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(PDF) Use of host plants by Troidini butterflies (Papilionidae, Papilioninae): constraints on host shift
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window.loswp.willEdgeCache = false; window.loswp.work = {"work":{"id":90440290,"created_at":"2022-11-10T03:28:43.005-08:00","from_world_paper_id":219867858,"updated_at":"2025-01-31T19:57:36.221-08:00","_data":{"publisher":"Oxford University Press (OUP)","ai_title_tag":"Troidini Butterflies and Aristolochia Host Use","grobid_abstract":"Molecular phylogenetic analyses were conducted to determine relationships and to investigate character evolution for the Troidini/ Aristolochia interaction, in an attempt to answer the following questions: (1) what is the present pattern of use of Aristolochia by these butterflies; (2) is the pattern we see today related to the phylogeny of plants or to their chemical composition; (3) can the geographical distribution of Aristolochia explain the host plant use observed today; and (4) how did the interaction between Troidini and Aristolochia evolve? Analyses of character optimization suggest that the current pattern of host plant use of these butterflies does not seem to be constrained by the phylogeny of their food plants, neither by the secondary chemicals in these plants nor by their geographical similarity. The current host plant use in these butterflies seems to be simply opportunistic, with species with a wider geographical range using more species of host plants than those with a more restricted distribution.","publication_date":"2007,,","publication_name":"Biological Journal of the Linnean Society","grobid_abstract_attachment_id":"94003433"},"document_type":"paper","pre_hit_view_count_baseline":null,"quality":"high","language":"en","title":"Use of host plants by Troidini butterflies (Papilionidae, Papilioninae): constraints on host shift","broadcastable":true,"draft":null,"has_indexable_attachment":true,"indexable":true}}["work"]; window.loswp.workCoauthors = [61812500]; window.loswp.locale = "en"; window.loswp.countryCode = "SG"; window.loswp.cwvAbTestBucket = ""; window.loswp.designVariant = "ds_vanilla"; window.loswp.fullPageMobileSutdModalVariant = "control"; window.loswp.useOptimizedScribd4genScript = false; window.loginModal = {}; window.loginModal.appleClientId = 'edu.academia.applesignon'; window.userInChina = "false";</script><script defer="" src="https://accounts.google.com/gsi/client"></script><div class="ds-loswp-container"><div class="ds-work-card--grid-container"><div class="ds-work-card--container js-loswp-work-card"><div class="ds-work-card--cover"><div class="ds-work-cover--wrapper"><div class="ds-work-cover--container"><button class="ds-work-cover--clickable js-swp-download-button" data-signup-modal="{"location":"swp-splash-paper-cover","attachmentId":94003433,"attachmentType":"pdf"}"><img alt="First page of “Use of host plants by Troidini butterflies (Papilionidae, Papilioninae): constraints on host shift”" class="ds-work-cover--cover-thumbnail" src="https://0.academia-photos.com/attachment_thumbnails/94003433/mini_magick20221110-1-19gzhss.png?1668079817" /><img alt="PDF Icon" class="ds-work-cover--file-icon" src="//a.academia-assets.com/images/single_work_splash/adobe_icon.svg" /><div class="ds-work-cover--hover-container"><span class="material-symbols-outlined" style="font-size: 20px" translate="no">download</span><p>Download Free PDF</p></div><div class="ds-work-cover--ribbon-container">Download Free PDF</div><div class="ds-work-cover--ribbon-triangle"></div></button></div></div></div><div class="ds-work-card--work-information"><h1 class="ds-work-card--work-title">Use of host plants by Troidini butterflies (Papilionidae, Papilioninae): constraints on host shift</h1><div class="ds-work-card--work-authors ds-work-card--detail"><a class="ds-work-card--author js-wsj-grid-card-author ds2-5-body-md ds2-5-body-link" data-author-id="61812500" href="https://independent.academia.edu/KarinaSilvabrand%C3%A3o"><img alt="Profile image of Karina Silva-brandão" class="ds-work-card--author-avatar" src="https://0.academia-photos.com/61812500/94404073/83348972/s65_karina.silva-brand_o.jpeg" />Karina Silva-brandão</a></div><div class="ds-work-card--detail"><p class="ds-work-card--detail ds2-5-body-sm">2007, Biological Journal of the Linnean Society</p><div class="ds-work-card--work-metadata"><div