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Alberto Vilagrosa | INAH - Academia.edu

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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="documents-container backbone-social-profile-documents" style="width: 100%;"><div class="u-taCenter"></div><div class="profile--tab_content_container 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 Alberto Vilagrosa</h3></div><div class="js-work-strip profile--work_container" data-work-id="122236368"><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/122236368/Post_drought_conditions_and_hydraulic_dysfunction_determine_tree_resilience_and_mortality_across_Mediterranean_Aleppo_pine_Pinus_halepensis_populations_after_an_extreme_drought_event"><img alt="Research paper thumbnail of Post-drought conditions and hydraulic dysfunction determine tree resilience and mortality across Mediterranean Aleppo pine (Pinus halepensis) populations after an extreme drought event" class="work-thumbnail" src="https://attachments.academia-assets.com/116944687/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/122236368/Post_drought_conditions_and_hydraulic_dysfunction_determine_tree_resilience_and_mortality_across_Mediterranean_Aleppo_pine_Pinus_halepensis_populations_after_an_extreme_drought_event">Post-drought conditions and hydraulic dysfunction determine tree resilience and mortality across Mediterranean Aleppo pine (Pinus halepensis) populations after an extreme drought event</a></div><div class="wp-workCard_item"><span>Tree Physiology</span><span>, 2022</span></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">Drought-related tree mortality is a global phenomenon that currently affects a wide range of fore...</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">Drought-related tree mortality is a global phenomenon that currently affects a wide range of forests. Key functional variables on plant hydraulics, carbon economy, growth and allocation have been identified and play a role in tree drought responses. However, tree mortality thresholds based on such variables are difficult to identify, especially under field conditions. We studied several Aleppo pine populations differently affected by an extreme drought event in 2014, with mortality rates ranging from no mortality to 90% in the most severely affected population. We hypothesized that mortality is linked with high levels of xylem embolism, i.e., hydraulic dysfunction, which would also lead to lower tree resistance to drought in subsequent years. Despite not finding any differences among populations in the vulnerability curves to xylem embolism, there were large differences in the hydraulic safety margin (HSM) and the hydraulic dysfunction level. High mortality rates were associated wit...</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="0bd364a3aee53df7728087d699cc1515" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:116944687,&quot;asset_id&quot;:122236368,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/116944687/download_file?st=MTczMjc1ODE4Miw4LjIyMi4yMDguMTQ2&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="122236368"><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="122236368"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 122236368; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=122236368]").text(description); $(".js-view-count[data-work-id=122236368]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 122236368; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='122236368']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 122236368, 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: "0bd364a3aee53df7728087d699cc1515" } } $('.js-work-strip[data-work-id=122236368]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":122236368,"title":"Post-drought conditions and hydraulic dysfunction determine tree resilience and mortality across Mediterranean Aleppo pine (Pinus halepensis) populations after an extreme drought event","translated_title":"","metadata":{"abstract":"Drought-related tree mortality is a global phenomenon that currently affects a wide range of forests. 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Several studies have focused on improving the seedling quality and abiotic conditions at the outplanting site to favour the field performance of Q. suber, however, most studies have been conducted by independently testing treatments. The aim of this study was to assess the combined effect of three techniques that focused on reforestation success with Q. suber in Mediterranean degraded shrubland: (i) a nursery technique to improve root system development, such as the use of deep containers to develop a longer tap root, combined with two field techniques such as (ii) the use of tree shelters to diminish solar radiation stress, and (iii) shrubland treatments to reduce competition for soil water and nutrients. For this purpose, 1-yearold Q. suber seedlings were grown in two containers types: a shallow container (CCS-18) and a deep container (CCL-30). Seedlings were established in a degraded shrubland at three experimental sites in the Calderona mountain range of Castellón, Spain. A factorial design was combined based on container type (CCS-18 and CCL-30), shrubland management (undisturbed shrubland and cleared shrubland in strips) and tree shelters (vegetable fibre tree shelters and no tree shelters). After 2 years of monitoring, the outplanting results indicated that using: (i) a deep container produced a longer taproot, but did not favour better survival or better field performance of seedlings; (ii) tree shelters improved the microweather conditions around seedlings, particularly by reducing excess incoming solar radiation; (iii) cleared shrubland strips reduced competition for soil water by favouring a higher water potential, better maximum photochemical PSII efficiency and higher survival rates for the seedlings established into cleared sites. The results indicate that the cleared shrubland treatment effects overlap the effects of using deep containers and tree shelters. This, in turn, reveals that shrubland clearing is the most suitable technique for favouring the introduction of a resprouter species like Q. suber into ecosystems characterized by predominantly degraded shrublands.","publication_date":{"day":null,"month":null,"year":2020,"errors":{}},"publication_name":"iForest - Biogeosciences and Forestry","grobid_abstract_attachment_id":116944681},"translated_abstract":null,"internal_url":"https://www.academia.edu/122236366/Using_field_and_nursery_treatments_to_establish_Quercus_suber_seedlings_in_Mediterranean_degraded_shrubland","translated_internal_url":"","created_at":"2024-07-21T13:56:14.015-07:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":4575394,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":116944681,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/116944681/thumbnails/1.jpg","file_name":"Munoz-Rengifo_etal_2020_iForest.pdf","download_url":"https://www.academia.edu/attachments/116944681/download_file?st=MTczMjc1ODE4Miw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Using_field_and_nursery_treatments_to_es.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/116944681/Munoz-Rengifo_etal_2020_iForest-libre.pdf?1721596302=\u0026response-content-disposition=attachment%3B+filename%3DUsing_field_and_nursery_treatments_to_es.pdf\u0026Expires=1732761782\u0026Signature=a-4fuHmJ4XQ1GxirFpPVx6wdKCdklzEI2d6yZZ~wZB88PO1fiHTrgS65ousfoz-svGHs~HdyFyOy-HvUYbH9gU6zT8YTesgstPNirsMNtKhi3-Cc0dU40YmZrswB8ysyy2KdcKhpQlaVwJ9F4aJn6~q~hWUSBnXnxU4QD47o--XyG8VmLC6AEl9OjTtAjhO7DsscTuOTRzj4MOhuFhor6e0QzmV-yZ8WgshCJIMYX02hrBWuoJrdH24~PAHxwe3eHF0Oy8w114J~jAowMLM6zdeCC7p2Kj6hnBs8zKgBBX9qVfG6YUVMznuMjNsGSwicdwZeo~Z6KtVU33B5HMP8jw__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"Using_field_and_nursery_treatments_to_establish_Quercus_suber_seedlings_in_Mediterranean_degraded_shrubland","translated_slug":"","page_count":10,"language":"en","content_type":"Work","owner":{"id":4575394,"first_name":"Alberto","middle_initials":null,"last_name":"Vilagrosa","page_name":"AlbertoVilagrosa","domain_name":"ceam","created_at":"2013-06-17T19:46:02.480-07:00","display_name":"Alberto Vilagrosa","url":"https://ceam.academia.edu/AlbertoVilagrosa"},"attachments":[{"id":116944681,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/116944681/thumbnails/1.jpg","file_name":"Munoz-Rengifo_etal_2020_iForest.pdf","download_url":"https://www.academia.edu/attachments/116944681/download_file?st=MTczMjc1ODE4Miw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Using_field_and_nursery_treatments_to_es.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/116944681/Munoz-Rengifo_etal_2020_iForest-libre.pdf?1721596302=\u0026response-content-disposition=attachment%3B+filename%3DUsing_field_and_nursery_treatments_to_es.pdf\u0026Expires=1732761782\u0026Signature=a-4fuHmJ4XQ1GxirFpPVx6wdKCdklzEI2d6yZZ~wZB88PO1fiHTrgS65ousfoz-svGHs~HdyFyOy-HvUYbH9gU6zT8YTesgstPNirsMNtKhi3-Cc0dU40YmZrswB8ysyy2KdcKhpQlaVwJ9F4aJn6~q~hWUSBnXnxU4QD47o--XyG8VmLC6AEl9OjTtAjhO7DsscTuOTRzj4MOhuFhor6e0QzmV-yZ8WgshCJIMYX02hrBWuoJrdH24~PAHxwe3eHF0Oy8w114J~jAowMLM6zdeCC7p2Kj6hnBs8zKgBBX9qVfG6YUVMznuMjNsGSwicdwZeo~Z6KtVU33B5HMP8jw__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":402,"name":"Environmental Science","url":"https://www.academia.edu/Documents/in/Environmental_Science"},{"id":23980,"name":"Ecological restoration","url":"https://www.academia.edu/Documents/in/Ecological_restoration"},{"id":224606,"name":"Ecología","url":"https://www.academia.edu/Documents/in/Ecolog%C3%ADa"},{"id":238830,"name":"Shrubland","url":"https://www.academia.edu/Documents/in/Shrubland"},{"id":300676,"name":"Quercus suber","url":"https://www.academia.edu/Documents/in/Quercus_suber"},{"id":386448,"name":"Seedling","url":"https://www.academia.edu/Documents/in/Seedling"},{"id":564368,"name":"Mediterranean Climate","url":"https://www.academia.edu/Documents/in/Mediterranean_Climate"},{"id":607982,"name":"Pistacia Lentiscus","url":"https://www.academia.edu/Documents/in/Pistacia_Lentiscus"},{"id":2153312,"name":"Taproot","url":"https://www.academia.edu/Documents/in/Taproot"}],"urls":[]}, dispatcherData: dispatcherData }); 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In dry and fire-prone areas of southern Spain and France, Pinus halepensis forests were thinned at different levels and hardwood species were introduced under pine canopy and in opened areas. Thinning activities increased light, modified microclimate and soil moisture availability. Growth was improved in all sites but survival showed a more contrasted response. In mountainous areas, thinning treatments applied on Abies alba forests of southern France and Pinus nigra forests of central Spain were tested. Thinned silver fir stands showed higher tree growth than the control stands. In black pine forests, maximal seedling emergence was found for high basal area values whereas survival and growth were the highest for lower values. 