinus\u003c/i\u003e\u003c/scp\u003e and \u003cscp\u003e\u003ci\u003eOxycheilinus\u003c/i\u003e\u003c/scp\u003e wrasses among \u003cscp\u003eIndo‐Pacific\u003c/scp\u003e coral reefs","translated_title":"","metadata":{"abstract":"Patterns of reproductive ontogeny in four species of coral reef wrasses (F: Labridae) Hemigymnus melapterus, Hemigymnus fasciatus, Cheilinus fasciatus and Oxycheilinus digramma were investigated. Populations of each species were sampled from two island groups of the central Great Barrier Reef (GBR), Australia, and from coral reefs in the central Philippines. These three sampling locations span 30° of latitude. The GBR and Philippine reefs experience biologically significant differences in water temperature, geography and human activity. The studied wrasses are effectively unfished in Australia but heavily fished in the Philippines. Gonad weights, histology and demographic data were obtained across the entire size and age range of H. melapterus, C. fasciatus and O. digramma from all locations. Analysis identified three processes of male recruitment: functional gonochorism and both forms of protogynous hermaphroditism, monandry and diandry. The expression of these distinct sexual ontogenies was locality dependent. Populations of H. melapterus, H. fasciatus, C. fasciatus and O. digramma on the GBR showed consistently uniform patterns of sexual ontogeny, with all species being exclusively monandric. H. melapterus, C. fasciatus and O. digramma in the Philippines displayed complex sexual ontogenies, with all species showing histological evidence of both diandry and functional gonochorism. Reproductive investment in gonadal tissue, and population sex structure, also differed between GBR and Philippine coral reefs. Philippine populations had substantially lower gonado‐somatic indices than populations on the GBR. Nonetheless, Philippine populations matured more rapidly and displayed a protracted timing of sex change over a large size and age range. Thus, mature females appeared earlier and persisted later into ontogeny in the Philippines than on GBR reefs. Protracted timing of sex change on Philippine reefs is likely linked to the presence of primary males in the population, which is known to reduce the strength of selection for mature females to undergo sex change and become male. Hypotheses based on social structure of fish populations, environmental factors and evolutionary history were developed to account for the different patterns of sexual ontogeny in the focal wrasses.","publisher":"Wiley-Blackwell","publication_date":{"day":5,"month":8,"year":2021,"errors":{}},"publication_name":"Journal of Fish Biology"},"translated_abstract":"Patterns of reproductive ontogeny in four species of coral reef wrasses (F: Labridae) Hemigymnus melapterus, Hemigymnus fasciatus, Cheilinus fasciatus and Oxycheilinus digramma were investigated. Populations of each species were sampled from two island groups of the central Great Barrier Reef (GBR), Australia, and from coral reefs in the central Philippines. These three sampling locations span 30° of latitude. The GBR and Philippine reefs experience biologically significant differences in water temperature, geography and human activity. The studied wrasses are effectively unfished in Australia but heavily fished in the Philippines. Gonad weights, histology and demographic data were obtained across the entire size and age range of H. melapterus, C. fasciatus and O. digramma from all locations. Analysis identified three processes of male recruitment: functional gonochorism and both forms of protogynous hermaphroditism, monandry and diandry. The expression of these distinct sexual ontogenies was locality dependent. Populations of H. melapterus, H. fasciatus, C. fasciatus and O. digramma on the GBR showed consistently uniform patterns of sexual ontogeny, with all species being exclusively monandric. H. melapterus, C. fasciatus and O. digramma in the Philippines displayed complex sexual ontogenies, with all species showing histological evidence of both diandry and functional gonochorism. Reproductive investment in gonadal tissue, and population sex structure, also differed between GBR and Philippine coral reefs. Philippine populations had substantially lower gonado‐somatic indices than populations on the GBR. Nonetheless, Philippine populations matured more rapidly and displayed a protracted timing of sex change over a large size and age range. Thus, mature females appeared earlier and persisted later into ontogeny in the Philippines than on GBR reefs. Protracted timing of sex change on Philippine reefs is likely linked to the presence of primary males in the population, which is known to reduce the strength of selection for mature females to undergo sex change and become male. Hypotheses based on social structure of fish populations, environmental factors and evolutionary history were developed to account for the different patterns of sexual ontogeny in the focal wrasses.","internal_url":"https://www.academia.edu/113803059/Geographic_variability_in_the_gonadal_development_and_sexual_ontogeny_of_scp_i_Hemigymnus_i_i_Cheilinus_i_scp_and_scp_i_Oxycheilinus_i_scp_wrasses_among_scp_Indo_Pacific_scp_coral_reefs","translated_internal_url":"","created_at":"2024-01-20T22:41:46.933-08:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":47324603,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[],"slug":"Geographic_variability_in_the_gonadal_development_and_sexual_ontogeny_of_scp_i_Hemigymnus_i_i_Cheilinus_i_scp_and_scp_i_Oxycheilinus_i_scp_wrasses_among_scp_Indo_Pacific_scp_coral_reefs","translated_slug":"","page_count":null,"language":"en","content_type":"Work","owner":{"id":47324603,"first_name":"Abner","middle_initials":null,"last_name":"Bucol","page_name":"ABucol","domain_name":"silliman","created_at":"2016-04-19T02:08:19.082-07:00","display_name":"Abner Bucol","url":"https://silliman.academia.edu/ABucol"},"attachments":[],"research_interests":[{"id":173,"name":"Zoology","url":"https://www.academia.edu/Documents/in/Zoology"},{"id":7710,"name":"Biology","url":"https://www.academia.edu/Documents/in/Biology"},{"id":9846,"name":"Ecology","url":"https://www.academia.edu/Documents/in/Ecology"},{"id":11873,"name":"Fish Biology","url":"https://www.academia.edu/Documents/in/Fish_Biology"},{"id":26327,"name":"Medicine","url":"https://www.academia.edu/Documents/in/Medicine"},{"id":55608,"name":"Ontogeny","url":"https://www.academia.edu/Documents/in/Ontogeny"},{"id":64336,"name":"Population","url":"https://www.academia.edu/Documents/in/Population"},{"id":143611,"name":"Coral Reef","url":"https://www.academia.edu/Documents/in/Coral_Reef"},{"id":170652,"name":"Fisheries Sciences","url":"https://www.academia.edu/Documents/in/Fisheries_Sciences"},{"id":249747,"name":"Coral","url":"https://www.academia.edu/Documents/in/Coral"},{"id":338196,"name":"Sex Change","url":"https://www.academia.edu/Documents/in/Sex_Change"},{"id":587964,"name":"Reef","url":"https://www.academia.edu/Documents/in/Reef"}],"urls":[{"id":38771078,"url":"https://rss.onlinelibrary.wiley.com/doi/am-pdf/10.1111/jfb.14842"}]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="113803058"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/113803058/What_Determines_the_Minimum_Body_Size_for_Vertebrates"><img alt="Research paper thumbnail of What Determines the Minimum Body Size for Vertebrates?" class="work-thumbnail" src="https://a.academia-assets.com/images/blank-paper.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/113803058/What_Determines_the_Minimum_Body_Size_for_Vertebrates">What Determines the Minimum Body Size for Vertebrates?</a></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">The minimum body size of vertebrate species lies just above 6 millimeters, in stark contrast to t...</span><a class="js-work-more-abstract" data-broccoli-component="work_strip.more_abstract" data-click-track="profile-work-strip-more-abstract" href="javascript:;"><span> more </span><span><i class="fa fa-caret-down"></i></span></a><span class="js-work-more-abstract-untruncated hidden">The minimum body size of vertebrate species lies just above 6 millimeters, in stark contrast to the minimum sizes attained by species of other major taxonomic groups. This paper presents two connected hypotheses explaining this minimum size obtainable with a vertebrate Bauplan.Firstly, the complex bodies of vertebrates might not be amendable to reduction below a certain level of complexity. We hypothesize that this lower limit for organ complexity hold especially true for the vertebrate body’s most complex organ, the brain. This is at least partially due to poor scaling of the brain to small sizes, and a coding strategy known as population coding. In the context of poor scaling of a complex Bauplan, we discuss the relative sparsity of paedomorphism and parasitism in vertebrates.Second, these constrains will disproportionately affect the smaller bodies and brains of juvenile or larval animals. This, in turn requires a certain minimum egg size to for a juvenile or larva to reach a siz...</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="113803058"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="113803058"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 113803058; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=113803058]").text(description); $(".js-view-count[data-work-id=113803058]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 113803058; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='113803058']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 113803058, container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (false){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "-1" } } $('.js-work-strip[data-work-id=113803058]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":113803058,"title":"What Determines the Minimum Body Size for Vertebrates?","translated_title":"","metadata":{"abstract":"The minimum body size of vertebrate species lies just above 6 millimeters, in stark contrast to the minimum sizes attained by species of other major taxonomic groups. This paper presents two connected hypotheses explaining this minimum size obtainable with a vertebrate Bauplan.Firstly, the complex bodies of vertebrates might not be amendable to reduction below a certain level of complexity. We hypothesize that this lower limit for organ complexity hold especially true for the vertebrate body’s most complex organ, the brain. This is at least partially due to poor scaling of the brain to small sizes, and a coding strategy known as population coding. In the context of poor scaling of a complex Bauplan, we discuss the relative sparsity of paedomorphism and parasitism in vertebrates.Second, these constrains will disproportionately affect the smaller bodies and brains of juvenile or larval animals. This, in turn requires a certain minimum egg size to for a juvenile or larva to reach a siz...","publisher":"California Digital Library (CDL)"},"translated_abstract":"The minimum body size of vertebrate species lies just above 6 millimeters, in stark contrast to the minimum sizes attained by species of other major taxonomic groups. This paper presents two connected hypotheses explaining this minimum size obtainable with a vertebrate Bauplan.Firstly, the complex bodies of vertebrates might not be amendable to reduction below a certain level of complexity. We hypothesize that this lower limit for organ complexity hold especially true for the vertebrate body’s most complex organ, the brain. This is at least partially due to poor scaling of the brain to small sizes, and a coding strategy known as population coding. In the context of poor scaling of a complex Bauplan, we discuss the relative sparsity of paedomorphism and parasitism in vertebrates.Second, these constrains will disproportionately affect the smaller bodies and brains of juvenile or larval animals. 