class="ds-work-card--work-metadata__stat"><span class="material-symbols-outlined" style="font-size: 20px" translate="no">visibility</span><p class="ds2-5-body-sm" id="work-metadata-view-count">…</p></div><div class="ds-work-card--work-metadata__stat"><span class="material-symbols-outlined" style="font-size: 20px" translate="no">description</span><p class="ds2-5-body-sm">15 pages</p></div><div class="ds-work-card--work-metadata__stat"><span class="material-symbols-outlined" style="font-size: 20px" translate="no">link</span><p class="ds2-5-body-sm">1 file</p></div></div><script>(async () => { const workId = 90440290; const worksViewsPath = "/v0/works/views?subdomain_param=api&work_ids%5B%5D=90440290"; const getWorkViews = async (workId) => { const response = await fetch(worksViewsPath); if (!response.ok) { throw new Error('Failed to load work views'); } const data = await response.json(); return data.views[workId]; }; // Get the view count for the work - we send this immediately rather than waiting for // the DOM to load, so it can be available as soon as possible (but without holding up // the backend or other resource requests, because it's a bit expensive and not critical). const viewCount = await getWorkViews(workId); const updateViewCount = (viewCount) => { try { const viewCountNumber = parseInt(viewCount, 10); if (viewCountNumber === 0) { // Remove the whole views element if there are zero views. document.getElementById('work-metadata-view-count')?.parentNode?.remove(); return; } const commaizedViewCount = viewCountNumber.toLocaleString(); const viewCountBody = document.getElementById('work-metadata-view-count'); if (!viewCountBody) { throw new Error('Failed to find work views element'); } viewCountBody.textContent = `${commaizedViewCount} views`; } catch (error) { // Remove the whole views element if there was some issue parsing. document.getElementById('work-metadata-view-count')?.parentNode?.remove(); throw new Error(`Failed to parse view count: ${viewCount}`, error); } }; // If the DOM is still loading, wait for it to be ready before updating the view count. if (document.readyState === "loading") { document.addEventListener('DOMContentLoaded', () => { updateViewCount(viewCount); }); // Otherwise, just update it immediately. } else { updateViewCount(viewCount); } })();</script></div><p class="ds-work-card--work-abstract ds-work-card--detail ds2-5-body-md">Molecular phylogenetic analyses were conducted to determine relationships and to investigate character evolution for the Troidini/ Aristolochia interaction, in an attempt to answer the following questions: (1) what is the present pattern of use of Aristolochia by these butterflies; (2) is the pattern we see today related to the phylogeny of plants or to their chemical composition; (3) can the geographical distribution of Aristolochia explain the host plant use observed today; and (4) how did the interaction between Troidini and Aristolochia evolve? Analyses of character optimization suggest that the current pattern of host plant use of these butterflies does not seem to be constrained by the phylogeny of their food plants, neither by the secondary chemicals in these plants nor by their geographical similarity. The current host plant use in these butterflies seems to be simply opportunistic, with species with a wider geographical range using more species of host plants than those with a more restricted distribution.</p><div class="ds-work-card--button-container"><button class="ds2-5-button js-swp-download-button" data-signup-modal="{"location":"continue-reading-button--work-card","attachmentId":94003433,"attachmentType":"pdf","workUrl":"https://www.academia.edu/90440290/Use_of_host_plants_by_Troidini_butterflies_Papilionidae_Papilioninae_constraints_on_host_shift"}">See full PDF</button><button class="ds2-5-button ds2-5-button--secondary js-swp-download-button" data-signup-modal="{"location":"download-pdf-button--work-card","attachmentId":94003433,"attachmentType":"pdf","workUrl":"https://www.academia.edu/90440290/Use_of_host_plants_by_Troidini_butterflies_Papilionidae_Papilioninae_constraints_on_host_shift"}"><span class="material-symbols-outlined" style="font-size: 20px" translate="no">download</span>Download PDF</button></div><div class="ds-signup-banner-trigger-container"><div class="ds-signup-banner-trigger ds-signup-banner-trigger-control"></div></div><div