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/></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/122236359/Ecological_Restoration_in_Mediterranean_Type_Shrublands_and_Woodlands">Ecological Restoration in Mediterranean-Type Shrublands and Woodlands</a></div><div class="wp-workCard_item"><span>Routledge Handbook of Ecological and Environmental Restoration</span><span>, 2017</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="3b517d3ecce16fdb98fc967cca17fac1" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:116944679,&quot;asset_id&quot;:122236359,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" 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The combined role of site conditions and reforestation techniques in southeastern Spain" class="work-thumbnail" src="https://attachments.academia-assets.com/116944700/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/122236358/Effects_of_landscape_spatial_heterogeneity_on_dryland_restoration_success_The_combined_role_of_site_conditions_and_reforestation_techniques_in_southeastern_Spain">Effects of landscape spatial heterogeneity on dryland restoration success. The combined role of site conditions and reforestation techniques in southeastern Spain</a></div><div class="wp-workCard_item"><span>Ecologia mediterranea</span><span>, 2012</span></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">In occidental Europe, Spain is one of countries the most severely affected by desertification (Ar...</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">In occidental Europe, Spain is one of countries the most severely affected by desertification (Arnalds &amp; Arsher 2000). Particularly, South-eastern Spain is considered as one of the most threatened areas by desertification in Mediterranean Europe (Vallejo 1997). In 2003, the Valencia Regional Forest Service implemented a restoration demonstration project in this area. The project site is a small catchment (25 ha) located in the Albatera municipality. The catchment is highly heterogeneous, with terraced slopes, south-facing slopes and north-facing slopes. The restoration strategy was based on planting evergreen trees and shrubs which can grow quickly after disturbances, and on field treatments aimed at maximizing water collection (micro-catchments, planting furrows), organic amendment (compost), and conservation (tree shelters, mulching). 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/></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/122236355/Integrating_knowledge_exchange_and_the_assessment_of_dryland_management_alternatives_A_learning_centered_participatory_approach">Integrating knowledge exchange and the assessment of dryland management alternatives – A learning-centered participatory approach</a></div><div class="wp-workCard_item"><span>Journal of Environmental Management</span><span>, 2017</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="d30bbfb3fbd488ad6b84a3cbe9b1ca8c" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" 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href="https://www.academia.edu/122236354/Balance_h%C3%ADdrico_del_suelo_en_pinares_con_diferente_densidad_de_arbolado_Efectos_sobre_el_establecimiento_de_brinzales_de_especies_rebrotadoras_bajo_el_dosel"><img alt="Research paper thumbnail of Balance hídrico del suelo en pinares con diferente densidad de arbolado. Efectos sobre el establecimiento de brinzales de especies rebrotadoras bajo el dosel" class="work-thumbnail" src="https://attachments.academia-assets.com/116944731/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/122236354/Balance_h%C3%ADdrico_del_suelo_en_pinares_con_diferente_densidad_de_arbolado_Efectos_sobre_el_establecimiento_de_brinzales_de_especies_rebrotadoras_bajo_el_dosel">Balance hídrico del suelo en pinares con diferente densidad de arbolado. Efectos sobre el establecimiento de brinzales de especies rebrotadoras bajo el dosel</a></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">El objetivo del presente trabajo fue determinar el balance hídrico del suelo en bosques de pino c...</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">El objetivo del presente trabajo fue determinar el balance hídrico del suelo en bosques de pino carrasco con diferente densidad de arbolado utilizando el modelo ecohidrológico HYDROBAL, y evaluar sus efectos sobre la introducción y establecimiento bajo el dosel, de brinzales de especies ampliamente utilizadas en la restauración forestal. En este contexto, en La Hunde (Ayora, Valencia), y como consecuencia de previas labores de aclareo con diferente intensidad, se definieron tres tratamientos experimentales de acuerdo a diferentes densidades de pinos: Baja (100-300 pies ha -1 ); Media (300-700 pies ha -1 ) y Alta (700-1100 pies ha 1 ). De cada tratamiento se establecieron tres parcelas experimentales de 900 m 2 , localizadas en tres sitios (El Aljibe, El Lobo y El Mojón). En cada parcela se plantaron quince individuos de seis especies rebrotadoras con características morfo-funcionales contrastadas (Arbutus unedo, Rhamnus alaternus, Quercus ilex, Quercus faginea, Fraxinus ornus, Acer ...</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="c59144561b7b66fbd97247fb59583614" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:116944731,&quot;asset_id&quot;:122236354,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/116944731/download_file?st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&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="122236354"><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="122236354"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 122236354; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=122236354]").text(description); $(".js-view-count[data-work-id=122236354]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 122236354; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='122236354']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 122236354, 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: "c59144561b7b66fbd97247fb59583614" } } $('.js-work-strip[data-work-id=122236354]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":122236354,"title":"Balance hídrico del suelo en pinares con diferente densidad de arbolado. 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La ruptura de este continuo en cualquiera de sus partes, por diversos motivos (regulación estomática, procesos de embolia, etc.), impide el óptimo funcionamiento de la planta, limitando las posibilidades de supervivencia de la misma.","publication_date":{"day":null,"month":null,"year":2005,"errors":{}},"publication_name":"Investigación Agraria: Sistemas y Recursos Forestales","grobid_abstract_attachment_id":116944842},"translated_abstract":null,"internal_url":"https://www.academia.edu/122236349/The_soil_plant_atmosphere_continuous_as_an_integrating_model_of_forest_ecophysiology","translated_internal_url":"","created_at":"2024-07-21T13:56:10.938-07:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":4575394,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":116944842,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/116944842/thumbnails/1.jpg","file_name":"b1ee7fb40f6a968ff6270176e8ab3f28c5ae.pdf","download_url":"https://www.academia.edu/attachments/116944842/download_file?st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"The_soil_plant_atmosphere_continuous_as.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/116944842/b1ee7fb40f6a968ff6270176e8ab3f28c5ae-libre.pdf?1721596262=\u0026response-content-disposition=attachment%3B+filename%3DThe_soil_plant_atmosphere_continuous_as.pdf\u0026Expires=1732761783\u0026Signature=KdbmkKwjO5DV8gFZsLK-7WEJufppRcdBX7b16dR35JiofRkKSSpwJUB8AQV7yZap6Nz-~wG~R-TsC9waFVormYskMyluURVsUWlF7JZksZHFHeENRJtCZz-yZFIXDsz3hZDXCmM2LGXVr6fMUdKge20vTAqjmvk8Cakll0~0h3C8921XCpNe8Xg~aK7l0nUGOjXgwQTkMNGvwj~npW0p4XcUgwMIbmWiWkVL8QJDwCn6OACIPHqTs0RBV9ovA~rElkf0JwggOK75oicYqMfWs1XwcULiUPNwhHfCvJozwNEOnIy70Q3mf6zt44ah59WmITjC7ddL-NKUynURDEd2iA__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"The_soil_plant_atmosphere_continuous_as_an_integrating_model_of_forest_ecophysiology","translated_slug":"","page_count":13,"language":"es","content_type":"Work","owner":{"id":4575394,"first_name":"Alberto","middle_initials":null,"last_name":"Vilagrosa","page_name":"AlbertoVilagrosa","domain_name":"ceam","created_at":"2013-06-17T19:46:02.480-07:00","display_name":"Alberto Vilagrosa","url":"https://ceam.academia.edu/AlbertoVilagrosa"},"attachments":[{"id":116944842,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/116944842/thumbnails/1.jpg","file_name":"b1ee7fb40f6a968ff6270176e8ab3f28c5ae.pdf","download_url":"https://www.academia.edu/attachments/116944842/download_file?st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"The_soil_plant_atmosphere_continuous_as.