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The Journal name is Silliman Journal ISSN 0037-5284. Entry of this Journal is not allowed below" class="work-thumbnail" src="https://a.academia-assets.com/images/blank-paper.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/113803056/Microplastics_in_the_Mottled_Rabbitfish_Siganus_fuscescens_in_Negros_Oriental_Philippines_with_Notes_on_the_Siganid_Fishery_The_Journal_name_is_Silliman_Journal_ISSN_0037_5284_Entry_of_this_Journal_is_not_allowed_below">Microplastics in the Mottled Rabbitfish (Siganus fuscescens) in Negros Oriental, Philippines with Notes on the Siganid Fishery. The Journal name is Silliman Journal ISSN 0037-5284. Entry of this Journal is not allowed below</a></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="113803056"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="113803056"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 113803056; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=113803056]").text(description); $(".js-view-count[data-work-id=113803056]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 113803056; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='113803056']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 113803056, container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (false){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "-1" } } $('.js-work-strip[data-work-id=113803056]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":113803056,"title":"Microplastics in the Mottled Rabbitfish (Siganus fuscescens) in Negros Oriental, Philippines with Notes on the Siganid Fishery. 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$(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="113803055"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/113803055/The_2013_fish_kill_event_in_Ilog_River_Estuary_Negros_Occidental_Philippines"><img alt="Research paper thumbnail of The 2013 fish kill event in Ilog River-Estuary, Negros Occidental, Philippines" class="work-thumbnail" src="https://a.academia-assets.com/images/blank-paper.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/113803055/The_2013_fish_kill_event_in_Ilog_River_Estuary_Negros_Occidental_Philippines">The 2013 fish kill event in Ilog River-Estuary, Negros Occidental, Philippines</a></div><div class="wp-workCard_item"><span>The Philippine Scientist</span><span>, 2018</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="113803055"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="113803055"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 113803055; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=113803055]").text(description); $(".js-view-count[data-work-id=113803055]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 113803055; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='113803055']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 113803055, container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (false){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); 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$(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="113803054"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/113803054/The_contribution_of_macroalgae_associated_fishes_to_small_scale_tropical_reef_fisheries"><img alt="Research paper thumbnail of The contribution of macroalgae‐associated fishes to small‐scale tropical reef fisheries" class="work-thumbnail" src="https://attachments.academia-assets.com/110671470/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/113803054/The_contribution_of_macroalgae_associated_fishes_to_small_scale_tropical_reef_fisheries">The contribution of macroalgae‐associated fishes to small‐scale tropical reef fisheries</a></div><div class="wp-workCard_item"><span>Fish and Fisheries</span><span>, 2022</span></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">Macroalgae‐dominated reefs are a prominent habitat in tropical seascapes that support a diversity...</span><a class="js-work-more-abstract" data-broccoli-component="work_strip.more_abstract" data-click-track="profile-work-strip-more-abstract" href="javascript:;"><span> more </span><span><i class="fa fa-caret-down"></i></span></a><span class="js-work-more-abstract-untruncated hidden">Macroalgae‐dominated reefs are a prominent habitat in tropical seascapes that support a diversity of fishes, including fishery target species. To what extent, then, do macroalgal habitats contribute to small‐scale tropical reef fisheries? To address this question we: (1) Quantified the macroalgae‐associated fish component in catches from 133 small‐scale fisheries, (2) Compared life‐history traits relevant to fishing (e.g. growth, longevity) in macroalgal and coral‐associated fishes, (3) Examined how macroalgae‐associated species can influence catch diversity, trophic level and vulnerability and (4) Explored how tropical fisheries change with the expansion of macroalgal habitats using a case study of fishery‐independent data for Seychelles. Fish that utilised macroalgal habitats comprise 24% of the catch, but very few fished species relied entirely on macroalgal or coral habitats post‐settlement. Macroalgal and coral‐associated fishes had similar life‐history traits, although vulnera...</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="dab8fe1cbd913503b4ab46e34bdf36c3" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:110671470,&quot;asset_id&quot;:113803054,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/110671470/download_file?st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&st=MTczMzE2NjI4Niw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="113803054"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="113803054"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 113803054; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=113803054]").text(description); $(".js-view-count[data-work-id=113803054]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 113803054; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='113803054']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 113803054, container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (true){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "dab8fe1cbd913503b4ab46e34bdf36c3" } } $('.js-work-strip[data-work-id=113803054]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":113803054,"title":"The contribution of macroalgae‐associated fishes to small‐scale tropical reef fisheries","translated_title":"","metadata":{"abstract":"Macroalgae‐dominated reefs are a prominent habitat in tropical seascapes that support a diversity of fishes, including fishery target species. 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Macroalgal and coral‐associated fishes had similar life‐history traits, although vulnera...","publisher":"Wiley","publication_date":{"day":null,"month":null,"year":2022,"errors":{}},"publication_name":"Fish and Fisheries"},"translated_abstract":"Macroalgae‐dominated reefs are a prominent habitat in tropical seascapes that support a diversity of fishes, including fishery target species. To what extent, then, do macroalgal habitats contribute to small‐scale tropical reef fisheries? To address this question we: (1) Quantified the macroalgae‐associated fish component in catches from 133 small‐scale fisheries, (2) Compared life‐history traits relevant to fishing (e.g. growth, longevity) in macroalgal and coral‐associated fishes, (3) Examined how macroalgae‐associated species can influence catch diversity, trophic level and vulnerability and (4) Explored how tropical fisheries change with the expansion of macroalgal habitats using a case study of fishery‐independent data for Seychelles. 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$(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="113803053"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/113803053/Fishes_from_the_deep_demersal_habitats_off_Manado_North_Sulawesi_Indonesia_and_Negros_Island_Philippines"><img alt="Research paper thumbnail of Fishes from the deep demersal habitats off Manado, North Sulawesi, Indonesia and Negros Island, Philippines" class="work-thumbnail" src="https://attachments.academia-assets.com/110671436/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/113803053/Fishes_from_the_deep_demersal_habitats_off_Manado_North_Sulawesi_Indonesia_and_Negros_Island_Philippines">Fishes from the deep demersal habitats off Manado, North Sulawesi, Indonesia and Negros Island, Philippines</a></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">This paper is a study of some rare and poorly known deep demersal fishes in two Indo-Pacific loca...</span><a class="js-work-more-abstract" data-broccoli-component="work_strip.more_abstract" data-click-track="profile-work-strip-more-abstract" href="javascript:;"><span> more </span><span><i class="fa fa-caret-down"></i></span></a><span class="js-work-more-abstract-untruncated hidden">This paper is a study of some rare and poorly known deep demersal fishes in two Indo-Pacific localities, one in the central Philippines (off Negros Island) and another off Manado, northern Sulawesi. The occurrence of the shark Indonesian Wobbegong Orectolobus leptolineatus in the Philippines is also confirmed. The recent information on the Indonesian Coelacanth (Latimeria menadoensis) and other fish species are also presented. The presence of an angled-rough shark, which is tentatively identified herein as Oxynotus cf japonicus, is also reported for the first time to occur in North Sulawesi waters, Indonesia. Keywords : Indonesia, Philippines, deep, demersal fishes, habitat.