class="ds-signup-banner ds-signup-banner-control"><div id="ds-signup-banner-close-button"><button class="ds2-5-button ds2-5-button--secondary ds2-5-button--inverse"><span class="material-symbols-outlined" style="font-size: 20px" translate="no">close</span></button></div><div class="ds-signup-banner-ctas" data-impression-entity-id="90440290" data-impression-entity-type="2" data-impression-source="signup-banner"><img src="//a.academia-assets.com/images/academia-logo-capital-white.svg" /><h4 class="ds2-5-heading-serif-sm">Sign up for access to the world's latest research</h4><button class="ds2-5-button ds2-5-button--inverse ds2-5-button--full-width js-swp-download-button" data-signup-modal="{"location":"signup-banner"}">Sign up for free<span class="material-symbols-outlined" style="font-size: 20px" translate="no">arrow_forward</span></button></div><div class="ds-signup-banner-divider"></div><div class="ds-signup-banner-reasons"><div class="ds-signup-banner-reasons-item"><span class="material-symbols-outlined" style="font-size: 24px" translate="no">check</span><span>Get notified about relevant papers</span></div><div class="ds-signup-banner-reasons-item"><span class="material-symbols-outlined" style="font-size: 24px" translate="no">check</span><span>Save papers to use in your research</span></div><div class="ds-signup-banner-reasons-item"><span class="material-symbols-outlined" style="font-size: 24px" translate="no">check</span><span>Join the discussion with peers</span></div><div class="ds-signup-banner-reasons-item"><span class="material-symbols-outlined" style="font-size: 24px" translate="no">check</span><span>Track your impact</span></div></div></div><script>(() => { // Set up signup banner show/hide behavior: // 1. 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data-client_id="331998490334-rsn3chp12mbkiqhl6e7lu2q0mlbu0f1b" data-doc_id="94003433" data-landing_url="https://www.academia.edu/90440290/Use_of_host_plants_by_Troidini_butterflies_Papilionidae_Papilioninae_constraints_on_host_shift" data-login_uri="https://www.academia.edu/registrations/google_one_tap" data-moment_callback="onGoogleOneTapEvent" id="g_id_onload"></div><div class="ds-top-related-works--grid-container"><div class="ds-related-content--container ds-top-related-works--container"><h2 class="ds-related-content--heading">Related papers</h2><div class="ds-related-work--container js-wsj-grid-card" data-collection-position="0" data-entity-id="14257957" data-sort-order="default"><a class="ds-related-work--title js-wsj-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/14257957/Butterflies_and_Plants_A_Phylogenetic_Study">Butterflies and Plants: A Phylogenetic Study</a><div class="ds-related-work--metadata"><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="33224189" href="https://su-se.academia.edu/NiklasJanz">Niklas Janz</a></div><p class="ds-related-work--metadata ds2-5-body-xs">Evolution, 1998</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{"location":"wsj-grid-card-download-pdf-modal","work_title":"Butterflies and Plants: A Phylogenetic Study","attachmentId":44390133,"attachmentType":"pdf","work_url":"https://www.academia.edu/14257957/Butterflies_and_Plants_A_Phylogenetic_Study","alternativeTracking":true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-wsj-grid-card-view-pdf" href="https://www.academia.edu/14257957/Butterflies_and_Plants_A_Phylogenetic_Study"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" style="font-size: 18px" translate="no">chevron_right</span></a></div></div><div class="ds-related-work--container js-wsj-grid-card" data-collection-position="1" data-entity-id="4467740" data-sort-order="default"><a class="ds-related-work--title js-wsj-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/4467740/Congruence_and_Diversity_of_Butterfly_Host_Plant_Associations_at_Higher_Taxonomic_Levels">Congruence and Diversity of Butterfly-Host Plant Associations at Higher Taxonomic Levels</a><div class="ds-related-work--metadata"><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="26143741" href="https://provita.academia.edu/AdaS%C3%A1nchezMercado">Ada Sánchez-Mercado</a><span>, </span><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="16873772" href="https://ivic.academia.edu/AViloria">Angel L Viloria</a><span>, </span><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="5517949" href="https://unsw.academia.edu/JRFerrerParis">JR