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/116944842/b1ee7fb40f6a968ff6270176e8ab3f28c5ae-libre.pdf?1721596262=\u0026response-content-disposition=attachment%3B+filename%3DThe_soil_plant_atmosphere_continuous_as.pdf\u0026Expires=1732761783\u0026Signature=KdbmkKwjO5DV8gFZsLK-7WEJufppRcdBX7b16dR35JiofRkKSSpwJUB8AQV7yZap6Nz-~wG~R-TsC9waFVormYskMyluURVsUWlF7JZksZHFHeENRJtCZz-yZFIXDsz3hZDXCmM2LGXVr6fMUdKge20vTAqjmvk8Cakll0~0h3C8921XCpNe8Xg~aK7l0nUGOjXgwQTkMNGvwj~npW0p4XcUgwMIbmWiWkVL8QJDwCn6OACIPHqTs0RBV9ovA~rElkf0JwggOK75oicYqMfWs1XwcULiUPNwhHfCvJozwNEOnIy70Q3mf6zt44ah59WmITjC7ddL-NKUynURDEd2iA__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":402,"name":"Environmental Science","url":"https://www.academia.edu/Documents/in/Environmental_Science"},{"id":18194,"name":"Ecophysiology","url":"https://www.academia.edu/Documents/in/Ecophysiology"},{"id":139848,"name":"Hydraulic conductivity","url":"https://www.academia.edu/Documents/in/Hydraulic_conductivity"},{"id":559731,"name":"Ecofisiología","url":"https://www.academia.edu/Documents/in/Ecofisiolog%C3%ADa"},{"id":1009098,"name":"Conductividad Hidráulica","url":"https://www.academia.edu/Documents/in/Conductividad_Hidraulica"},{"id":1221424,"name":"Potencial Hidrico","url":"https://www.academia.edu/Documents/in/Potencial_Hidrico"},{"id":1281013,"name":"Embolism","url":"https://www.academia.edu/Documents/in/Embolism"},{"id":2704848,"name":"Embolia","url":"https://www.academia.edu/Documents/in/Embolia"},{"id":2739793,"name":"SPAC","url":"https://www.academia.edu/Documents/in/SPAC"},{"id":2822336,"name":"Water Potential","url":"https://www.academia.edu/Documents/in/Water_Potential"}],"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="122236348"><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/122236348/Morphological_and_physiological_divergences_within_Quercus_ilex_support_the_existence_of_different_ecotypes_depending_on_climatic_dryness"><img alt="Research paper thumbnail of Morphological and physiological divergences within Quercus ilex support the existence of different ecotypes depending on climatic dryness" class="work-thumbnail" src="https://attachments.academia-assets.com/116944689/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/122236348/Morphological_and_physiological_divergences_within_Quercus_ilex_support_the_existence_of_different_ecotypes_depending_on_climatic_dryness">Morphological and physiological divergences within Quercus ilex support the existence of different ecotypes depending on climatic dryness</a></div><div class="wp-workCard_item"><span>Annals of Botany</span><span>, 2014</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="f144f77c55292842fe0758cfefcf84ba" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:116944689,&quot;asset_id&quot;:122236348,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/116944689/download_file?st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&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="122236348"><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="122236348"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 122236348; 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In this context, this study evaluates the variability of functional traits within holm oak (Quercus ilex) to elucidate whether provenances corresponding to different morphotypes represent different ecotypes locally adapted to the prevaling stress levels. † Methods Several morphological and physiological traits were measured at leaf and shoot levels in 9-year-old seedlings of seven Q. ilex provenances including all recognized morphotypes. Plants were grown in a common garden for 9 years under the same environmental conditions to avoid possible biases due to site-specific characteristics. † Key Results Leaf morphometry clearly separates holm oak provenances into 'ilex' (more elongated leaves with low vein density) and 'rotundifolia' (short and rounded leaves with high vein density) morphotypes. Moreover, these morphotypes represent two consistent and very contrasting functional types in response to dry climates, mainly in terms of leaf area, major vein density, leaf specific conductivity, resistance to drought-induced cavitation and turgor loss point. † Conclusions The 'ilex' and 'rotundifolia' morphotypes correspond to different ecotypes as inferred from their contrasting functional traits. To the best of our knowledge, this is the first time that the combined use of morphological and physiological traits has provided support for the concept of these two holm oak morphotypes being regarded as two different species.","publication_date":{"day":null,"month":null,"year":2014,"errors":{}},"publication_name":"Annals of 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Component Analysis","url":"https://www.academia.edu/Documents/in/Principal_Component_Analysis"},{"id":5541,"name":"Plant Biology","url":"https://www.academia.edu/Documents/in/Plant_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":13701,"name":"Climate","url":"https://www.academia.edu/Documents/in/Climate"},{"id":17825,"name":"Biodiversity","url":"https://www.academia.edu/Documents/in/Biodiversity"},{"id":26327,"name":"Medicine","url":"https://www.academia.edu/Documents/in/Medicine"},{"id":32759,"name":"Palaeobotany","url":"https://www.academia.edu/Documents/in/Palaeobotany"},{"id":48011,"name":"Functional Traits","url":"https://www.academia.edu/Documents/in/Functional_Traits"},{"id":149268,"name":"Quercus","url":"https://www.academia.edu/Documents/in/Quercus"},{"id":186792,"name":"Droughts","url":"https://www.academia.edu/Documents/in/Droughts"},{"id":291038,"name":"Pressure","url":"https://www.academia.edu/Documents/in/Pressure"},{"id":350190,"name":"Mediterranean Vegetation","url":"https://www.academia.edu/Documents/in/Mediterranean_Vegetation"},{"id":364324,"name":"Quercus ilex","url":"https://www.academia.edu/Documents/in/Quercus_ilex"},{"id":413767,"name":"Holm Oak","url":"https://www.academia.edu/Documents/in/Holm_Oak"},{"id":538964,"name":"Mediterranean region","url":"https://www.academia.edu/Documents/in/Mediterranean_region"},{"id":1905343,"name":"Plant Leaves","url":"https://www.academia.edu/Documents/in/Plant_Leaves"},{"id":2150526,"name":"Shoot","url":"https://www.academia.edu/Documents/in/Shoot"}],"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="122236347"><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/122236347/Xylem_Cavitation_and_Embolism_in_Plants_Living_in_Water_Limited_Ecosystems"><img alt="Research paper thumbnail of Xylem Cavitation and Embolism in Plants Living in Water-Limited Ecosystems" class="work-thumbnail" src="https://attachments.academia-assets.com/116944712/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/122236347/Xylem_Cavitation_and_Embolism_in_Plants_Living_in_Water_Limited_Ecosystems">Xylem Cavitation and Embolism in Plants Living in Water-Limited Ecosystems</a></div><div class="wp-workCard_item"><span>Plant Responses to Drought Stress</span><span>, 2012</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="832ed3d7e5ad4373624bd9530754acc4" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:116944712,&quot;asset_id&quot;:122236347,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/116944712/download_file?st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&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="122236347"><a 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Plants have evolved a wide range of morphologic and functional mechanisms to adapt to arid environments. However, if the tension in the xylem conduits becomes too high, thus xylem cavitation can occur i.e., water column breakage. This results in the hydraulic disconnection of leaves and above-ground parts from roots because xylem conduits are filled with air and water vapor, and this phenomenon is called embolism. Therefore, the resistance of the xylem to cavitation and embolism is of paramount importance for plant functioning. In this chapter, we will review the role of plant hydraulics and xylem cavitation in the context of water-limited ecosystems and their relationship with other plant functional traits and with survival capacity. 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El establecimiento de las diferentes especies depende de diversos factores abióticos y bióticos, y entre estos últimos las características morfofuncionales propias de cada especie. Las especies implicadas y la calidad de la planta forestal son factores esenciales en el éxito de las reforestaciones. Hasta hace unos años, los resultados de las reforestaciones se analizaban en un contexto de respuesta en términos de supervivencia y crecimiento de las especies introducidas y su relación con sus características morfológicas. La aparición de equipos de ecofisiología, en mayor o menor medida portátiles, ha permitido incorporar información ecofisiológica en la evaluación de la calidad y el estado de las plantas. De esta forma se ha abierto un amplio abanico para la interpretación de los resultados que contempla desde aspectos puramente morfológicos hasta aspectos que incluyen el funcionamiento de las especies. La ecofisiología puede ser una herramienta muy útil para ayudar a explicar los procesos involucrados en la respuesta de las especies. Dentro de los aspectos ecofisiológicos, el análisis de las estrategias desarrolladas en relación con variables bióticas y abióticas ha sido el campo de investigación que en mayor medida ha aprovechado los avances técnicos y metodológicos en ecofisiología. Desde la comprensión de los diferentes factores que interactúan en una planta, se podrán adecuar las técnicas de vivero para poder manipular las características morfofuncionales de los plantones según los intereses y objetivos de la restauración forestal.","publication_date":{"day":null,"month":null,"year":2005,"errors":{}},"publication_name":"Investigación Agraria: Sistemas y Recursos Forestales","grobid_abstract_attachment_id":116944697},"translated_abstract":null,"internal_url":"https://www.academia.edu/122236346/The_role_of_ecophysiology_in_reforestation","translated_internal_url":"","created_at":"2024-07-21T13:56:10.479-07:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":4575394,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":116944697,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/116944697/thumbnails/1.jpg","file_name":"244a02c95e3bd02f0e699b6d412636a28b28.pdf","download_url":"https://www.academia.edu/attachments/116944697/download_file?st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"The_role_of_ecophysiology_in_reforestati.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/116944697/244a02c95e3bd02f0e699b6d412636a28b28-libre.pdf?1721596291=\u0026response-content-disposition=attachment%3B+filename%3DThe_role_of_ecophysiology_in_reforestati.pdf\u0026Expires=1732761783\u0026Signature=NLmMIyrH02JghgyIO0V3ujaeyrxpUS0um5DVneOmj8M1SlpbrRhmjVSIIY0D0Ya~SFKqYLxb3wZmo8ZoyBO2yK7W-GXAoscvOaEZIbkxnhzxf2B70EzCkMi44yUFw2K-h0-m~bsBxJZnSXsaf4ApMSgLDoYBJ0S36lpt9t4KJ6I9rL-W1XYrGk20j~6DGwtl4MYsj~DoetVFSwISEyFxPUeQ62S2F-okqu7xYP~x2q3YK~ehJixq~AVEedOhLBSYespMwUwU6cpB2fLMe6QFkwMcF59r-TgSI6eF1EP9-0NxzHLjpA7h0-O4QIGzCUoT4leWO7jxGt1IkF0V4o5jLw__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"The_role_of_ecophysiology_in_reforestation","translated_slug":"","page_count":16,"language":"es","content_type":"Work","owner":{"id":4575394,"first_name":"Alberto","middle_initials":null,"last_name":"Vilagrosa","page_name":"AlbertoVilagrosa","domain_name":"ceam","created_at":"2013-06-17T19:46:02.480-07:00","display_name":"Alberto Vilagrosa","url":"https://ceam.academia.edu/AlbertoVilagrosa"},"attachments":[{"id":116944697,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/116944697/thumbnails/1.jpg","file_name":"244a02c95e3bd02f0e699b6d412636a28b28.pdf","download_url":"https://www.academia.edu/attachments/116944697/download_file?st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"The_role_of_ecophysiology_in_reforestati.