</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="209137bbbcaa87079ae112ff749c752f" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:110671436,&quot;asset_id&quot;:113803053,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/110671436/download_file?st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&st=MTczMzE2NjI4Niw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="113803053"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="113803053"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 113803053; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=113803053]").text(description); $(".js-view-count[data-work-id=113803053]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 113803053; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='113803053']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 113803053, container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (true){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "209137bbbcaa87079ae112ff749c752f" } } $('.js-work-strip[data-work-id=113803053]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":113803053,"title":"Fishes from the deep demersal habitats off Manado, North Sulawesi, Indonesia and Negros Island, Philippines","translated_title":"","metadata":{"abstract":"This paper is a study of some rare and poorly known deep demersal fishes in two Indo-Pacific localities, one in the central Philippines (off Negros Island) and another off Manado, northern Sulawesi. The occurrence of the shark Indonesian Wobbegong Orectolobus leptolineatus in the Philippines is also confirmed. The recent information on the Indonesian Coelacanth (Latimeria menadoensis) and other fish species are also presented. The presence of an angled-rough shark, which is tentatively identified herein as Oxynotus cf japonicus, is also reported for the first time to occur in North Sulawesi waters, Indonesia. Keywords : Indonesia, Philippines, deep, demersal fishes, habitat.","publication_date":{"day":null,"month":null,"year":2017,"errors":{}}},"translated_abstract":"This paper is a study of some rare and poorly known deep demersal fishes in two Indo-Pacific localities, one in the central Philippines (off Negros Island) and another off Manado, northern Sulawesi. The occurrence of the shark Indonesian Wobbegong Orectolobus leptolineatus in the Philippines is also confirmed. The recent information on the Indonesian Coelacanth (Latimeria menadoensis) and other fish species are also presented. The presence of an angled-rough shark, which is tentatively identified herein as Oxynotus cf japonicus, is also reported for the first time to occur in North Sulawesi waters, Indonesia. Keywords : Indonesia, Philippines, deep, demersal fishes, habitat.","internal_url":"https://www.academia.edu/113803053/Fishes_from_the_deep_demersal_habitats_off_Manado_North_Sulawesi_Indonesia_and_Negros_Island_Philippines","translated_internal_url":"","created_at":"2024-01-20T22:41:45.919-08:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":47324603,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":110671436,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/110671436/thumbnails/1.jpg","file_name":"1814.pdf","download_url":"https://www.academia.edu/attachments/110671436/download_file?st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&st=MTczMzE2NjI4Niw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Fishes_from_the_deep_demersal_habitats_o.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/110671436/1814-libre.pdf?1705820818=\u0026response-content-disposition=attachment%3B+filename%3DFishes_from_the_deep_demersal_habitats_o.pdf\u0026Expires=1733169886\u0026Signature=dg7SAgBQ0PJE8LCRmmzoeaNXwpI1f6dNQiuv2eqUGxzqOs2RthSS30oATvItbDoG2MjSi-U82DHTPrJBKlnIJkqUUD1fMLli3yCiRNU7NHsf2N4A-Ob0D6z3bLDxwhww~YYd9G5kF-wmzxsXTPEFBZcr8anueLafyuSegI5T~j2nRj0dmo33Twdcu5IpetjeKMUfCJxST0t5ERd2XyrU17Xuuu3qTXc1aMjfFB-HG7gGoKnwQIkCisRPRxm40-0jCALh8RSLZp6MAaxvKHrZKY-3FaGOyuDLhfMfIC6fj1RHA9b2UDfO25WQEWiTPJcavOU7YF3crisZRUq5k3fEgA__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"Fishes_from_the_deep_demersal_habitats_off_Manado_North_Sulawesi_Indonesia_and_Negros_Island_Philippines","translated_slug":"","page_count":24,"language":"en","content_type":"Work","owner":{"id":47324603,"first_name":"Abner","middle_initials":null,"last_name":"Bucol","page_name":"ABucol","domain_name":"silliman","created_at":"2016-04-19T02:08:19.082-07:00","display_name":"Abner Bucol","url":"https://silliman.academia.edu/ABucol"},"attachments":[{"id":110671436,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/110671436/thumbnails/1.jpg","file_name":"1814.pdf","download_url":"https://www.academia.edu/attachments/110671436/download_file?st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&st=MTczMzE2NjI4Niw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Fishes_from_the_deep_demersal_habitats_o.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/110671436/1814-libre.pdf?1705820818=\u0026response-content-disposition=attachment%3B+filename%3DFishes_from_the_deep_demersal_habitats_o.pdf\u0026Expires=1733169886\u0026Signature=dg7SAgBQ0PJE8LCRmmzoeaNXwpI1f6dNQiuv2eqUGxzqOs2RthSS30oATvItbDoG2MjSi-U82DHTPrJBKlnIJkqUUD1fMLli3yCiRNU7NHsf2N4A-Ob0D6z3bLDxwhww~YYd9G5kF-wmzxsXTPEFBZcr8anueLafyuSegI5T~j2nRj0dmo33Twdcu5IpetjeKMUfCJxST0t5ERd2XyrU17Xuuu3qTXc1aMjfFB-HG7gGoKnwQIkCisRPRxm40-0jCALh8RSLZp6MAaxvKHrZKY-3FaGOyuDLhfMfIC6fj1RHA9b2UDfO25WQEWiTPJcavOU7YF3crisZRUq5k3fEgA__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"},{"id":110671437,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/110671437/thumbnails/1.jpg","file_name":"1814.pdf","download_url":"https://www.academia.edu/attachments/110671437/download_file","bulk_download_file_name":"Fishes_from_the_deep_demersal_habitats_o.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/110671437/1814-libre.pdf?1705820815=\u0026response-content-disposition=attachment%3B+filename%3DFishes_from_the_deep_demersal_habitats_o.pdf\u0026Expires=1733169886\u0026Signature=P5kYBO3rwXhoX7WYmpxeSiiMKNTRyIM8sfyW4sWtUATkX1aTUIzrlArnG5um94mZ78F5~ttlhdDVEKITHMlhihFjspn54IqbcoXXX2yCvWhPHmI7~xhuYpGdt3yzYJIuOTOff2gOh2764X6yDpwxcx85TXTA6tal6ALkktuStQCCbiRQekJsNl42Yk41UA0PcWuoBjM8zFu4689wRFBcT7hznltZVXaEKGpLfC88dQxCTneF8m8xKfHNY2BR~n1KiklJNxYn5fIZpo6z5oMC1TL0EEfE70lNsJp1Kongdd01O34K9kBxM3OzokeNNUbuaut1-xcN1tbBJcH8MdL2nw__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":261,"name":"Geography","url":"https://www.academia.edu/Documents/in/Geography"},{"id":81467,"name":"Indonesian","url":"https://www.academia.edu/Documents/in/Indonesian"},{"id":85707,"name":"Habitat","url":"https://www.academia.edu/Documents/in/Habitat"},{"id":173285,"name":"Fishery","url":"https://www.academia.edu/Documents/in/Fishery"},{"id":299364,"name":"Demersal Fish","url":"https://www.academia.edu/Documents/in/Demersal_Fish"},{"id":2007906,"name":"Asian Biodiversity","url":"https://www.academia.edu/Documents/in/Asian_Biodiversity"}],"urls":[{"id":38771074,"url":"https://www.asianscientificjournals.com/new/publication/index.php/ajob/article/download/996/1814"}]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="113803052"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/113803052/Development_of_reproductive_potential_in_protogynous_coral_reef_fishes_within_Philippine_no_take_marine_reserves"><img alt="Research paper thumbnail of Development of reproductive potential in protogynous coral reef fishes within Philippine no‐take marine reserves" class="work-thumbnail" src="https://a.academia-assets.com/images/blank-paper.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/113803052/Development_of_reproductive_potential_in_protogynous_coral_reef_fishes_within_Philippine_no_take_marine_reserves">Development of reproductive potential in protogynous coral reef fishes within Philippine no‐take marine reserves</a></div><div class="wp-workCard_item"><span>Journal of Fish Biology</span><span>, 2021</span></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">ABSTRACTEmpirical evidence for increases in the reproductive potential (egg output per unit area)...</span><a class="js-work-more-abstract" data-broccoli-component="work_strip.more_abstract" data-click-track="profile-work-strip-more-abstract" href="javascript:;"><span> more </span><span><i class="fa fa-caret-down"></i></span></a><span class="js-work-more-abstract-untruncated hidden">ABSTRACTEmpirical evidence for increases in the reproductive potential (egg output per unit area) of coral reef fish in no‐take marine reserves (NTMRs) is sparse. Here, we inferred the development of reproductive potential in two species of protogynous reef fishes, Chlorurus bleekeri (Labridae: Scarinae) and Cephalopholis argus (Epinephelidae), inside and outside of Philippine NTMRs. We estimated key reproductive parameters and applied these to species‐specific density and length data from 17 NTMRs (durations of protection 0–11 years) and paired fished sites (controls) in a space‐for‐time substitution approach. For C. argus, we also used density and length data collected almost annually over 29 years from a NTMR and an adjacent control at Apo Island. The results suggest that C. bleekeri can develop 6.0 times greater reproductive potential in NTMRs than controls after 11 years of protection, equivalent to approximately 582,000 more eggs produced 500 m−2 inside NTMRs. Enhancement of r...