Ferrer Paris</a></div><p class="ds-related-work--abstract ds2-5-body-sm">We aggregated data on butterfly-host plant associations from existing sources in order to address the following questions:</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{"location":"wsj-grid-card-download-pdf-modal","work_title":"Congruence and Diversity of Butterfly-Host Plant Associations at Higher Taxonomic Levels","attachmentId":31875664,"attachmentType":"pdf","work_url":"https://www.academia.edu/4467740/Congruence_and_Diversity_of_Butterfly_Host_Plant_Associations_at_Higher_Taxonomic_Levels","alternativeTracking":true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-wsj-grid-card-view-pdf" href="https://www.academia.edu/4467740/Congruence_and_Diversity_of_Butterfly_Host_Plant_Associations_at_Higher_Taxonomic_Levels"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" style="font-size: 18px" translate="no">chevron_right</span></a></div></div><div class="ds-related-work--container js-wsj-grid-card" data-collection-position="2" data-entity-id="31947130" data-sort-order="default"><a class="ds-related-work--title js-wsj-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/31947130/Phylogenetic_relationships_of_butterflies_of_the_tribe_Acraeini_Lepidoptera_Nymphalidae_Heliconiinae_and_the_evolution_of_host_plant_use">Phylogenetic relationships of butterflies of the tribe Acraeini (Lepidoptera, Nymphalidae, Heliconiinae) and the evolution of host plant use</a><div class="ds-related-work--metadata"><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="61812500" href="https://independent.academia.edu/KarinaSilvabrand%C3%A3o">Karina Silva-brandão</a></div><p class="ds-related-work--metadata ds2-5-body-xs">Molecular Phylogenetics and Evolution, 2008</p><p class="ds-related-work--abstract ds2-5-body-sm">The tribe Acraeini (Nymphalidae, Heliconiinae) is believed to comprise between one and seven genera, with the greatest diversity in Africa. The genera Abananote, Altinote, and Actinote (s. str.) are distributed in the Neotropics, while the genera Acraea, Bematistes, Miyana, and Pardopsis have a Palaeotropical distribution. The monotypic Pardopsis use herbaceous plants of the family Violaceae, Acraea and Bematistes feed selectively on plants with cyanoglycosides belonging to many plant families, but preferentially to Passifloraceae, and all Neotropical species with a known life cycle feed on Asteraceae only. Here, a molecular phylogeny is proposed for the butterflies of the tribe Acraeini based on sequences of COI, EF-1a and wgl. Both Maximum Parsimony and Bayesian analyses showed that the tribe is monophyletic, once the genus Pardopsis is excluded, since it appears to be related to Argynnini. The existing genus Acraea is a paraphyletic group with regard to the South American genera, and the species of Acraea belonging to the group of ''Old World Actinote" is the sister group of the Neotropical genera. The monophyly of South American clade is strongly supported, suggesting a single colonization event of South America. The New World Actinote (s. str.) is monophyletic, and sister to Abananote + Altinote (polyphyletic). Based on the present results it was possible to propose a scenario for the evolution in host plant use within Acraeini, mainly concerning the use of Asteraceae by the South American genera.</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{"location":"wsj-grid-card-download-pdf-modal","work_title":"Phylogenetic relationships of butterflies of the tribe Acraeini (Lepidoptera, Nymphalidae, Heliconiinae) and the evolution of host plant use","attachmentId":52224983,"attachmentType":"pdf","work_url":"https://www.academia.edu/31947130/Phylogenetic_relationships_of_butterflies_of_the_tribe_Acraeini_Lepidoptera_Nymphalidae_Heliconiinae_and_the_evolution_of_host_plant_use","alternativeTracking":true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-wsj-grid-card-view-pdf" href="https://www.academia.edu/31947130/Phylogenetic_relationships_of_butterflies_of_the_tribe_Acraeini_Lepidoptera_Nymphalidae_Heliconiinae_and_the_evolution_of_host_plant_use"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" style="font-size: 18px" translate="no">chevron_right</span></a></div></div><div class="ds-related-work--container js-wsj-grid-card" data-collection-position="3" data-entity-id="14257964" data-sort-order="default"><a class="ds-related-work--title