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/116944697/244a02c95e3bd02f0e699b6d412636a28b28-libre.pdf?1721596291=\u0026response-content-disposition=attachment%3B+filename%3DThe_role_of_ecophysiology_in_reforestati.pdf\u0026Expires=1732761783\u0026Signature=NLmMIyrH02JghgyIO0V3ujaeyrxpUS0um5DVneOmj8M1SlpbrRhmjVSIIY0D0Ya~SFKqYLxb3wZmo8ZoyBO2yK7W-GXAoscvOaEZIbkxnhzxf2B70EzCkMi44yUFw2K-h0-m~bsBxJZnSXsaf4ApMSgLDoYBJ0S36lpt9t4KJ6I9rL-W1XYrGk20j~6DGwtl4MYsj~DoetVFSwISEyFxPUeQ62S2F-okqu7xYP~x2q3YK~ehJixq~AVEedOhLBSYespMwUwU6cpB2fLMe6QFkwMcF59r-TgSI6eF1EP9-0NxzHLjpA7h0-O4QIGzCUoT4leWO7jxGt1IkF0V4o5jLw__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":951,"name":"Humanities","url":"https://www.academia.edu/Documents/in/Humanities"},{"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":18194,"name":"Ecophysiology","url":"https://www.academia.edu/Documents/in/Ecophysiology"},{"id":93582,"name":"Functional Strategies","url":"https://www.academia.edu/Documents/in/Functional_Strategies"},{"id":102738,"name":"Reforestation","url":"https://www.academia.edu/Documents/in/Reforestation"},{"id":314820,"name":"Afforestation","url":"https://www.academia.edu/Documents/in/Afforestation"},{"id":386448,"name":"Seedling","url":"https://www.academia.edu/Documents/in/Seedling"},{"id":515583,"name":"REFORESTACIÓN","url":"https://www.academia.edu/Documents/in/REFORESTACI%C3%93N"},{"id":559731,"name":"Ecofisiología","url":"https://www.academia.edu/Documents/in/Ecofisiolog%C3%ADa"},{"id":614191,"name":"Forest restoration","url":"https://www.academia.edu/Documents/in/Forest_restoration"},{"id":2822864,"name":"forest systems","url":"https://www.academia.edu/Documents/in/forest_systems"}],"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="122236344"><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/122236344/Leaf_physiological_traits_in_relation_to_resprouter_ability_in_the_Mediterranean_Basin"><img alt="Research paper thumbnail of Leaf physiological traits in relation to resprouter ability in the Mediterranean Basin" class="work-thumbnail" src="https://attachments.academia-assets.com/116944675/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/122236344/Leaf_physiological_traits_in_relation_to_resprouter_ability_in_the_Mediterranean_Basin">Leaf physiological traits in relation to resprouter ability in the Mediterranean Basin</a></div><div class="wp-workCard_item"><span>Plant Ecology</span><span>, 2011</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="09ed818c892a21a2725027fb0a4295b6" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:116944675,&quot;asset_id&quot;:122236344,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/116944675/download_file?st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&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="122236344"><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="122236344"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 122236344; 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Because young plants of non-resprouters need to grow quickly and mature well before the next fire, we predict that they should possess leaf traits related to increased efficiency in growth and resource acquisition compared with resprouter species. To test this hypothesis, we measured specific leaf area, leaf nitrogen and carbon concentrations and leaf physiological traits, including gas exchange parameters and chlorophyll fluorescence, in 19 Mediterranean species cultivated in a common garden. Both cross-species and phylogenetically informed analyses suggest that non-resprouters have better physiological performance at the leaf level (i.e. higher photosynthetic capacity) than resprouters. All these results suggest that non-resprouter species are able to take greater advantage for vegetative growth and carbon fixation than resprouters during periods when water is readily available. 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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="122236343"><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/122236343/Alleviation_of_Zn_toxicity_by_low_water_availability"><img alt="Research paper thumbnail of Alleviation of Zn toxicity by low water availability" class="work-thumbnail" src="https://attachments.academia-assets.com/116944693/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/122236343/Alleviation_of_Zn_toxicity_by_low_water_availability">Alleviation of Zn toxicity by low water availability</a></div><div class="wp-workCard_item"><span>Physiologia Plantarum</span><span>, 2013</span></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">Heavy metal contamination and drought are expected to increase in large areas worldwide. However,...</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">Heavy metal contamination and drought are expected to increase in large areas worldwide. However, their combined effect on plant performance has been scantly analyzed. This study examines the effect of Zn supply at different water availabilities on morpho‐physiological traits of Quercus suber L. in order to analyze the combined effects of both stresses. Seedlings were treated with four levels of zinc from 3 to 150 µM and exposed to low watering (LW) or high watering (HW) frequency in hydroponic culture, using a growth chamber. Under both watering regimes, Zn concentration in leaves and roots increased with Zn increment in nutrient solution. Nevertheless, at the highest Zn doses, Zn tissue concentrations were almost twice in HW than in LW seedlings. Functional traits as leaf photosynthetic rate and root hydraulic conductivity, and morphological traits as root length and root biomass decreased significantly in response to Zn supply. Auxin levels increased with Zn concentrations, sugge...</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="67c7bf224b6469883a2471897b6f6899" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:116944693,&quot;asset_id&quot;:122236343,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/116944693/download_file?st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&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="122236343"><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="122236343"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 122236343; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=122236343]").text(description); $(".js-view-count[data-work-id=122236343]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 122236343; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='122236343']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 122236343, 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: "67c7bf224b6469883a2471897b6f6899" } } $('.js-work-strip[data-work-id=122236343]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":122236343,"title":"Alleviation of Zn toxicity by low water availability","translated_title":"","metadata":{"abstract":"Heavy metal contamination and drought are expected to increase in large areas worldwide. However, their combined effect on plant performance has been scantly analyzed. This study examines the effect of Zn supply at different water availabilities on morpho‐physiological traits of Quercus suber L. in order to analyze the combined effects of both stresses. Seedlings were treated with four levels of zinc from 3 to 150 µM and exposed to low watering (LW) or high watering (HW) frequency in hydroponic culture, using a growth chamber. Under both watering regimes, Zn concentration in leaves and roots increased with Zn increment in nutrient solution. Nevertheless, at the highest Zn doses, Zn tissue concentrations were almost twice in HW than in LW seedlings. Functional traits as leaf photosynthetic rate and root hydraulic conductivity, and morphological traits as root length and root biomass decreased significantly in response to Zn supply. Auxin levels increased with Zn concentrations, sugge...","publisher":"Wiley","publication_date":{"day":null,"month":null,"year":2013,"errors":{}},"publication_name":"Physiologia Plantarum"},"translated_abstract":"Heavy metal contamination and drought are expected to increase in large areas worldwide. However, their combined effect on plant performance has been scantly analyzed. This study examines the effect of Zn supply at different water availabilities on morpho‐physiological traits of Quercus suber L. in order to analyze the combined effects of both stresses. Seedlings were treated with four levels of zinc from 3 to 150 µM and exposed to low watering (LW) or high watering (HW) frequency in hydroponic culture, using a growth chamber. Under both watering regimes, Zn concentration in leaves and roots increased with Zn increment in nutrient solution. Nevertheless, at the highest Zn doses, Zn tissue concentrations were almost twice in HW than in LW seedlings. Functional traits as leaf photosynthetic rate and root hydraulic conductivity, and morphological traits as root length and root biomass decreased significantly in response to Zn supply. 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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="575045" id="papers"><div class="js-work-strip profile--work_container" data-work-id="122236368"><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/122236368/Post_drought_conditions_and_hydraulic_dysfunction_determine_tree_resilience_and_mortality_across_Mediterranean_Aleppo_pine_Pinus_halepensis_populations_after_an_extreme_drought_event"><img alt="Research paper thumbnail of Post-drought conditions and hydraulic dysfunction determine tree resilience and mortality across Mediterranean Aleppo pine (Pinus halepensis) populations after an extreme drought event" class="work-thumbnail" src="https://attachments.academia-assets.com/116944687/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/122236368/Post_drought_conditions_and_hydraulic_dysfunction_determine_tree_resilience_and_mortality_across_Mediterranean_Aleppo_pine_Pinus_halepensis_populations_after_an_extreme_drought_event">Post-drought conditions and hydraulic dysfunction determine tree resilience and mortality across Mediterranean Aleppo pine (Pinus halepensis) populations after an extreme drought event</a></div><div class="wp-workCard_item"><span>Tree Physiology</span><span>, 2022</span></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">Drought-related tree mortality is a global phenomenon that currently affects a wide range of fore...