</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="113803052"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="113803052"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 113803052; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=113803052]").text(description); $(".js-view-count[data-work-id=113803052]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 113803052; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='113803052']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 113803052, container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (false){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "-1" } } $('.js-work-strip[data-work-id=113803052]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":113803052,"title":"Development of reproductive potential in protogynous coral reef fishes within Philippine no‐take marine reserves","translated_title":"","metadata":{"abstract":"ABSTRACTEmpirical evidence for increases in the reproductive potential (egg output per unit area) of coral reef fish in no‐take marine reserves (NTMRs) is sparse. Here, we inferred the development of reproductive potential in two species of protogynous reef fishes, Chlorurus bleekeri (Labridae: Scarinae) and Cephalopholis argus (Epinephelidae), inside and outside of Philippine NTMRs. We estimated key reproductive parameters and applied these to species‐specific density and length data from 17 NTMRs (durations of protection 0–11 years) and paired fished sites (controls) in a space‐for‐time substitution approach. For C. argus, we also used density and length data collected almost annually over 29 years from a NTMR and an adjacent control at Apo Island. The results suggest that C. bleekeri can develop 6.0 times greater reproductive potential in NTMRs than controls after 11 years of protection, equivalent to approximately 582,000 more eggs produced 500 m−2 inside NTMRs. Enhancement of r...","publisher":"Wiley","publication_date":{"day":null,"month":null,"year":2021,"errors":{}},"publication_name":"Journal of Fish Biology"},"translated_abstract":"ABSTRACTEmpirical evidence for increases in the reproductive potential (egg output per unit area) of coral reef fish in no‐take marine reserves (NTMRs) is sparse. Here, we inferred the development of reproductive potential in two species of protogynous reef fishes, Chlorurus bleekeri (Labridae: Scarinae) and Cephalopholis argus (Epinephelidae), inside and outside of Philippine NTMRs. We estimated key reproductive parameters and applied these to species‐specific density and length data from 17 NTMRs (durations of protection 0–11 years) and paired fished sites (controls) in a space‐for‐time substitution approach. For C. argus, we also used density and length data collected almost annually over 29 years from a NTMR and an adjacent control at Apo Island. The results suggest that C. bleekeri can develop 6.0 times greater reproductive potential in NTMRs than controls after 11 years of protection, equivalent to approximately 582,000 more eggs produced 500 m−2 inside NTMRs. Enhancement of r...","internal_url":"https://www.academia.edu/113803052/Development_of_reproductive_potential_in_protogynous_coral_reef_fishes_within_Philippine_no_take_marine_reserves","translated_internal_url":"","created_at":"2024-01-20T22:41:45.719-08:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":47324603,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[],"slug":"Development_of_reproductive_potential_in_protogynous_coral_reef_fishes_within_Philippine_no_take_marine_reserves","translated_slug":"","page_count":null,"language":"en","content_type":"Work","owner":{"id":47324603,"first_name":"Abner","middle_initials":null,"last_name":"Bucol","page_name":"ABucol","domain_name":"silliman","created_at":"2016-04-19T02:08:19.082-07:00","display_name":"Abner Bucol","url":"https://silliman.academia.edu/ABucol"},"attachments":[],"research_interests":[{"id":173,"name":"Zoology","url":"https://www.academia.edu/Documents/in/Zoology"},{"id":7710,"name":"Biology","url":"https://www.academia.edu/Documents/in/Biology"},{"id":9846,"name":"Ecology","url":"https://www.academia.edu/Documents/in/Ecology"},{"id":11873,"name":"Fish Biology","url":"https://www.academia.edu/Documents/in/Fish_Biology"},{"id":26327,"name":"Medicine","url":"https://www.academia.edu/Documents/in/Medicine"},{"id":143611,"name":"Coral Reef","url":"https://www.academia.edu/Documents/in/Coral_Reef"},{"id":170652,"name":"Fisheries Sciences","url":"https://www.academia.edu/Documents/in/Fisheries_Sciences"},{"id":173285,"name":"Fishery","url":"https://www.academia.edu/Documents/in/Fishery"},{"id":587964,"name":"Reef","url":"https://www.academia.edu/Documents/in/Reef"}],"urls":[{"id":38771073,"url":"https://onlinelibrary.wiley.com/doi/pdf/10.1111/jfb.14861"}]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="113803051"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/113803051/Macroalgal_meadow_habitats_support_fish_and_fisheries_in_diverse_tropical_seascapes"><img alt="Research paper thumbnail of Macroalgal meadow habitats support fish and fisheries in diverse tropical seascapes" class="work-thumbnail" src="https://attachments.academia-assets.com/110671465/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/113803051/Macroalgal_meadow_habitats_support_fish_and_fisheries_in_diverse_tropical_seascapes">Macroalgal meadow habitats support fish and fisheries in diverse tropical seascapes</a></div><div class="wp-workCard_item"><span>Fish and Fisheries</span><span>, 2020</span></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">Canopy‐forming macroalgae can construct extensive meadow habitats in tropical seascapes occupied ...</span><a class="js-work-more-abstract" data-broccoli-component="work_strip.more_abstract" data-click-track="profile-work-strip-more-abstract" href="javascript:;"><span> more </span><span><i class="fa fa-caret-down"></i></span></a><span class="js-work-more-abstract-untruncated hidden">Canopy‐forming macroalgae can construct extensive meadow habitats in tropical seascapes occupied by fishes that span a diversity of taxa, life‐history stages and ecological roles. Our synthesis assessed whether these tropical macroalgal habitats have unique fish assemblages, provide fish nurseries and support local fisheries. We also applied a meta‐analysis of independent surveys across 23 tropical reef locations in 11 countries to examine how macroalgal canopy condition is related to the abundance of macroalgal‐associated fishes. Over 627 fish species were documented in tropical macroalgal meadows, with 218 of these taxa exhibiting higher local abundance within this habitat (cf. nearby coral reef) during at least one life‐history stage. Major overlap (40%–43%) in local fish species richness among macroalgal and seagrass or coral reef habitats suggest macroalgal meadows may provide an important habitat refuge. Moreover, the prominence of juvenile fishes suggests macroalgal meadows f...</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="9763f7d0026dd878dfdce5bbdf065386" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:110671465,&quot;asset_id&quot;:113803051,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/110671465/download_file?st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&st=MTczMzE2NjI4Nyw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="113803051"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="113803051"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 113803051; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=113803051]").text(description); $(".js-view-count[data-work-id=113803051]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 113803051; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='113803051']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 113803051, container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (true){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "9763f7d0026dd878dfdce5bbdf065386" } } $('.js-work-strip[data-work-id=113803051]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":113803051,"title":"Macroalgal meadow habitats support fish and fisheries in diverse tropical seascapes","translated_title":"","metadata":{"abstract":"Canopy‐forming macroalgae can construct extensive meadow habitats in tropical seascapes occupied by fishes that span a diversity of taxa, life‐history stages and ecological roles. Our synthesis assessed whether these tropical macroalgal habitats have unique fish assemblages, provide fish nurseries and support local fisheries. We also applied a meta‐analysis of independent surveys across 23 tropical reef locations in 11 countries to examine how macroalgal canopy condition is related to the abundance of macroalgal‐associated fishes. Over 627 fish species were documented in tropical macroalgal meadows, with 218 of these taxa exhibiting higher local abundance within this habitat (cf. nearby coral reef) during at least one life‐history stage. Major overlap (40%–43%) in local fish species richness among macroalgal and seagrass or coral reef habitats suggest macroalgal meadows may provide an important habitat refuge. Moreover, the prominence of juvenile fishes suggests macroalgal meadows f...","publisher":"Wiley","publication_date":{"day":null,"month":null,"year":2020,"errors":{}},"publication_name":"Fish and Fisheries"},"translated_abstract":"Canopy‐forming macroalgae can construct extensive meadow habitats in tropical seascapes occupied by fishes that span a diversity of taxa, life‐history stages and ecological roles. Our synthesis assessed whether these tropical macroalgal habitats have unique fish assemblages, provide fish nurseries and support local fisheries. We also applied a meta‐analysis of independent surveys across 23 tropical reef locations in 11 countries to examine how macroalgal canopy condition is related to the abundance of macroalgal‐associated fishes. Over 627 fish species were documented in tropical macroalgal meadows, with 218 of these taxa exhibiting higher local abundance within this habitat (cf. nearby coral reef) during at least one life‐history stage. Major overlap (40%–43%) in local fish species richness among macroalgal and seagrass or coral reef habitats suggest macroalgal meadows may provide an important habitat refuge. 