js-wsj-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/14257964/Host_plant_utilization_in_the_comma_butterfly_sources_of_variation_and_evolutionary_implications">Host plant utilization in the comma butterfly: sources of variation and evolutionary implications</a><div class="ds-related-work--metadata"><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="33224189" href="https://su-se.academia.edu/NiklasJanz">Niklas Janz</a></div><p class="ds-related-work--metadata ds2-5-body-xs">Oecologia, 1994</p><p class="ds-related-work--abstract ds2-5-body-sm">A major challenge in the study of insect-host plant interactions is to understand how the different aspects of offspring performance interact to produce a preference hierarchy in the ovipositing females. In this paper we investigate host plant preference of the polyphagous butterfly Polygonia c-album (Lepidoptera: Nymphalidae) and compare it with several aspects of the life history of its offspring (growth rate, development time, adult size, survival and female fecundity). Females and offspring were tested on four naturally used host plants (Urtica dioica, Ulmus glabra, Salix caprea, and Betula pubescens). There was substantial individual variation in host plant preference, including reversals in rank order, but the differences were largely confined to differences in the ranking of Urtica dioica and S. caprea. Different aspects of performance on these two plants gave conflicting and complementary results, implying a trade-off between short development time on U dioica, and larger size and higher fecundity on S. caprea. As all performance components showed low individual variation the large variation in host plant preference was interpreted as due to alternative oviposition strategies on the basis of similar 'performance hierarchies'. This indicates that the larval performance component of host-plant utilization may be more conservative to evolutionary change than the preference of ovipositing females. Possible macro-evolutionary implications of this are discussed.</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{"location":"wsj-grid-card-download-pdf-modal","work_title":"Host plant utilization in the comma butterfly: sources of variation and evolutionary implications","attachmentId":44390127,"attachmentType":"pdf","work_url":"https://www.academia.edu/14257964/Host_plant_utilization_in_the_comma_butterfly_sources_of_variation_and_evolutionary_implications","alternativeTracking":true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-wsj-grid-card-view-pdf" href="https://www.academia.edu/14257964/Host_plant_utilization_in_the_comma_butterfly_sources_of_variation_and_evolutionary_implications"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" style="font-size: 18px" translate="no">chevron_right</span></a></div></div><div class="ds-related-work--container js-wsj-grid-card" data-collection-position="4" data-entity-id="117170652" data-sort-order="default"><a class="ds-related-work--title js-wsj-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/117170652/Colonization_and_strategic_stratification_of_butterfly_Pachliopta_aristolochiae_Lepidoptera_Papilionidae_and_its_relationship_with_the_host_plant_Aristolochia_indica_Piperales_Aristolochiaceae_">Colonization and strategic stratification of butterfly Pachliopta aristolochiae (Lepidoptera: Papilionidae) and its relationship with the host plant Aristolochia indica (Piperales: Aristolochiaceae)</a><div class="ds-related-work--metadata"><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="12167906" href="https://monash.academia.edu/upamaaich">upama aich</a></div><p class="ds-related-work--metadata ds2-5-body-xs">Journal of Biodiversity Conservation and Bioresource Management, 2018</p><p class="ds-related-work--abstract ds2-5-body-sm">Colonization experiment for the butterfly Pachliopta aristolochiae (Fabricius, 1775) (Lepidoptera: Papilionidae) was carried out in the Zoological Garden, Curzon Hall, University of Dhaka and Bhawal national park, Gazipur from 2010 to 2011, and butterfly host-plants and nectar-plants were identified for this purpose. The field observations and identification confirmed that the host plant species Aristolochia indica is a creeper plant. A. indica was cultivated for the butterfly oviposition behaviour and to continue developmental stages. The oviposition behaviour of gravid female, hatching, feeding