</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">Drought-related tree mortality is a global phenomenon that currently affects a wide range of forests. Key functional variables on plant hydraulics, carbon economy, growth and allocation have been identified and play a role in tree drought responses. However, tree mortality thresholds based on such variables are difficult to identify, especially under field conditions. We studied several Aleppo pine populations differently affected by an extreme drought event in 2014, with mortality rates ranging from no mortality to 90% in the most severely affected population. We hypothesized that mortality is linked with high levels of xylem embolism, i.e., hydraulic dysfunction, which would also lead to lower tree resistance to drought in subsequent years. Despite not finding any differences among populations in the vulnerability curves to xylem embolism, there were large differences in the hydraulic safety margin (HSM) and the hydraulic dysfunction level. High mortality rates were associated wit...</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="0bd364a3aee53df7728087d699cc1515" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:116944687,&quot;asset_id&quot;:122236368,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/116944687/download_file?st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&st=MTczMjc1ODE4Miw4LjIyMi4yMDguMTQ2&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="122236368"><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="122236368"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 122236368; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=122236368]").text(description); $(".js-view-count[data-work-id=122236368]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 122236368; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='122236368']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 122236368, 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: "0bd364a3aee53df7728087d699cc1515" } } $('.js-work-strip[data-work-id=122236368]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":122236368,"title":"Post-drought conditions and hydraulic dysfunction determine tree resilience and mortality across Mediterranean Aleppo pine (Pinus halepensis) populations after an extreme drought event","translated_title":"","metadata":{"abstract":"Drought-related tree mortality is a global phenomenon that currently affects a wide range of forests. Key functional variables on plant hydraulics, carbon economy, growth and allocation have been identified and play a role in tree drought responses. However, tree mortality thresholds based on such variables are difficult to identify, especially under field conditions. We studied several Aleppo pine populations differently affected by an extreme drought event in 2014, with mortality rates ranging from no mortality to 90% in the most severely affected population. We hypothesized that mortality is linked with high levels of xylem embolism, i.e., hydraulic dysfunction, which would also lead to lower tree resistance to drought in subsequent years. Despite not finding any differences among populations in the vulnerability curves to xylem embolism, there were large differences in the hydraulic safety margin (HSM) and the hydraulic dysfunction level. High mortality rates were associated wit...","publisher":"Oxford University Press (OUP)","publication_date":{"day":null,"month":null,"year":2022,"errors":{}},"publication_name":"Tree Physiology"},"translated_abstract":"Drought-related tree mortality is a global phenomenon that currently affects a wide range of forests. Key functional variables on plant hydraulics, carbon economy, growth and allocation have been identified and play a role in tree drought responses. However, tree mortality thresholds based on such variables are difficult to identify, especially under field conditions. We studied several Aleppo pine populations differently affected by an extreme drought event in 2014, with mortality rates ranging from no mortality to 90% in the most severely affected population. We hypothesized that mortality is linked with high levels of xylem embolism, i.e., hydraulic dysfunction, which would also lead to lower tree resistance to drought in subsequent years. Despite not finding any differences among populations in the vulnerability curves to xylem embolism, there were large differences in the hydraulic safety margin (HSM) and the hydraulic dysfunction level. High mortality rates were associated wit...","internal_url":"https://www.academia.edu/122236368/Post_drought_conditions_and_hydraulic_dysfunction_determine_tree_resilience_and_mortality_across_Mediterranean_Aleppo_pine_Pinus_halepensis_populations_after_an_extreme_drought_event","translated_internal_url":"","created_at":"2024-07-21T13:56:14.247-07:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":4575394,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":116944687,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/116944687/thumbnails/1.jpg","file_name":"Morcillo_etal_2022_TreePhysiology_accepted.pdf","download_url":"https://www.academia.edu/attachments/116944687/download_file?st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&st=MTczMjc1ODE4Miw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Post_drought_conditions_and_hydraulic_dy.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/116944687/Morcillo_etal_2022_TreePhysiology_accepted-libre.pdf?1721596321=\u0026response-content-disposition=attachment%3B+filename%3DPost_drought_conditions_and_hydraulic_dy.pdf\u0026Expires=1732761782\u0026Signature=IeU~PjWQaFXprdJ~HXJyogn5flt8KruV3FdN9iUEL6sOLtbgEWMOzGzftPEKqyqWyXie7g8hnrIRPLwllIxXqsHRCxdyDXYs~imeKXYleo5YyFhwx6OMvuFeuZrHNtqw7ZbxJgfe1DaZtkVFDTyJKuwsfmgRlN1ItAYyGLKy~Gw5fy1QrTCIqNF663hXUyzlPrxanenSpBwEqkY1VHPi~IVxaInable4okhPjKmmC~B3S02BzYTMWYtRgSQzaFJGEsFIV3kiJShiL1mooUAyMtn0aZMJYYwYVjBRaT~IjhgIuIdxCfzZTo5JUv0F0eOXc7wFKd2eZOepxf2zSk6n8Q__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"Post_drought_conditions_and_hydraulic_dysfunction_determine_tree_resilience_and_mortality_across_Mediterranean_Aleppo_pine_Pinus_halepensis_populations_after_an_extreme_drought_event","translated_slug":"","page_count":33,"language":"en","content_type":"Work","owner":{"id":4575394,"first_name":"Alberto","middle_initials":null,"last_name":"Vilagrosa","page_name":"AlbertoVilagrosa","domain_name":"ceam","created_at":"2013-06-17T19:46:02.480-07:00","display_name":"Alberto Vilagrosa","url":"https://ceam.academia.edu/AlbertoVilagrosa"},"attachments":[{"id":116944687,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/116944687/thumbnails/1.jpg","file_name":"Morcillo_etal_2022_TreePhysiology_accepted.pdf","download_url":"https://www.academia.edu/attachments/116944687/download_file?st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&st=MTczMjc1ODE4Miw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Post_drought_conditions_and_hydraulic_dy.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/116944687/Morcillo_etal_2022_TreePhysiology_accepted-libre.pdf?1721596321=\u0026response-content-disposition=attachment%3B+filename%3DPost_drought_conditions_and_hydraulic_dy.pdf\u0026Expires=1732761782\u0026Signature=IeU~PjWQaFXprdJ~HXJyogn5flt8KruV3FdN9iUEL6sOLtbgEWMOzGzftPEKqyqWyXie7g8hnrIRPLwllIxXqsHRCxdyDXYs~imeKXYleo5YyFhwx6OMvuFeuZrHNtqw7ZbxJgfe1DaZtkVFDTyJKuwsfmgRlN1ItAYyGLKy~Gw5fy1QrTCIqNF663hXUyzlPrxanenSpBwEqkY1VHPi~IVxaInable4okhPjKmmC~B3S02BzYTMWYtRgSQzaFJGEsFIV3kiJShiL1mooUAyMtn0aZMJYYwYVjBRaT~IjhgIuIdxCfzZTo5JUv0F0eOXc7wFKd2eZOepxf2zSk6n8Q__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":5541,"name":"Plant Biology","url":"https://www.academia.edu/Documents/in/Plant_Biology"},{"id":9846,"name":"Ecology","url":"https://www.academia.edu/Documents/in/Ecology"},{"id":72643,"name":"Tree Physiology","url":"https://www.academia.edu/Documents/in/Tree_Physiology"},{"id":126935,"name":"Xylem","url":"https://www.academia.edu/Documents/in/Xylem"},{"id":317638,"name":"Forestry Sciences","url":"https://www.academia.edu/Documents/in/Forestry_Sciences"},{"id":564368,"name":"Mediterranean Climate","url":"https://www.academia.edu/Documents/in/Mediterranean_Climate"},{"id":643078,"name":"Aleppo Pine","url":"https://www.academia.edu/Documents/in/Aleppo_Pine"}],"urls":[{"id":43624089,"url":"https://academic.oup.com/treephys/advance-article-pdf/doi/10.1093/treephys/tpac001/42828681/tpac001.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="122236366"><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/122236366/Using_field_and_nursery_treatments_to_establish_Quercus_suber_seedlings_in_Mediterranean_degraded_shrubland"><img alt="Research paper thumbnail of Using field and nursery treatments to establish Quercus suber seedlings in Mediterranean degraded shrubland" class="work-thumbnail" src="https://attachments.academia-assets.com/116944681/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/122236366/Using_field_and_nursery_treatments_to_establish_Quercus_suber_seedlings_in_Mediterranean_degraded_shrubland">Using field and nursery treatments to establish Quercus suber seedlings in Mediterranean degraded shrubland</a></div><div class="wp-workCard_item"><span>iForest - Biogeosciences and Forestry</span><span>, 2020</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="dd4be57d5bb2e43c51ac6291ef08e09f" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:116944681,&quot;asset_id&quot;:122236366,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/116944681/download_file?st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&st=MTczMjc1ODE4Miw4LjIyMi4yMDguMTQ2&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="122236366"><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="122236366"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 122236366; 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dispatcherData = { dispatcher: window.WowProfile.dispatcher, downloadLinkId: "dd4be57d5bb2e43c51ac6291ef08e09f" } } $('.js-work-strip[data-work-id=122236366]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":122236366,"title":"Using field and nursery treatments to establish Quercus suber seedlings in Mediterranean degraded shrubland","translated_title":"","metadata":{"publisher":"Italian Society of Sivilculture and Forest Ecology (SISEF)","grobid_abstract":"Biogeosciences and Forestry Biogeosciences and Forestry Using field and nursery treatments to establish Quercus suber seedlings in Mediterranean degraded shrubland Julio Muñoz-Rengifo (1-2) , Esteban Chirino (3) , Vicent Cerdán (4) , Jesús Martínez (4) , Osvaldo Fosado (5) , Alberto Vilagrosa (6) Cork oak (Quercus suber L.) is a suitable species for restoring Mediterranean ecosystems due to its capacity to resprout after wildfires and its economic importance for the use of cork. Several studies have focused on improving the seedling quality and abiotic conditions at the outplanting site to favour the field