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$(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="113803050"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/113803050/Microplastics_in_marine_sediments_and_rabbitfish_Siganus_fuscescens_from_selected_coastal_areas_of_Negros_Oriental_Philippines"><img alt="Research paper thumbnail of Microplastics in marine sediments and rabbitfish (Siganus fuscescens) from selected coastal areas of Negros Oriental, Philippines" class="work-thumbnail" src="https://attachments.academia-assets.com/110671464/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/113803050/Microplastics_in_marine_sediments_and_rabbitfish_Siganus_fuscescens_from_selected_coastal_areas_of_Negros_Oriental_Philippines">Microplastics in marine sediments and rabbitfish (Siganus fuscescens) from selected coastal areas of Negros Oriental, Philippines</a></div><div class="wp-workCard_item"><span>Marine Pollution Bulletin</span><span>, 2019</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="8d8078644b2a056ea1058837094a6b09" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:110671464,&quot;asset_id&quot;:113803050,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/110671464/download_file?st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&st=MTczMzE2NjI4Nyw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="113803050"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="113803050"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 113803050; 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This study is the first in the nation to quantify and characterize microplastics ingested by a commercially important fish, the rabbitfish (Siganus fuscescens), in the coastal areas of Negros Oriental, central Philippines. Across all sites, the diversity of microplastic polymer types was highest in the guts of S. fuscescens from Dumaguete, a densely populated city. Microplastic particles extracted from subtidal sediment samples from Silliman Beach in Dumaguete were dominated by semi-synthetic microfibers (rayon), probably from clothing and textiles. However, these microplastic types were absent in the guts of fish, likely due to the different location and character of their feeding habitats. This study confirms for the first time the presence and diversity of microplastics in an edible finfish in the Philippines.","publication_date":{"day":null,"month":null,"year":2019,"errors":{}},"publication_name":"Marine Pollution Bulletin","grobid_abstract_attachment_id":110671464},"translated_abstract":null,"internal_url":"https://www.academia.edu/113803050/Microplastics_in_marine_sediments_and_rabbitfish_Siganus_fuscescens_from_selected_coastal_areas_of_Negros_Oriental_Philippines","translated_internal_url":"","created_at":"2024-01-20T22:41:45.261-08:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":47324603,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":110671464,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/110671464/thumbnails/1.jpg","file_name":"j.marpolbul.2019.11068520240121-1-an049r.pdf","download_url":"https://www.academia.edu/attachments/110671464/download_file?st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&st=MTczMzE2NjI4Nyw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Microplastics_in_marine_sediments_and_ra.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/110671464/j.marpolbul.2019.11068520240121-1-an049r-libre.pdf?1705820799=\u0026response-content-disposition=attachment%3B+filename%3DMicroplastics_in_marine_sediments_and_ra.pdf\u0026Expires=1733169887\u0026Signature=Wb4WBpsDbSbLjuNsjW4RiryjPigmQywhFJcOnVZcJDjnnflILB7-BGYjBAbmStrVfkSMABgzedA11v7qFppW-1YCFTzh3BGYoUOwbHRg9zT5twKbMlUJ~YdiCAMP8frmqc2SIs4g0S6X1T4yhV1Dq23C4OJOlq8nUqkw3jZl8jNv8-phzoC9ZPtgS7rxHEZtMaGzZfF7NONIe5GTRsu8i~0L4eSaSS0TrhjmwqRJk1E0hu-quJsOkfQToYB4MpQcvP75Yd8U0eq~FKYgC7QaKSK3tQAFdIsiKLZIoO3KQg8vuxULa5UyoNUBjQijaOuu7wst~rLywBqbTF3SOXtxlg__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"Microplastics_in_marine_sediments_and_rabbitfish_Siganus_fuscescens_from_selected_coastal_areas_of_Negros_Oriental_Philippines","translated_slug":"","page_count":4,"language":"en","content_type":"Work","owner":{"id":47324603,"first_name":"Abner","middle_initials":null,"last_name":"Bucol","page_name":"ABucol","domain_name":"silliman","created_at":"2016-04-19T02:08:19.082-07:00","display_name":"Abner Bucol","url":"https://silliman.academia.edu/ABucol"},"attachments":[{"id":110671464,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/110671464/thumbnails/1.jpg","file_name":"j.marpolbul.2019.11068520240121-1-an049r.pdf","download_url":"https://www.academia.edu/attachments/110671464/download_file?st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&st=MTczMzE2NjI4Nyw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Microplastics_in_marine_sediments_and_ra.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/110671464/j.marpolbul.2019.11068520240121-1-an049r-libre.pdf?1705820799=\u0026response-content-disposition=attachment%3B+filename%3DMicroplastics_in_marine_sediments_and_ra.pdf\u0026Expires=1733169887\u0026Signature=Wb4WBpsDbSbLjuNsjW4RiryjPigmQywhFJcOnVZcJDjnnflILB7-BGYjBAbmStrVfkSMABgzedA11v7qFppW-1YCFTzh3BGYoUOwbHRg9zT5twKbMlUJ~YdiCAMP8frmqc2SIs4g0S6X1T4yhV1Dq23C4OJOlq8nUqkw3jZl8jNv8-phzoC9ZPtgS7rxHEZtMaGzZfF7NONIe5GTRsu8i~0L4eSaSS0TrhjmwqRJk1E0hu-quJsOkfQToYB4MpQcvP75Yd8U0eq~FKYgC7QaKSK3tQAFdIsiKLZIoO3KQg8vuxULa5UyoNUBjQijaOuu7wst~rLywBqbTF3SOXtxlg__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":261,"name":"Geography","url":"https://www.academia.edu/Documents/in/Geography"},{"id":26327,"name":"Medicine","url":"https://www.academia.edu/Documents/in/Medicine"},{"id":28235,"name":"Multidisciplinary","url":"https://www.academia.edu/Documents/in/Multidisciplinary"},{"id":79742,"name":"Fishing","url":"https://www.academia.edu/Documents/in/Fishing"},{"id":173285,"name":"Fishery","url":"https://www.academia.edu/Documents/in/Fishery"},{"id":769174,"name":"Marine Habitats","url":"https://www.academia.edu/Documents/in/Marine_Habitats"},{"id":864585,"name":"Plastic pollution","url":"https://www.academia.edu/Documents/in/Plastic_pollution"},{"id":1281089,"name":"Microplastics","url":"https://www.academia.edu/Documents/in/Microplastics"}],"urls":[{"id":38771071,"url":"https://api.elsevier.com/content/article/PII:S0025326X19308410?httpAccept=text/xml"}]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="113803049"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/113803049/Abundance_and_Diversity_of_Fishes_in_Bayawan_River_Negros_Oriental_Philipines"><img alt="Research paper thumbnail of Abundance and Diversity of Fishes in Bayawan River, Negros Oriental, Philipines" class="work-thumbnail" src="https://attachments.academia-assets.com/110671434/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/113803049/Abundance_and_Diversity_of_Fishes_in_Bayawan_River_Negros_Oriental_Philipines">Abundance and Diversity of Fishes in Bayawan River, Negros Oriental, Philipines</a></div><div class="wp-workCard_item"><span>JURNAL ILMIAH SAINS</span><span>, 2019</span></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">ABSTRACTThis study aimed to: 1) identify fish species found in Bayawan River; 2) determine fish a...</span><a class="js-work-more-abstract" data-broccoli-component="work_strip.more_abstract" data-click-track="profile-work-strip-more-abstract" href="javascript:;"><span> more </span><span><i class="fa fa-caret-down"></i></span></a><span class="js-work-more-abstract-untruncated hidden">ABSTRACTThis study aimed to: 1) identify fish species found in Bayawan River; 2) determine fish abundance and species composition in three segments of  the river; 3) characterize physico-chemical and hydrological parameters of the river; and 4) correlate fish abundance and diversity with the physico-chemical and hydrological characteristics of Bayawan River.  The fishes of Bayawan River in Negros Oriental, central Philippines were assessed for three sampling months (December 2018-February 2019). Abundance and diversity of fishes were quantified in relation to physico-chemical and hydrological parameters. The data were analyzed using Shannon-Wiener Diversity Index (Hˈ), Margalef’s Index (species richness), Principal Component Analysis (PCA), and Canonical Correspondence Analysis (CCA). The Shannon-Weiner Diversity Index (Hˈ) across sampling months ranged from 2.3-3 showing a relatively diverse ecosystem. However, the number of species decreased from December 2018 to February 2019 (27...</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="3ddf3d835f41b92b75207fa33b7030bf" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:110671434,&quot;asset_id&quot;:113803049,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/110671434/download_file?st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&st=MTczMzE2NjI4Nyw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="113803049"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="113803049"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 113803049; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=113803049]").text(description); $(".js-view-count[data-work-id=113803049]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 113803049; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='113803049']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 113803049, container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (true){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "3ddf3d835f41b92b75207fa33b7030bf" } } $('.js-work-strip[data-work-id=113803049]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":113803049,"title":"Abundance and Diversity of Fishes in Bayawan River, Negros Oriental, Philipines","translated_title":"","metadata":{"abstract":"ABSTRACTThis study aimed to: 1) identify fish species found in Bayawan River; 2) determine fish abundance and species composition in three segments of  the river; 3) characterize physico-chemical and hydrological parameters of the river; and 4) correlate fish abundance and diversity with the physico-chemical and hydrological characteristics of Bayawan River.  The fishes of Bayawan River in Negros Oriental, central Philippines were assessed for three sampling months (December 2018-February 2019). Abundance and diversity of fishes were quantified in relation to physico-chemical and hydrological parameters. The data were analyzed using Shannon-Wiener Diversity Index (Hˈ), Margalef’s Index (species richness), Principal Component Analysis (PCA), and Canonical Correspondence Analysis (CCA). The Shannon-Weiner Diversity Index (Hˈ) across sampling months ranged from 2.3-3 showing a relatively diverse ecosystem. However, the number of species decreased from December 2018 to February 2019 (27...","publisher":"Universitas Sam Ratulangi","ai_title_tag":"Fish Diversity and Abundance in Bayawan River, Philippines","publication_date":{"day":null,"month":null,"year":2019,"errors":{}},"publication_name":"JURNAL ILMIAH SAINS"},"translated_abstract":"ABSTRACTThis study aimed to: 1) identify fish species found in Bayawan River; 2) determine fish abundance and species composition in three segments of  the river; 3) characterize physico-chemical and hydrological parameters of the river; and 4) correlate fish abundance and diversity with the physico-chemical and hydrological characteristics of Bayawan River.  The fishes of Bayawan River in Negros Oriental, central Philippines were assessed for three sampling months (December 2018-February 2019). Abundance and diversity of fishes were quantified in relation to physico-chemical and hydrological parameters. The data were analyzed using Shannon-Wiener Diversity Index (Hˈ), Margalef’s Index (species richness), Principal Component Analysis (PCA), and Canonical Correspondence Analysis (CCA). The Shannon-Weiner Diversity Index (Hˈ) across sampling months ranged from 2.3-3 showing a relatively diverse ecosystem. However, the number of species decreased from December 2018 to February 2019 (27...","internal_url":"https://www.academia.edu/113803049/Abundance_and_Diversity_of_Fishes_in_Bayawan_River_Negros_Oriental_Philipines","translated_internal_url":"","created_at":"2024-01-20T22:41:45.073-08:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":47324603,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":110671434,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/110671434/thumbnails/1.jpg","file_name":"24679.pdf","download_url":"https://www.academia.edu/attachments/110671434/download_file?st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&st=MTczMzE2NjI4Nyw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Abundance_and_Diversity_of_Fishes_in_Bay.