and moulting behaviour of the four larval instars, and pupation behaviour of A. indica were recorded. Both laboratory and field observations revealed that while there was availability of food, 1 st and 2 nd instar larvae preferred tender leaves, whereas the 3 rd and 4 th instar larvae fed both on young and mature leaves. However, mature larvae were also observed to feed on the stems, flower and fruits of the host-plant in absence of suitable succulent leaves. The feeding time was recorded for each larval instars and it was relatively low for 1 st and 2 nd instar larvae, remarkably higher in 3 rd instar larvae and highest in the case of ultimate and penultimate larval instars. The egg, larval and pupal mortalities were counted during the study period. Their survivability rate was 80% or more. This result was found to stand good for a successful colonization process of the butterfly P. aristolochiae.</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{"location":"wsj-grid-card-download-pdf-modal","work_title":"Colonization and strategic stratification of butterfly Pachliopta aristolochiae (Lepidoptera: Papilionidae) and its relationship with the host plant Aristolochia indica (Piperales: Aristolochiaceae)","attachmentId":113098923,"attachmentType":"pdf","work_url":"https://www.academia.edu/117170652/Colonization_and_strategic_stratification_of_butterfly_Pachliopta_aristolochiae_Lepidoptera_Papilionidae_and_its_relationship_with_the_host_plant_Aristolochia_indica_Piperales_Aristolochiaceae_","alternativeTracking":true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-wsj-grid-card-view-pdf" href="https://www.academia.edu/117170652/Colonization_and_strategic_stratification_of_butterfly_Pachliopta_aristolochiae_Lepidoptera_Papilionidae_and_its_relationship_with_the_host_plant_Aristolochia_indica_Piperales_Aristolochiaceae_"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" style="font-size: 18px" translate="no">chevron_right</span></a></div></div><div class="ds-related-work--container js-wsj-grid-card" data-collection-position="5" data-entity-id="109013640" data-sort-order="default"><a class="ds-related-work--title js-wsj-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/109013640/Dynamics_of_host_plant_use_and_species_diversity_in_Polygonia_butterflies_Nymphalidae_">Dynamics of host plant use and species diversity in Polygonia butterflies (Nymphalidae)</a><div class="ds-related-work--metadata"><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="291752040" href="https://independent.academia.edu/NilsTarrasWahlberg">Nils Tarras-Wahlberg</a></div><p class="ds-related-work--metadata ds2-5-body-xs">Journal of Evolutionary Biology, 2006</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{"location":"wsj-grid-card-download-pdf-modal","work_title":"Dynamics of host plant use and species diversity in Polygonia butterflies (Nymphalidae)","attachmentId":107257128,"attachmentType":"pdf","work_url":"https://www.academia.edu/109013640/Dynamics_of_host_plant_use_and_species_diversity_in_Polygonia_butterflies_Nymphalidae_","alternativeTracking":true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-wsj-grid-card-view-pdf" href="https://www.academia.edu/109013640/Dynamics_of_host_plant_use_and_species_diversity_in_Polygonia_butterflies_Nymphalidae_"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" style="font-size: 18px" translate="no">chevron_right</span></a></div></div><div class="ds-related-work--container js-wsj-grid-card" data-collection-position="6" data-entity-id="33819369" data-sort-order="default"><a class="ds-related-work--title js-wsj-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/33819369/Vestiges_of_an_ancestral_host_plant_preference_and_performance_in_the_butterfly_Polygonia_faunus_and_its_sister_species_P_c_album">Vestiges of an ancestral host plant: preference and performance in the butterfly Polygonia faunus and its sister species P. c-album</a><div class="ds-related-work--metadata"><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="33224189" href="https://su-se.academia.edu/NiklasJanz">Niklas Janz</a><span>, </span><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="33341271" href="https://independent.academia.edu/MariaDeLaPazCeloriomancera">Maria de La Paz Celorio-Mancera</a><span>, </span><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="9804404" href="https://independent.academia.edu/FelixSperling">Felix Sperling</a></div><p class="ds-related-work--metadata ds2-5-body-xs">Ecological Entomology, 2015</p><p class="ds-related-work--abstract ds2-5-body-sm">1. In the study of the evolution of insect-host plant interactions, important information is provided by host ranking correspondences among female preference, offspring preference, and offspring performance. Here, we contrast such patterns in two polyphagous sister species in the butterfly family Nymphalidae, the Nearctic Polygonia faunus, and the Palearctic P. c-album.