performance of Q. suber, however, most studies have been conducted by independently testing treatments. The aim of this study was to assess the combined effect of three techniques that focused on reforestation success with Q. suber in Mediterranean degraded shrubland: (i) a nursery technique to improve root system development, such as the use of deep containers to develop a longer tap root, combined with two field techniques such as (ii) the use of tree shelters to diminish solar radiation stress, and (iii) shrubland treatments to reduce competition for soil water and nutrients. For this purpose, 1-yearold Q. suber seedlings were grown in two containers types: a shallow container (CCS-18) and a deep container (CCL-30). Seedlings were established in a degraded shrubland at three experimental sites in the Calderona mountain range of Castellón, Spain. A factorial design was combined based on container type (CCS-18 and CCL-30), shrubland management (undisturbed shrubland and cleared shrubland in strips) and tree shelters (vegetable fibre tree shelters and no tree shelters). After 2 years of monitoring, the outplanting results indicated that using: (i) a deep container produced a longer taproot, but did not favour better survival or better field performance of seedlings; (ii) tree shelters improved the microweather conditions around seedlings, particularly by reducing excess incoming solar radiation; (iii) cleared shrubland strips reduced competition for soil water by favouring a higher water potential, better maximum photochemical PSII efficiency and higher survival rates for the seedlings established into cleared sites. The results indicate that the cleared shrubland treatment effects overlap the effects of using deep containers and tree shelters. This, in turn, reveals that shrubland clearing is the most suitable technique for favouring the introduction of a resprouter species like Q. suber into ecosystems characterized by predominantly degraded shrublands.","publication_date":{"day":null,"month":null,"year":2020,"errors":{}},"publication_name":"iForest - Biogeosciences and Forestry","grobid_abstract_attachment_id":116944681},"translated_abstract":null,"internal_url":"https://www.academia.edu/122236366/Using_field_and_nursery_treatments_to_establish_Quercus_suber_seedlings_in_Mediterranean_degraded_shrubland","translated_internal_url":"","created_at":"2024-07-21T13:56:14.015-07:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":4575394,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":116944681,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/116944681/thumbnails/1.jpg","file_name":"Munoz-Rengifo_etal_2020_iForest.pdf","download_url":"https://www.academia.edu/attachments/116944681/download_file?st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&st=MTczMjc1ODE4Miw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Using_field_and_nursery_treatments_to_es.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/116944681/Munoz-Rengifo_etal_2020_iForest-libre.pdf?1721596302=\u0026response-content-disposition=attachment%3B+filename%3DUsing_field_and_nursery_treatments_to_es.pdf\u0026Expires=1732761782\u0026Signature=a-4fuHmJ4XQ1GxirFpPVx6wdKCdklzEI2d6yZZ~wZB88PO1fiHTrgS65ousfoz-svGHs~HdyFyOy-HvUYbH9gU6zT8YTesgstPNirsMNtKhi3-Cc0dU40YmZrswB8ysyy2KdcKhpQlaVwJ9F4aJn6~q~hWUSBnXnxU4QD47o--XyG8VmLC6AEl9OjTtAjhO7DsscTuOTRzj4MOhuFhor6e0QzmV-yZ8WgshCJIMYX02hrBWuoJrdH24~PAHxwe3eHF0Oy8w114J~jAowMLM6zdeCC7p2Kj6hnBs8zKgBBX9qVfG6YUVMznuMjNsGSwicdwZeo~Z6KtVU33B5HMP8jw__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"Using_field_and_nursery_treatments_to_establish_Quercus_suber_seedlings_in_Mediterranean_degraded_shrubland","translated_slug":"","page_count":10,"language":"en","content_type":"Work","owner":{"id":4575394,"first_name":"Alberto","middle_initials":null,"last_name":"Vilagrosa","page_name":"AlbertoVilagrosa","domain_name":"ceam","created_at":"2013-06-17T19:46:02.480-07:00","display_name":"Alberto Vilagrosa","url":"https://ceam.academia.edu/AlbertoVilagrosa"},"attachments":[{"id":116944681,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/116944681/thumbnails/1.jpg","file_name":"Munoz-Rengifo_etal_2020_iForest.pdf","download_url":"https://www.academia.edu/attachments/116944681/download_file?st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&st=MTczMjc1ODE4Miw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Using_field_and_nursery_treatments_to_es.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/116944681/Munoz-Rengifo_etal_2020_iForest-libre.pdf?1721596302=\u0026response-content-disposition=attachment%3B+filename%3DUsing_field_and_nursery_treatments_to_es.pdf\u0026Expires=1732761782\u0026Signature=a-4fuHmJ4XQ1GxirFpPVx6wdKCdklzEI2d6yZZ~wZB88PO1fiHTrgS65ousfoz-svGHs~HdyFyOy-HvUYbH9gU6zT8YTesgstPNirsMNtKhi3-Cc0dU40YmZrswB8ysyy2KdcKhpQlaVwJ9F4aJn6~q~hWUSBnXnxU4QD47o--XyG8VmLC6AEl9OjTtAjhO7DsscTuOTRzj4MOhuFhor6e0QzmV-yZ8WgshCJIMYX02hrBWuoJrdH24~PAHxwe3eHF0Oy8w114J~jAowMLM6zdeCC7p2Kj6hnBs8zKgBBX9qVfG6YUVMznuMjNsGSwicdwZeo~Z6KtVU33B5HMP8jw__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":402,"name":"Environmental Science","url":"https://www.academia.edu/Documents/in/Environmental_Science"},{"id":23980,"name":"Ecological restoration","url":"https://www.academia.edu/Documents/in/Ecological_restoration"},{"id":224606,"name":"Ecología","url":"https://www.academia.edu/Documents/in/Ecolog%C3%ADa"},{"id":238830,"name":"Shrubland","url":"https://www.academia.edu/Documents/in/Shrubland"},{"id":300676,"name":"Quercus suber","url":"https://www.academia.edu/Documents/in/Quercus_suber"},{"id":386448,"name":"Seedling","url":"https://www.academia.edu/Documents/in/Seedling"},{"id":564368,"name":"Mediterranean Climate","url":"https://www.academia.edu/Documents/in/Mediterranean_Climate"},{"id":607982,"name":"Pistacia Lentiscus","url":"https://www.academia.edu/Documents/in/Pistacia_Lentiscus"},{"id":2153312,"name":"Taproot","url":"https://www.academia.edu/Documents/in/Taproot"}],"urls":[]}, dispatcherData: dispatcherData }); 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In dry and fire-prone areas of southern Spain and France, Pinus halepensis forests were thinned at different levels and hardwood species were introduced under pine canopy and in opened areas. Thinning activities increased light, modified microclimate and soil moisture availability. Growth was improved in all sites but survival showed a more contrasted response. In mountainous areas, thinning treatments applied on Abies alba forests of southern France and Pinus nigra forests of central Spain were tested. Thinned silver fir stands showed higher tree growth than the control stands. In black pine forests, maximal seedling emergence was found for high basal area values whereas survival and growth were the highest for lower values. 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The combined role of site conditions and reforestation techniques in southeastern Spain" class="work-thumbnail" src="https://attachments.academia-assets.com/116944700/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/122236358/Effects_of_landscape_spatial_heterogeneity_on_dryland_restoration_success_The_combined_role_of_site_conditions_and_reforestation_techniques_in_southeastern_Spain">Effects of landscape spatial heterogeneity on dryland restoration success. The combined role of site conditions and reforestation techniques in southeastern Spain</a></div><div class="wp-workCard_item"><span>Ecologia mediterranea</span><span>, 2012</span></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">In occidental Europe, Spain is one of countries the most severely affected by desertification (Ar...</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">In occidental Europe, Spain is one of countries the most severely affected by desertification (Arnalds &amp; Arsher 2000). Particularly, South-eastern Spain is considered as one of the most threatened areas by desertification in Mediterranean Europe (Vallejo 1997). In 2003, the Valencia Regional Forest Service implemented a restoration demonstration project in this area. The project site is a small catchment (25 ha) located in the Albatera municipality. The catchment is highly heterogeneous, with terraced slopes, south-facing slopes and north-facing slopes. The restoration strategy was based on planting evergreen trees and shrubs which can grow quickly after disturbances, and on field treatments aimed at maximizing water collection (micro-catchments, planting furrows), organic amendment (compost), and conservation (tree shelters, mulching). 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/></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/122236355/Integrating_knowledge_exchange_and_the_assessment_of_dryland_management_alternatives_A_learning_centered_participatory_approach">Integrating knowledge exchange and the assessment of dryland management alternatives – A learning-centered participatory approach</a></div><div class="wp-workCard_item"><span>Journal of Environmental Management</span><span>, 2017</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="d30bbfb3fbd488ad6b84a3cbe9b1ca8c" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" 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We propose a learning-centered participatory approach that links land management assessment and knowledge exchange and integrates science-based data and stakeholder perspectives on both biophysical and socioeconomic attributes. We outline a structured procedure for a transparent assessment of land management alternatives, tailored to dryland management, that is based on (1) principles of constructivism and social learning, (2) the participation of stakeholders throughout the whole assessment process, from design to implementation, and (3) the combination of site-specific indicators, identified by local stakeholders as relevant to their particular objectives and context conditions, and science-based indicators that represent ecosystem services of drylands worldwide. The proposed procedure follows a pattern of eliciting, challenging, and self-reviewing stakeholder perspectives that aims to facilitate learning. The difference between the initial baseline perspectives and the final self-reviewed stakeholder perspectives is used as a proxy of learning. We illustrate the potential of this methodology by its application to the assessment of land uses in a Mediterranean fire-prone area in East Spain. 