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/110671434/24679-libre.pdf?1705820817=\u0026response-content-disposition=attachment%3B+filename%3DAbundance_and_Diversity_of_Fishes_in_Bay.pdf\u0026Expires=1733169887\u0026Signature=eEu90LFbF9zYYZhPB6P4vM1ygOLMxqGTOfUQhg3MKtrGrId7hoQlBYvxbqt8UdPx3VugiTioR2DucOdv~odcDuuhblEcnib808Ti1Xy1ubCmQ4wWVkaWj~sZ6o28U1Vwz0ZY~Bf5Rt73rHHU3yqWoNe7Rl9IdRKb9s5JsXCcVVSSXRCVr3X5e12-2sYF~ID7o1W1mCKb79t~-7zUv6X2N7AKEtIEKmBncQ0FkOY~frddT2Nju6BtSFmx7tVgZPh9oz9Uf9P21InslifvRAJRJHd7wmUBKk27n080tgPLyF8JJDLKrjyPUT7ud~bGlBGQFuAzPEqwTiY7nCeS2~nJhw__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"Abundance_and_Diversity_of_Fishes_in_Bayawan_River_Negros_Oriental_Philipines","translated_slug":"","page_count":17,"language":"en","content_type":"Work","owner":{"id":47324603,"first_name":"Abner","middle_initials":null,"last_name":"Bucol","page_name":"ABucol","domain_name":"silliman","created_at":"2016-04-19T02:08:19.082-07:00","display_name":"Abner Bucol","url":"https://silliman.academia.edu/ABucol"},"attachments":[{"id":110671434,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/110671434/thumbnails/1.jpg","file_name":"24679.pdf","download_url":"https://www.academia.edu/attachments/110671434/download_file?st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&st=MTczMzE2NjI4Nyw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Abundance_and_Diversity_of_Fishes_in_Bay.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/110671434/24679-libre.pdf?1705820817=\u0026response-content-disposition=attachment%3B+filename%3DAbundance_and_Diversity_of_Fishes_in_Bay.pdf\u0026Expires=1733169887\u0026Signature=eEu90LFbF9zYYZhPB6P4vM1ygOLMxqGTOfUQhg3MKtrGrId7hoQlBYvxbqt8UdPx3VugiTioR2DucOdv~odcDuuhblEcnib808Ti1Xy1ubCmQ4wWVkaWj~sZ6o28U1Vwz0ZY~Bf5Rt73rHHU3yqWoNe7Rl9IdRKb9s5JsXCcVVSSXRCVr3X5e12-2sYF~ID7o1W1mCKb79t~-7zUv6X2N7AKEtIEKmBncQ0FkOY~frddT2Nju6BtSFmx7tVgZPh9oz9Uf9P21InslifvRAJRJHd7wmUBKk27n080tgPLyF8JJDLKrjyPUT7ud~bGlBGQFuAzPEqwTiY7nCeS2~nJhw__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"},{"id":110671435,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/110671435/thumbnails/1.jpg","file_name":"24679.pdf","download_url":"https://www.academia.edu/attachments/110671435/download_file","bulk_download_file_name":"Abundance_and_Diversity_of_Fishes_in_Bay.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/110671435/24679-libre.pdf?1705820819=\u0026response-content-disposition=attachment%3B+filename%3DAbundance_and_Diversity_of_Fishes_in_Bay.pdf\u0026Expires=1733169887\u0026Signature=D4U972tUHMTxk9NL-dcV4R3yyNHqSqgxvy92mwUNcp-oi8X4XAcB46A~-1J78fFByL-yXaiKCFRrJed4lgn7RFog33bDf9QXAIgUt0SE3Qm7diFAwa6Z~4ske8NPBdZ1r3Iv9iblfkgsbmbZf2G4OdVrODPwgPqwFtKoZePbMEPq2RHIbfSHIwww1SRBuOLXPzw~jgK6Dlbj8DAZwnS52DGJJUZntT1wu99rpxf0G2Qjg7E8BQQJgShTktTHCkTQ-rrXTGny~GOs~AUH57MIUzMFJHY2CO2IV0MvPYinCzkbkOzLxjKZgWbnZkqZDtTlcpXydY9XtUmBrf~nmu-xUg__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":7710,"name":"Biology","url":"https://www.academia.edu/Documents/in/Biology"},{"id":9846,"name":"Ecology","url":"https://www.academia.edu/Documents/in/Ecology"},{"id":168668,"name":"Species Diversity","url":"https://www.academia.edu/Documents/in/Species_Diversity"},{"id":199056,"name":"Species Richness","url":"https://www.academia.edu/Documents/in/Species_Richness"},{"id":614268,"name":"Canonical Correspondence Analysis","url":"https://www.academia.edu/Documents/in/Canonical_Correspondence_Analysis"},{"id":876158,"name":"Diversity index","url":"https://www.academia.edu/Documents/in/Diversity_index"},{"id":2527881,"name":"Carangidae","url":"https://www.academia.edu/Documents/in/Carangidae"}],"urls":[{"id":38771070,"url":"https://ejournal.unsrat.ac.id/index.php/JIS/article/viewFile/24841/24679"}]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="113803048"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/113803048/Deep_reef_fishes_in_the_world_s_epicenter_of_marine_biodiversity"><img alt="Research paper thumbnail of Deep reef fishes in the world’s epicenter of marine biodiversity" class="work-thumbnail" src="https://attachments.academia-assets.com/110671466/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/113803048/Deep_reef_fishes_in_the_world_s_epicenter_of_marine_biodiversity">Deep reef fishes in the world’s epicenter of marine biodiversity</a></div><div class="wp-workCard_item"><span>Coral Reefs</span><span>, 2019</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="9c821ff3cbf78c1f9a74092a673115a5" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:110671466,&quot;asset_id&quot;:113803048,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/110671466/download_file?st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="113803048"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="113803048"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 113803048; 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Here, we improve the understanding of fish species diversity and distribution patterns in the Philippines by analyzing data from mesophotic coral ecosystems (MCEs; 30-150 m depth) obtained via mixed-gas rebreather diving and baited remote underwater video surveys. A total of 277 fish species from 50 families was documented, which includes thirteen newly discovered and undescribed species. There were 27 new records for the Philippines and 110 depth range extensions, indicating that many reef fishes have a broader geographic distribution and greater depth limits than previously reported. High taxonomic beta-diversity, mainly associated with family and genus turnover with depth, and significant effects of traits such as species body size, mobility and geographic range with maximum recorded depth, were observed. These results suggest that MCEs are characterized by unique assemblages with distinct ecological and biogeographic traits. A high proportion (60.5%) of the fish species are targeted by fishing, suggesting that Philippine MCEs are as vulnerable to overfishing as shallow reefs. Our findings support calls to expand conservation efforts beyond shallow reefs and draw attention to the need to explicitly include deep reefs in marine protected areas to help preserve the unique biodiversity of MCEs in the Philippines.","publication_date":{"day":null,"month":null,"year":2019,"errors":{}},"publication_name":"Coral Reefs","grobid_abstract_attachment_id":110671466},"translated_abstract":null,"internal_url":"https://www.academia.edu/113803048/Deep_reef_fishes_in_the_world_s_epicenter_of_marine_biodiversity","translated_internal_url":"","created_at":"2024-01-20T22:41:44.892-08:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":47324603,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":110671466,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/110671466/thumbnails/1.jpg","file_name":"s00338-019-01825-520240121-1-838v72.pdf","download_url":"https://www.academia.edu/attachments/110671466/download_file?st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Deep_reef_fishes_in_the_world_s_epicente.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/110671466/s00338-019-01825-520240121-1-838v72-libre.pdf?1705820799=\u0026response-content-disposition=attachment%3B+filename%3DDeep_reef_fishes_in_the_world_s_epicente.pdf\u0026Expires=1733169887\u0026Signature=aS6BMBjoiKrolIGNKxmRPZXy72EvFTsuBpjRfpB6CmgXYwsXTwByWaZOvO9PWm8oa2Nmw6aoBoqcFZ5K6jJ1zwEyJcCYOU8S07ijwz1rYtvPBlNzU1dz1LBHEWq0R7P2cnJLK-9EC8U9vdDd2oACpTmpplKwY4Cb74ZhdMVExO5tAl3-C5g~q0BwenGBemde1Cvhe~VPcqa~uUh~7OfmSoBYlre7vc-B5lrKpoaZyRvrNjpWLM37Spg8wWJ81PfUE29mq6CS5sNBGTQuGULRJ7K2OvgwIL8Uc06Oh~pqHcjzfQUFj2NPkP~WomsLQDjoDip26Ok48b~U51btWfSFMA__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"Deep_reef_fishes_in_the_world_s_epicenter_of_marine_biodiversity","translated_slug":"","page_count":11,"language":"en","content_type":"Work","owner":{"id":47324603,"first_name":"Abner","middle_initials":null,"last_name":"Bucol","page_name":"ABucol","domain_name":"silliman","created_at":"2016-04-19T02:08:19.082-07:00","display_name":"Abner 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Sciences","url":"https://www.academia.edu/Documents/in/Earth_Sciences"},{"id":415,"name":"Oceanography","url":"https://www.academia.edu/Documents/in/Oceanography"},{"id":7807,"name":"Coral Reefs","url":"https://www.academia.edu/Documents/in/Coral_Reefs"},{"id":9846,"name":"Ecology","url":"https://www.academia.edu/Documents/in/Ecology"},{"id":17825,"name":"Biodiversity","url":"https://www.academia.edu/Documents/in/Biodiversity"},{"id":47884,"name":"Biological Sciences","url":"https://www.academia.edu/Documents/in/Biological_Sciences"},{"id":58054,"name":"Environmental Sciences","url":"https://www.academia.edu/Documents/in/Environmental_Sciences"},{"id":71627,"name":"Overfishing","url":"https://www.academia.edu/Documents/in/Overfishing"},{"id":79742,"name":"Fishing","url":"https://www.academia.edu/Documents/in/Fishing"},{"id":143611,"name":"Coral Reef","url":"https://www.academia.edu/Documents/in/Coral_Reef"},{"id":173285,"name":"Fishery","url":"https://www.academia.edu/Documents/in/Fishery"},{"id":508460,"name":"Coral Reef Fish","url":"https://www.academia.edu/Documents/in/Coral_Reef_Fish"},{"id":527507,"name":"Marine Protected Area","url":"https://www.academia.edu/Documents/in/Marine_Protected_Area"},{"id":587964,"name":"Reef","url":"https://www.academia.edu/Documents/in/Reef"},{"id":1022026,"name":"Marine ecosystem","url":"https://www.academia.edu/Documents/in/Marine_ecosystem"},{"id":3933677,"name":"Epicenter","url":"https://www.academia.edu/Documents/in/Epicenter"}],"urls":[{"id":38771069,"url":"http://link.springer.com/content/pdf/10.1007/s00338-019-01825-5.pdf"}]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="113803047"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/113803047/Benthic_habitat_and_fish_assemblage_structure_from_shallow_to_mesophotic_depths_in_a_storm_impacted_marine_protected_area"><img alt="Research paper thumbnail of Benthic habitat and fish assemblage structure from shallow to mesophotic depths in a storm-impacted marine protected area" class="work-thumbnail" src="https://attachments.academia-assets.com/110671471/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/113803047/Benthic_habitat_and_fish_assemblage_structure_from_shallow_to_mesophotic_depths_in_a_storm_impacted_marine_protected_area">Benthic