</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{"location":"wsj-grid-card-download-pdf-modal","work_title":"Vestiges of an ancestral host plant: preference and performance in the butterfly Polygonia faunus and its sister species P. c-album","attachmentId":53803706,"attachmentType":"pdf","work_url":"https://www.academia.edu/33819369/Vestiges_of_an_ancestral_host_plant_preference_and_performance_in_the_butterfly_Polygonia_faunus_and_its_sister_species_P_c_album","alternativeTracking":true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-wsj-grid-card-view-pdf" href="https://www.academia.edu/33819369/Vestiges_of_an_ancestral_host_plant_preference_and_performance_in_the_butterfly_Polygonia_faunus_and_its_sister_species_P_c_album"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" style="font-size: 18px" translate="no">chevron_right</span></a></div></div><div class="ds-related-work--container js-wsj-grid-card" data-collection-position="7" data-entity-id="8267426" data-sort-order="default"><a class="ds-related-work--title js-wsj-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/8267426/Host_plant_use_by_the_Heath_fritillary_butterfly_Melitaea_athalia_plant_habitat_species_and_chemistry">Host plant use by the Heath fritillary butterfly, Melitaea athalia : plant habitat, species and chemistry</a><div class="ds-related-work--metadata"><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="16375334" href="https://independent.academia.edu/JoannekeReudlerTalsma">Joanneke Reudler Talsma</a></div><p class="ds-related-work--metadata ds2-5-body-xs">Arthropod-plant Interactions, 2008</p><p class="ds-related-work--abstract ds2-5-body-sm">We present a study of habitat use, oviposition plant choice, and food plant suitability for the checkerspot butterfly Melitaea athalia Rottemburg (Lepidoptera: Nymphalidae) in Å land, Finland. We found that in Å land, unlike in the mainland of Finland and many parts of its range, M. athalia flies mainly in open meadows. When offered an array of plants in a large (32 9 26 m) field cage, they predominately oviposited upon Veronica chamaedrys L., V. spicata L. and Plantago lanceolata L. (Plantaginaceae), which grow in open meadows. The relative abundance of the butterfly in Å land, and its habitat and host plant use there, may reflect local adaptation to land use practices and geology that maintain clusters of small open meadows with little successional change. At the scale of a plant patch, preferred species were used as frequently in mixed species patches as in mono-specific patches, and more oviposition occurred in open than in grassy patches. All of the host plants used by M. athalia are defended by iridoid glycosides (IGs). However, oviposition choice among species and among individual plants within species was largely independent of IG concentration. This contrast with the more discerning congener, M. cinxia, supports the idea that host discrimination decreases with increasing host range. Finally, although the adult butterflies chose specific plant species for oviposition, as larvae they performed well on twelve out of thirteen species of plants, including both known hosts and related novel plants that occur in Å land, indicating a much wider range of larval food plant species than adult oviposition species.