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href="https://www.academia.edu/122236354/Balance_h%C3%ADdrico_del_suelo_en_pinares_con_diferente_densidad_de_arbolado_Efectos_sobre_el_establecimiento_de_brinzales_de_especies_rebrotadoras_bajo_el_dosel"><img alt="Research paper thumbnail of Balance hídrico del suelo en pinares con diferente densidad de arbolado. Efectos sobre el establecimiento de brinzales de especies rebrotadoras bajo el dosel" class="work-thumbnail" src="https://attachments.academia-assets.com/116944731/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/122236354/Balance_h%C3%ADdrico_del_suelo_en_pinares_con_diferente_densidad_de_arbolado_Efectos_sobre_el_establecimiento_de_brinzales_de_especies_rebrotadoras_bajo_el_dosel">Balance hídrico del suelo en pinares con diferente densidad de arbolado. Efectos sobre el establecimiento de brinzales de especies rebrotadoras bajo el dosel</a></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">El objetivo del presente trabajo fue determinar el balance hídrico del suelo en bosques de pino c...</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">El objetivo del presente trabajo fue determinar el balance hídrico del suelo en bosques de pino carrasco con diferente densidad de arbolado utilizando el modelo ecohidrológico HYDROBAL, y evaluar sus efectos sobre la introducción y establecimiento bajo el dosel, de brinzales de especies ampliamente utilizadas en la restauración forestal. En este contexto, en La Hunde (Ayora, Valencia), y como consecuencia de previas labores de aclareo con diferente intensidad, se definieron tres tratamientos experimentales de acuerdo a diferentes densidades de pinos: Baja (100-300 pies ha -1 ); Media (300-700 pies ha -1 ) y Alta (700-1100 pies ha 1 ). De cada tratamiento se establecieron tres parcelas experimentales de 900 m 2 , localizadas en tres sitios (El Aljibe, El Lobo y El Mojón). En cada parcela se plantaron quince individuos de seis especies rebrotadoras con características morfo-funcionales contrastadas (Arbutus unedo, Rhamnus alaternus, Quercus ilex, Quercus faginea, Fraxinus ornus, Acer ...</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="c59144561b7b66fbd97247fb59583614" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:116944731,&quot;asset_id&quot;:122236354,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/116944731/download_file?st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&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="122236354"><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="122236354"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 122236354; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=122236354]").text(description); $(".js-view-count[data-work-id=122236354]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 122236354; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='122236354']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 122236354, 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: "c59144561b7b66fbd97247fb59583614" } } $('.js-work-strip[data-work-id=122236354]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":122236354,"title":"Balance hídrico del suelo en pinares con diferente densidad de arbolado. 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De cada tratamiento se establecieron tres parcelas experimentales de 900 m 2 , localizadas en tres sitios (El Aljibe, El Lobo y El Mojón). 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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="122236348"><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/122236348/Morphological_and_physiological_divergences_within_Quercus_ilex_support_the_existence_of_different_ecotypes_depending_on_climatic_dryness"><img alt="Research paper thumbnail of Morphological and physiological divergences within Quercus ilex support the existence of different ecotypes depending on climatic dryness" class="work-thumbnail" src="https://attachments.academia-assets.com/116944689/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/122236348/Morphological_and_physiological_divergences_within_Quercus_ilex_support_the_existence_of_different_ecotypes_depending_on_climatic_dryness">Morphological and physiological divergences within Quercus ilex support the existence of different ecotypes depending on climatic dryness</a></div><div class="wp-workCard_item"><span>Annals of Botany</span><span>, 2014</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="f144f77c55292842fe0758cfefcf84ba" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:116944689,&quot;asset_id&quot;:122236348,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/116944689/download_file?st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&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="122236348"><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="122236348"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 122236348; 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In this context, this study evaluates the variability of functional traits within holm oak (Quercus ilex) to elucidate whether provenances corresponding to different morphotypes represent different ecotypes locally adapted to the prevaling stress levels. † Methods Several morphological and physiological traits were measured at leaf and shoot levels in 9-year-old seedlings of seven Q. ilex provenances including all recognized morphotypes. Plants were grown in a common garden for 9 years under the same environmental conditions to avoid possible biases due to site-specific characteristics. † Key Results Leaf morphometry clearly separates holm oak provenances into 'ilex' (more elongated leaves with low vein density) and 'rotundifolia' (short and rounded leaves with high vein density) morphotypes. Moreover, these morphotypes represent two consistent and very contrasting functional types in response to dry climates, mainly in terms of leaf area, major vein density, leaf specific conductivity, resistance to drought-induced cavitation and turgor loss point. † Conclusions The 'ilex' and 'rotundifolia' morphotypes correspond to different ecotypes as inferred from their contrasting functional traits. To the best of our knowledge, this is the first time that the combined use of morphological and physiological traits has provided support for the concept of these two holm oak morphotypes being regarded as two different species.","publication_date":{"day":null,"month":null,"year":2014,"errors":{}},"publication_name":"Annals of 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Living in Water-Limited Ecosystems</a></div><div class="wp-workCard_item"><span>Plant Responses to Drought Stress</span><span>, 2012</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="832ed3d7e5ad4373624bd9530754acc4" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:116944712,&quot;asset_id&quot;:122236347,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/116944712/download_file?st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&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="122236347"><a 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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="122236346"><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/122236346/The_role_of_ecophysiology_in_reforestation"><img alt="Research paper thumbnail of The role of ecophysiology in reforestation" class="work-thumbnail" src="https://attachments.academia-assets.com/116944697/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/122236346/The_role_of_ecophysiology_in_reforestation">The role of ecophysiology in reforestation</a></div><div class="wp-workCard_item"><span>Investigación Agraria: Sistemas y Recursos Forestales</span><span>, 2005</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="80a684cedb055905e0e14efa020234f6" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:116944697,&quot;asset_id&quot;:122236346,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/116944697/download_file?st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&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="122236346"><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="122236346"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 122236346; 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El establecimiento de las diferentes especies depende de diversos factores abióticos y bióticos, y entre estos últimos las características morfofuncionales propias de cada especie. Las especies implicadas y la calidad de la planta forestal son factores esenciales en el éxito de las reforestaciones. Hasta hace unos años, los resultados de las reforestaciones se analizaban en un contexto de respuesta en términos de supervivencia y crecimiento de las especies introducidas y su relación con sus características morfológicas. La aparición de equipos de ecofisiología, en mayor o menor medida portátiles, ha permitido incorporar información ecofisiológica en la evaluación de la calidad y el estado de las plantas. De esta forma se ha abierto un amplio abanico para la interpretación de los resultados que contempla desde aspectos puramente morfológicos hasta aspectos que incluyen el funcionamiento de las especies. La ecofisiología puede ser una herramienta muy útil para ayudar a explicar los procesos involucrados en la respuesta de las especies. Dentro de los aspectos ecofisiológicos, el análisis de las estrategias desarrolladas en relación con variables bióticas y abióticas ha sido el campo de investigación que en mayor medida ha aprovechado los avances técnicos y metodológicos en ecofisiología. 