habitat and fish assemblage structure from shallow to mesophotic depths in a storm-impacted marine protected area</a></div><div class="wp-workCard_item"><span>Coral Reefs</span><span>, 2017</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="9a7d6c837d2423d1ba8b912f75c444d3" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:110671471,&quot;asset_id&quot;:113803047,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/110671471/download_file?st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="113803047"><a 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Here, we used baited remote underwater video to describe benthic habitat and fish assemblage structure from 10 to 80 m depth at Apo Island, a well-managed marine protected area in the Philippines. We conducted surveys 2 yr after two storms (in 2011 and 2012) caused severe damage to shallow coral communities within the no-take marine reserve (NTMR) of Apo Island, which led to declines in fish populations that had built up over three decades. We found that hard coral cover was restricted to \\ 40 m deep in the storm-impacted NTMR and a nearby fished area not impacted by storms. Benthic cover at mesophotic depths ([ 30 m) was dominated by sand/rubble and rock (dead coral) with low cover of soft corals, sponges and macroalgae. Storm damage appeared to have reached the deepest limit of the fringing reef (40 m) and reduced variability in benthic structure within the NTMR. Species richness and/or abundance of most trophic groups of fish declined with increasing depth regardless of storm damage. There were differences in taxonomic and trophic structure and degree of targeting by fisheries between shallow and mesophotic fish assemblages. Threatened shark species and a fish species previously unreported in the Philippines were recorded at mesophotic depths. Our findings provide a first glimpse of the benthic and fish assemblage structure of Philippine coral reef ecosystems across a wide depth gradient. This work also underscores how a combination of limited coral reef development at mesophotic depths close to shallow reefs and severe habitat loss caused by storms would result in minimal depth refuge for reef fish populations.","publication_date":{"day":null,"month":null,"year":2017,"errors":{}},"publication_name":"Coral 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Reef","url":"https://www.academia.edu/Documents/in/Coral_Reef"},{"id":162136,"name":"Storm","url":"https://www.academia.edu/Documents/in/Storm"},{"id":249747,"name":"Coral","url":"https://www.academia.edu/Documents/in/Coral"},{"id":376955,"name":"Threatened Species","url":"https://www.academia.edu/Documents/in/Threatened_Species"},{"id":527507,"name":"Marine Protected Area","url":"https://www.academia.edu/Documents/in/Marine_Protected_Area"},{"id":587964,"name":"Reef","url":"https://www.academia.edu/Documents/in/Reef"},{"id":3538297,"name":"Benthic habitat","url":"https://www.academia.edu/Documents/in/Benthic_habitat"}],"urls":[{"id":38771068,"url":"http://link.springer.com/content/pdf/10.1007/s00338-017-1635-0.pdf"}]}, dispatcherData: dispatcherData }); $(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> <div class="js-work-strip profile--work_container" data-work-id="113803038"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/113803038/First_Record_of_the_Convict_Cichlid_Amatitlania_nigrofasciata_G%C3%BCnther_1867_on_Mindanao_Island_Philippines_with_remarks_on_some_endemic_and_introduced_fishes_in_Sawaga_River_Bukidnon"><img alt="Research paper thumbnail of First Record of the Convict Cichlid Amatitlania nigrofasciata (Günther, 1867) on Mindanao Island, Philippines with remarks on some endemic and introduced fishes in Sawaga River, Bukidnon" class="work-thumbnail" src="https://attachments.academia-assets.com/110671447/thumbnails/1.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/113803038/First_Record_of_the_Convict_Cichlid_Amatitlania_nigrofasciata_G%C3%BCnther_1867_on_Mindanao_Island_Philippines_with_remarks_on_some_endemic_and_introduced_fishes_in_Sawaga_River_Bukidnon">First Record of the Convict Cichlid Amatitlania nigrofasciata (Günther, 1867) on Mindanao Island, Philippines with remarks on some endemic and introduced fishes in Sawaga River, Bukidnon</a></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">The Convict Cichlid Amatitlania nigrofasciata (Gunther, 1867) is an introduced freshwater fish. W...</span><a class="js-work-more-abstract" data-broccoli-component="work_strip.more_abstract" data-click-track="profile-work-strip-more-abstract" href="javascript:;"><span> more </span><span><i class="fa fa-caret-down"></i></span></a><span class="js-work-more-abstract-untruncated hidden">The Convict Cichlid Amatitlania nigrofasciata (Gunther, 1867) is an introduced freshwater fish. We provide the first record of this species from Mindanao based on samples collected from the Sawaga River, Bukidnon, Mindanao Island. We also provided an account of some fishes, including one endemic fish, the Half-beak ( Nomorhamphus philippinus ), and other introduced species recently sampled in the Sawaga River. We highlight the need to document the spread of introduced species in the river systems of Mindanao. Keywords : Amatitlania nigrofasciata, Sawaga River, freshwater fish</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="2a7733921bd31bd9feac9f7fe5dc1dfa" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:110671447,&quot;asset_id&quot;:113803038,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/110671447/download_file?st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="113803038"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="113803038"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 113803038; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=113803038]").text(description); $(".js-view-count[data-work-id=113803038]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 113803038; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='113803038']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 113803038, container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (true){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "2a7733921bd31bd9feac9f7fe5dc1dfa" } } $('.js-work-strip[data-work-id=113803038]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":113803038,"title":"First Record of the Convict Cichlid Amatitlania nigrofasciata (Günther, 1867) on Mindanao Island, Philippines with remarks on some endemic and introduced fishes in Sawaga River, Bukidnon","translated_title":"","metadata":{"abstract":"The Convict Cichlid Amatitlania nigrofasciata (Gunther, 1867) is an introduced freshwater fish. We provide the first record of this species from Mindanao based on samples collected from the Sawaga River, Bukidnon, Mindanao Island. We also provided an account of some fishes, including one endemic fish, the Half-beak ( Nomorhamphus philippinus ), and other introduced species recently sampled in the Sawaga River. We highlight the need to document the spread of introduced species in the river systems of Mindanao. Keywords : Amatitlania nigrofasciata, Sawaga River, freshwater fish","publication_date":{"day":null,"month":null,"year":2021,"errors":{}}},"translated_abstract":"The Convict Cichlid Amatitlania nigrofasciata (Gunther, 1867) is an introduced freshwater fish. We provide the first record of this species from Mindanao based on samples collected from the Sawaga River, Bukidnon, Mindanao Island. We also provided an account of some fishes, including one endemic fish, the Half-beak ( Nomorhamphus philippinus ), and other introduced species recently sampled in the Sawaga River. We highlight the need to document the spread of introduced species in the river systems of Mindanao. Keywords : Amatitlania nigrofasciata, Sawaga River, freshwater fish","internal_url":"https://www.academia.edu/113803038/First_Record_of_the_Convict_Cichlid_Amatitlania_nigrofasciata_G%C3%BCnther_1867_on_Mindanao_Island_Philippines_with_remarks_on_some_endemic_and_introduced_fishes_in_Sawaga_River_Bukidnon","translated_internal_url":"","created_at":"2024-01-20T22:40:59.184-08:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":47324603,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":110671447,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/110671447/thumbnails/1.jpg","file_name":"2030.pdf","download_url":"https://www.academia.edu/attachments/110671447/download_file?st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"First_Record_of_the_Convict_Cichlid_Amat.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/110671447/2030-libre.pdf?1705820802=\u0026response-content-disposition=attachment%3B+filename%3DFirst_Record_of_the_Convict_Cichlid_Amat.pdf\u0026Expires=1733169888\u0026Signature=Z6wlky40OHQrFWKCrq4gutHCQYo6wnp~P9N2~R5FpEohQmn~bdSDMdxygiZcYqMgiSFgInNtuoPRBjDbHcdW8SOv1YfKVquhaJJwy5NPopZOX2BW3hgB7RF~eIi18E2VS7lJh5yYBGFe-C7SWPr7dWK~Se2YnUWqcYBY6rNdRCKzZecRK4pyjjKxpuTx07QhexTS32YFCO4w4lu0g64I3AyF0~l1gNQ4NZcw6Ij~RS4PCX1lrQ-7OitjmWljZqVzkQoFZQd4qqBOHMNwKQE4RY1dv9N0K2tw-lfJCOheE3YZ3N442u69mlhPNxgaahwwz93-e-7gkjjtcgiYfIfEyQ__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"First_Record_of_the_Convict_Cichlid_Amatitlania_nigrofasciata_Günther_1867_on_Mindanao_Island_Philippines_with_remarks_on_some_endemic_and_introduced_fishes_in_Sawaga_River_Bukidnon","translated_slug":"","page_count":9,"language":"en","content_type":"Work","owner":{"id":47324603,"first_name":"Abner","middle_initials":null,"last_name":"Bucol","page_name":"ABucol","domain_name":"silliman","created_at":"2016-04-19T02:08:19.082-07:00","display_name":"Abner Bucol","url":"https://silliman.academia.edu/ABucol"},"attachments":[{"id":110671447,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/110671447/thumbnails/1.jpg","file_name":"2030.pdf","download_url":"https://www.academia.edu/attachments/110671447/download_file?st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"First_Record_of_the_Convict_Cichlid_Amat.