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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="122236344"><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/122236344/Leaf_physiological_traits_in_relation_to_resprouter_ability_in_the_Mediterranean_Basin"><img alt="Research paper thumbnail of Leaf physiological traits in relation to resprouter ability in the Mediterranean Basin" class="work-thumbnail" src="https://attachments.academia-assets.com/116944675/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/122236344/Leaf_physiological_traits_in_relation_to_resprouter_ability_in_the_Mediterranean_Basin">Leaf physiological traits in relation to resprouter ability in the Mediterranean Basin</a></div><div class="wp-workCard_item"><span>Plant Ecology</span><span>, 2011</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="09ed818c892a21a2725027fb0a4295b6" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:116944675,&quot;asset_id&quot;:122236344,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/116944675/download_file?st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&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="122236344"><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="122236344"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 122236344; 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Because young plants of non-resprouters need to grow quickly and mature well before the next fire, we predict that they should possess leaf traits related to increased efficiency in growth and resource acquisition compared with resprouter species. To test this hypothesis, we measured specific leaf area, leaf nitrogen and carbon concentrations and leaf physiological traits, including gas exchange parameters and chlorophyll fluorescence, in 19 Mediterranean species cultivated in a common garden. Both cross-species and phylogenetically informed analyses suggest that non-resprouters have better physiological performance at the leaf level (i.e. higher photosynthetic capacity) than resprouters. All these results suggest that non-resprouter species are able to take greater advantage for vegetative growth and carbon fixation than resprouters during periods when water is readily available. The contrasted physiological differences between resprouters and non-resprouters reinforce the idea that these two syndromes are functionally different (i.e. they are functional types).","publication_date":{"day":null,"month":null,"year":2011,"errors":{}},"publication_name":"Plant Ecology","grobid_abstract_attachment_id":116944675},"translated_abstract":null,"internal_url":"https://www.academia.edu/122236344/Leaf_physiological_traits_in_relation_to_resprouter_ability_in_the_Mediterranean_Basin","translated_internal_url":"","created_at":"2024-07-21T13:56:10.287-07:00","preview_url":null,"current_user_can_edit":null,"current_user_is_owner":null,"owner_id":4575394,"coauthors_can_edit":true,"document_type":"paper","co_author_tags":[],"downloadable_attachments":[{"id":116944675,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/116944675/thumbnails/1.jpg","file_name":"Hernandez-2011-PlEcol_resprouting-leaf-physiology.pdf","download_url":"https://www.academia.edu/attachments/116944675/download_file?st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Leaf_physiological_traits_in_relation_to.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/116944675/Hernandez-2011-PlEcol_resprouting-leaf-physiology-libre.pdf?1721596295=\u0026response-content-disposition=attachment%3B+filename%3DLeaf_physiological_traits_in_relation_to.pdf\u0026Expires=1732761783\u0026Signature=PsIYmg6awpZRyiajGqzDgBK5Ut6HM7Ww0Bkvuke5CVihKpiQ3G6haniOX8pNLA4kMN2bMaPKGKTlwPq54NXQFtD2wpi~Xw4s45Xzt0thMVe5LRzVGmWEC0EjH8rzBa-iTXBrspmgSam32Nyn5ayuZ4ipe8y3lQ7MJQQ2-4xGKAvukKy44y8M6--wNNtuKfFvaXx5sw2OIuoAGVKOd2bIrFOzuqnlYs7S4iduJTmU0I8T3j1V61lrprMHKyVKYFs5yrB-fG5HxGwNfn5IzUrqUHPCsm~W76BNUvLKnFom59mUkqDhAXkce3B4Rup8I5ZyjpHEzcdSot2HtlUUEt-6GA__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"slug":"Leaf_physiological_traits_in_relation_to_resprouter_ability_in_the_Mediterranean_Basin","translated_slug":"","page_count":8,"language":"en","content_type":"Work","owner":{"id":4575394,"first_name":"Alberto","middle_initials":null,"last_name":"Vilagrosa","page_name":"AlbertoVilagrosa","domain_name":"ceam","created_at":"2013-06-17T19:46:02.480-07:00","display_name":"Alberto Vilagrosa","url":"https://ceam.academia.edu/AlbertoVilagrosa"},"attachments":[{"id":116944675,"title":"","file_type":"pdf","scribd_thumbnail_url":"https://attachments.academia-assets.com/116944675/thumbnails/1.jpg","file_name":"Hernandez-2011-PlEcol_resprouting-leaf-physiology.pdf","download_url":"https://www.academia.edu/attachments/116944675/download_file?st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&","bulk_download_file_name":"Leaf_physiological_traits_in_relation_to.pdf","bulk_download_url":"https://d1wqtxts1xzle7.cloudfront.net/116944675/Hernandez-2011-PlEcol_resprouting-leaf-physiology-libre.pdf?1721596295=\u0026response-content-disposition=attachment%3B+filename%3DLeaf_physiological_traits_in_relation_to.pdf\u0026Expires=1732761783\u0026Signature=PsIYmg6awpZRyiajGqzDgBK5Ut6HM7Ww0Bkvuke5CVihKpiQ3G6haniOX8pNLA4kMN2bMaPKGKTlwPq54NXQFtD2wpi~Xw4s45Xzt0thMVe5LRzVGmWEC0EjH8rzBa-iTXBrspmgSam32Nyn5ayuZ4ipe8y3lQ7MJQQ2-4xGKAvukKy44y8M6--wNNtuKfFvaXx5sw2OIuoAGVKOd2bIrFOzuqnlYs7S4iduJTmU0I8T3j1V61lrprMHKyVKYFs5yrB-fG5HxGwNfn5IzUrqUHPCsm~W76BNUvLKnFom59mUkqDhAXkce3B4Rup8I5ZyjpHEzcdSot2HtlUUEt-6GA__\u0026Key-Pair-Id=APKAJLOHF5GGSLRBV4ZA"}],"research_interests":[{"id":1360,"name":"Plant Ecology","url":"https://www.academia.edu/Documents/in/Plant_Ecology"},{"id":5541,"name":"Plant Biology","url":"https://www.academia.edu/Documents/in/Plant_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":373754,"name":"Ecosystem","url":"https://www.academia.edu/Documents/in/Ecosystem"},{"id":443508,"name":"Specific leaf area","url":"https://www.academia.edu/Documents/in/Specific_leaf_area"},{"id":519928,"name":"Resprouters","url":"https://www.academia.edu/Documents/in/Resprouters"}],"urls":[{"id":43624078,"url":"http://link.springer.com/content/pdf/10.1007/s11258-011-9976-1.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="122236343"><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/122236343/Alleviation_of_Zn_toxicity_by_low_water_availability"><img alt="Research paper thumbnail of Alleviation of Zn toxicity by low water availability" class="work-thumbnail" src="https://attachments.academia-assets.com/116944693/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/122236343/Alleviation_of_Zn_toxicity_by_low_water_availability">Alleviation of Zn toxicity by low water availability</a></div><div class="wp-workCard_item"><span>Physiologia Plantarum</span><span>, 2013</span></div><div class="wp-workCard_item"><span class="js-work-more-abstract-truncated">Heavy metal contamination and drought are expected to increase in large areas worldwide. However,...</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">Heavy metal contamination and drought are expected to increase in large areas worldwide. However, their combined effect on plant performance has been scantly analyzed. This study examines the effect of Zn supply at different water availabilities on morpho‐physiological traits of Quercus suber L. in order to analyze the combined effects of both stresses. Seedlings were treated with four levels of zinc from 3 to 150 µM and exposed to low watering (LW) or high watering (HW) frequency in hydroponic culture, using a growth chamber. Under both watering regimes, Zn concentration in leaves and roots increased with Zn increment in nutrient solution. Nevertheless, at the highest Zn doses, Zn tissue concentrations were almost twice in HW than in LW seedlings. Functional traits as leaf photosynthetic rate and root hydraulic conductivity, and morphological traits as root length and root biomass decreased significantly in response to Zn supply. Auxin levels increased with Zn concentrations, sugge...</span></div><div class="wp-workCard_item wp-workCard--actions"><span class="work-strip-bookmark-button-container"></span><a id="67c7bf224b6469883a2471897b6f6899" class="wp-workCard--action" rel="nofollow" data-click-track="profile-work-strip-download" data-download="{&quot;attachment_id&quot;:116944693,&quot;asset_id&quot;:122236343,&quot;asset_type&quot;:&quot;Work&quot;,&quot;button_location&quot;:&quot;profile&quot;}" href="https://www.academia.edu/attachments/116944693/download_file?st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&st=MTczMjc1ODE4Myw4LjIyMi4yMDguMTQ2&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="122236343"><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="122236343"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 122236343; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=122236343]").text(description); $(".js-view-count[data-work-id=122236343]").attr('title', description).tooltip(); }); });</script></span></span><span><span class="percentile-widget hidden"><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 122236343; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-work-strip[data-work-id='122236343']"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></span><span><script>$(function() { new Works.PaperRankView({ workId: 122236343, 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: "67c7bf224b6469883a2471897b6f6899" } } $('.js-work-strip[data-work-id=122236343]').each(function() { if (!$(this).data('initialized')) { new WowProfile.WorkStripView({ el: this, workJSON: {"id":122236343,"title":"Alleviation of Zn toxicity by low water availability","translated_title":"","metadata":{"abstract":"Heavy metal contamination and drought are expected to increase in large areas worldwide. However, their combined effect on plant performance has been scantly analyzed. This study examines the effect of Zn supply at different water availabilities on morpho‐physiological traits of Quercus suber L. in order to analyze the combined effects of both stresses. Seedlings were treated with four levels of zinc from 3 to 150 µM and exposed to low watering (LW) or high watering (HW) frequency in hydroponic culture, using a growth chamber. Under both watering regimes, Zn concentration in leaves and roots increased with Zn increment in nutrient solution. Nevertheless, at the highest Zn doses, Zn tissue concentrations were almost twice in HW than in LW seedlings. Functional traits as leaf photosynthetic rate and root hydraulic conductivity, and morphological traits as root length and root biomass decreased significantly in response to Zn supply. Auxin levels increased with Zn concentrations, sugge...","publisher":"Wiley","publication_date":{"day":null,"month":null,"year":2013,"errors":{}},"publication_name":"Physiologia Plantarum"},"translated_abstract":"Heavy metal contamination and drought are expected to increase in large areas worldwide. However, their combined effect on plant performance has been scantly analyzed. This study examines the effect of Zn supply at different water availabilities on morpho‐physiological traits of Quercus suber L. in order to analyze the combined effects of both stresses. Seedlings were treated with four levels of zinc from 3 to 150 µM and exposed to low watering (LW) or high watering (HW) frequency in hydroponic culture, using a growth chamber. Under both watering regimes, Zn concentration in leaves and roots increased with Zn increment in nutrient solution. Nevertheless, at the highest Zn doses, Zn tissue concentrations were almost twice in HW than in LW seedlings. Functional traits as leaf photosynthetic rate and root hydraulic conductivity, and morphological traits as root length and root biomass decreased significantly in response to Zn supply. 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