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/110671447/2030-libre.pdf?1705820802=\u0026response-content-disposition=attachment%3B+filename%3DFirst_Record_of_the_Convict_Cichlid_Amat.pdf\u0026Expires=1733169888\u0026Signature=Z6wlky40OHQrFWKCrq4gutHCQYo6wnp~P9N2~R5FpEohQmn~bdSDMdxygiZcYqMgiSFgInNtuoPRBjDbHcdW8SOv1YfKVquhaJJwy5NPopZOX2BW3hgB7RF~eIi18E2VS7lJh5yYBGFe-C7SWPr7dWK~Se2YnUWqcYBY6rNdRCKzZecRK4pyjjKxpuTx07QhexTS32YFCO4w4lu0g64I3AyF0~l1gNQ4NZcw6Ij~RS4PCX1lrQ-7OitjmWljZqVzkQoFZQd4qqBOHMNwKQE4RY1dv9N0K2tw-lfJCOheE3YZ3N442u69mlhPNxgaahwwz93-e-7gkjjtcgiYfIfEyQ__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":261,"name":"Geography","url":"https://www.academia.edu/Documents/in/Geography"},{"id":173285,"name":"Fishery","url":"https://www.academia.edu/Documents/in/Fishery"},{"id":2007906,"name":"Asian Biodiversity","url":"https://www.academia.edu/Documents/in/Asian_Biodiversity"}],"urls":[]}, dispatcherData: dispatcherData }); 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$(this).data('initialized', true); } }); $a.trackClickSource(".js-work-strip-work-link", "profile_work_strip") }); </script> </div><div class="profile--tab_content_container js-tab-pane tab-pane" data-section-id="5343835" id="drafts"><div class="js-work-strip profile--work_container" data-work-id="25980403"><div class="profile--work_thumbnail hidden-xs"><a class="js-work-strip-work-link" data-click-track="profile-work-strip-thumbnail" href="https://www.academia.edu/25980403/Harmony_between_Traditional_Fishermen_and_Philippine_Crocodilians"><img alt="Research paper thumbnail of Harmony between Traditional Fishermen and Philippine Crocodilians" class="work-thumbnail" src="https://a.academia-assets.com/images/blank-paper.jpg" /></a></div><div class="wp-workCard wp-workCard_itemContainer"><div class="wp-workCard_item wp-workCard--title"><a class="js-work-strip-work-link text-gray-darker" data-click-track="profile-work-strip-title" href="https://www.academia.edu/25980403/Harmony_between_Traditional_Fishermen_and_Philippine_Crocodilians">Harmony between Traditional Fishermen and Philippine Crocodilians</a></div><div class="wp-workCard_item wp-workCard--coauthors"><span>by </span><span><a class="" data-click-track="profile-work-strip-authors" href="https://silliman.academia.edu/ABucol">Abner Bucol</a> and <a class="" data-click-track="profile-work-strip-authors" href="https://independent.academia.edu/PaulinaAspilla">Paulina Aspilla</a></span></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">This paper describes the status of traditional fishing practices in some Philippine fishing commu...</span><a class="js-work-more-abstract" data-broccoli-component="work_strip.more_abstract" data-click-track="profile-work-strip-more-abstract" href="javascript:;"><span> more </span><span><i class="fa fa-caret-down"></i></span></a><span class="js-work-more-abstract-untruncated hidden">This paper describes the status of traditional fishing practices in some Philippine fishing communities where crocodiles also exist, focusing on the coexistence of local fishery and crocodilians to achieve sustainability. How fishermen deploy their gill-nets in relation to the general diel behaviour of crocodiles is also described. Most traditional fishing gears were deployed during the daytime when crocodiles are generally inactive, although occasionally nets were used at night, but in locations distant from the foraging area of crocodiles. It is noteworthy that a higher catch per unit area was observed in sites with crocodiles than in those sites where they were absent.</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="0e14088d051f18a85431152ba8d9b982" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:46330979,&quot;asset_id&quot;:25980403,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/46330979/download_file?st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&s=profile"><span><i class="fa fa-arrow-down"></i></span><span>Download</span></a><span class="wp-workCard--action visible-if-viewed-by-owner inline-block" style="display: none;"><span class="js-profile-work-strip-edit-button-wrapper profile-work-strip-edit-button-wrapper" data-work-id="25980403"><a class="js-profile-work-strip-edit-button" tabindex="0"><span><i class="fa fa-pencil"></i></span><span>Edit</span></a></span></span><span id="work-strip-rankings-button-container"></span></div><div class="wp-workCard_item wp-workCard--stats"><span><span><span class="js-view-count view-count u-mr2x" data-work-id="25980403"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 25980403; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=25980403]").text(description); $(".js-view-count[data-work-id=25980403]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 25980403; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='25980403']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 25980403, container: "", }); });</script></span></div><div id="work-strip-premium-row-container"></div></div></div><script> require.config({ waitSeconds: 90 })(["https://a.academia-assets.com/assets/wow_profile-f77ea15d77ce96025a6048a514272ad8becbad23c641fc2b3bd6e24ca6ff1932.js","https://a.academia-assets.com/assets/work_edit-ad038b8c047c1a8d4fa01b402d530ff93c45fee2137a149a4a5398bc8ad67560.js"], function() { // from javascript_helper.rb var dispatcherData = {} if (true){ window.WowProfile.dispatcher = window.WowProfile.dispatcher || _.clone(Backbone.Events); dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "0e14088d051f18a85431152ba8d9b982" } } $('.js-work-strip[data-work-id=25980403]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":25980403,"title":"Harmony between Traditional Fishermen and Philippine Crocodilians","translated_title":"","metadata":{"abstract":"This paper describes the status of traditional fishing practices in some Philippine fishing communities where crocodiles also exist, focusing on the coexistence of local fishery and crocodilians to achieve sustainability. How fishermen deploy their gill-nets in relation to the general diel behaviour of crocodiles is also described. Most traditional fishing gears were deployed during the daytime when crocodiles are generally inactive, although occasionally nets were used at night, but in locations distant from the foraging area of crocodiles. It is noteworthy that a higher catch per unit area was observed in sites with crocodiles than in those sites where they were absent."},"translated_abstract":"This paper describes the status of traditional fishing practices in some Philippine fishing communities where crocodiles also exist, focusing on the coexistence of local fishery and crocodilians to achieve sustainability. How fishermen deploy their gill-nets in relation to the general diel behaviour of crocodiles is also described. Most traditional fishing gears were deployed during the daytime when crocodiles are generally inactive, although occasionally nets were used at night, but in locations distant from the foraging area of crocodiles. It is noteworthy that a higher catch per unit area was observed in sites with crocodiles than in those sites where they were absent.","internal_url":"https://www.academia.edu/25980403/Harmony_between_Traditional_Fishermen_and_Philippine_Crocodilians","translated_internal_url":"","created_at":"2016-06-07T23:30:24.083-07:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":47324603,"coauthors_can_edit":true,"document_type":"draft","co_author_tags":[{"id":21100715,"work_id":25980403,"tagging_user_id":47324603,"tagged_user_id":37792846,"co_author_invite_id":null,"email":"a***h@gmail.com","affiliation":"Silliman University","display_order":0,"name":"Abner Bucol","title":"Harmony between Traditional Fishermen and Philippine Crocodilians"},{"id":21100716,"work_id":25980403,"tagging_user_id":47324603,"tagged_user_id":47380653,"co_author_invite_id":null,"email":"r***c@gmail.com","display_order":4194304,"name":"Rainier Manalo","title":"Harmony between Traditional Fishermen and Philippine Crocodilians"},{"id":21100717,"work_id":25980403,"tagging_user_id":47324603,"tagged_user_id":37983220,"co_author_invite_id":null,"email":"p***a@yahoo.com","display_order":6291456,"name":"Paulina Aspilla","title":"Harmony between Traditional Fishermen and Philippine Crocodilians"},{"id":21100718,"work_id":25980403,"tagging_user_id":47324603,"tagged_user_id":1321145,"co_author_invite_id":null,"email":"s***m@yahoo.com","display_order":7340032,"name":"Angel Alcala","title":"Harmony between Traditional Fishermen and Philippine Crocodilians"}],"downloadable_attachments":[{"id":46330979,"title":"","file_type":"docx","scribd_thumbnail_url":"https://a.academia-assets.com/images/blank-paper.jpg","file_name":"Harmony_of_fishermen_and_Philippine___crocodilians_revised_June07_2016.docx","download_url":"https://www.academia.edu/attachments/46330979/download_file?st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Harmony_between_Traditional_Fishermen_an.docx","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/46330979/Harmony_of_fishermen_and_Philippine___crocodilians_revised_June07_2016.docx?1465367376=\u0026response-content-disposition=attachment%3B+filename%3DHarmony_between_Traditional_Fishermen_an.docx\u0026Expires=1733169888\u0026Signature=YjxDvJCr772zAY7V8vRE2lpBOcAQeTKwt20yBkmn-g3ba6DGzxa5fWOXkLD-ZlrmQkefOTiu5d95GSWs-VRFt395917b75bJzmAStD7OLK9~Lq~~W0r4pdjZ5C-S1pTj9UvagvoQEATgUR5EbDiuD0BrVVrqAsuOQTToif9FwsMhVbIq~34GryMce4Bejj6MFmo2gjFEyAmLnk4WipOlVgSybRC510SMpIobBK8fCeh7lFV7PW8BLbT7aSQxdCwTk7n6M-W8Q9GwFLhs3z7T4ZAYyF7rr99GMd9JJPlMerVBBZD5q9e2600JLVE-VwL~0HrXiuvP1VDi0vfmYKtNJw__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"Harmony_between_Traditional_Fishermen_and_Philippine_Crocodilians","translated_slug":"","page_count":13,"language":"en","content_type":"Work","owner":{"id":47324603,"first_name":"Abner","middle_initials":null,"last_name":"Bucol","page_name":"ABucol","domain_name":"silliman","created_at":"2016-04-19T02:08:19.082-07:00","display_name":"Abner Bucol","url":"https://silliman.academia.edu/ABucol"},"attachments":[{"id":46330979,"title":"","file_type":"docx","scribd_thumbnail_url":"https://a.academia-assets.com/images/blank-paper.jpg","file_name":"Harmony_of_fishermen_and_Philippine___crocodilians_revised_June07_2016.docx","download_url":"https://www.academia.edu/attachments/46330979/download_file?st=MTczMzE2NjI4OCw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Harmony_between_Traditional_Fishermen_an.docx","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/46330979/Harmony_of_fishermen_and_Philippine___crocodilians_revised_June07_2016.docx?1465367376=\u0026response-content-disposition=attachment%3B+filename%3DHarmony_between_Traditional_Fishermen_an.docx\u0026Expires=1733169888\u0026Signature=YjxDvJCr772zAY7V8vRE2lpBOcAQeTKwt20yBkmn-g3ba6DGzxa5fWOXkLD-ZlrmQkefOTiu5d95GSWs-VRFt395917b75bJzmAStD7OLK9~Lq~~W0r4pdjZ5C-S1pTj9UvagvoQEATgUR5EbDiuD0BrVVrqAsuOQTToif9FwsMhVbIq~34GryMce4Bejj6MFmo2gjFEyAmLnk4WipOlVgSybRC510SMpIobBK8fCeh7lFV7PW8BLbT7aSQxdCwTk7n6M-W8Q9GwFLhs3z7T4ZAYyF7rr99GMd9JJPlMerVBBZD5q9e2600JLVE-VwL~0HrXiuvP1VDi0vfmYKtNJw__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":23774,"name":"Crocodilian Biology","url":"https://www.academia.edu/Documents/in/Crocodilian_Biology"}],"urls":[]}, dispatcherData: dispatcherData }); 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