</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{"location":"wsj-grid-card-download-pdf-modal","work_title":"Host plant use by the Heath fritillary butterfly, Melitaea athalia : plant habitat, species and chemistry","attachmentId":48161343,"attachmentType":"pdf","work_url":"https://www.academia.edu/8267426/Host_plant_use_by_the_Heath_fritillary_butterfly_Melitaea_athalia_plant_habitat_species_and_chemistry","alternativeTracking":true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-wsj-grid-card-view-pdf" href="https://www.academia.edu/8267426/Host_plant_use_by_the_Heath_fritillary_butterfly_Melitaea_athalia_plant_habitat_species_and_chemistry"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" style="font-size: 18px" translate="no">chevron_right</span></a></div></div><div class="ds-related-work--container js-wsj-grid-card" data-collection-position="8" data-entity-id="14257956" data-sort-order="default"><a class="ds-related-work--title js-wsj-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/14257956/HOST_PLANT_UTILIZATION_HOST_RANGE_OSCILLATIONS_AND_DIVERSIFICATION_IN_NYMPHALID_BUTTERFLIES_A_PHYLOGENETIC_INVESTIGATION">HOST PLANT UTILIZATION, HOST RANGE OSCILLATIONS AND DIVERSIFICATION IN NYMPHALID BUTTERFLIES: A PHYLOGENETIC INVESTIGATION</a><div class="ds-related-work--metadata"><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="33224189" href="https://su-se.academia.edu/NiklasJanz">Niklas Janz</a></div><p class="ds-related-work--metadata ds2-5-body-xs">Evolution, 2014</p><p class="ds-related-work--abstract ds2-5-body-sm">in phytophagous insects is a good model for investigating this claim. We explore the use of angiosperm plants as hosts for nymphalid butterflies, and in particular the evidence for past oscillations in host range and how they are linked to host shifts and to diversification. At the level of orders of plants, a relatively simple pattern of host use and host shifts emerges, despite the 100 million years of history of the family Nymphalidae. We review the evidence that these host shifts and the accompanying diversifications were associated with transient polyphagous stages, as suggested by the "oscillation hypothesis." In addition, we investigate all currently polyphagous nymphalid species and demonstrate that the state of polyphagy is rare, has a weak phylogenetic signal, and a very apical distribution in the phylogeny; we argue that these are signs of its transient nature. We contrast our results with data from the bark beetles Dendroctonus, in which a more specialized host use is instead the apical state.</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{"location":"wsj-grid-card-download-pdf-modal","work_title":"HOST PLANT UTILIZATION, HOST RANGE OSCILLATIONS AND DIVERSIFICATION IN NYMPHALID BUTTERFLIES: A PHYLOGENETIC INVESTIGATION","attachmentId":44390130,"attachmentType":"pdf","work_url":"https://www.academia.edu/14257956/HOST_PLANT_UTILIZATION_HOST_RANGE_OSCILLATIONS_AND_DIVERSIFICATION_IN_NYMPHALID_BUTTERFLIES_A_PHYLOGENETIC_INVESTIGATION","alternativeTracking":true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-wsj-grid-card-view-pdf" href="https://www.academia.edu/14257956/HOST_PLANT_UTILIZATION_HOST_RANGE_OSCILLATIONS_AND_DIVERSIFICATION_IN_NYMPHALID_BUTTERFLIES_A_PHYLOGENETIC_INVESTIGATION"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" style="font-size: 18px" translate="no">chevron_right</span></a></div></div><div class="ds-related-work--container js-wsj-grid-card" data-collection-position="9" data-entity-id="14257959" data-sort-order="default"><a class="ds-related-work--title js-wsj-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/14257959/Butterfly_host_plant_range_an_example_of_plasticity_as_a_promoter_of_speciation">Butterfly host plant range: an example of plasticity as a promoter of speciation?</a><div class="ds-related-work--metadata"><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="33224189" href="https://su-se.academia.edu/NiklasJanz">Niklas Janz</a></div><p class="ds-related-work--metadata ds2-5-body-xs">Evolutionary Ecology, 2009</p><p class="ds-related-work--abstract ds2-5-body-sm">Mary Jane West-Eberhard has suggested that plasticity may be of primary importance in promoting evolutionary innovation and diversification. Here, we explore the possibility that the diversification of phytophagous insects may have occurred through such a process, using examples from nymphalid butterflies. We discuss the ways in which host plant range is connected to plasticity and present our interpretation of how West-Eberhard's scenario may result in speciation driven by plasticity in host utilization. We then review some of the evidence that diversity of plant utilization has driven the diversification of phytophagous insects and finally discuss whether this suggests a role for plasticity-driven speciation. We find a close conceptual connection between our theory that the diversification of phytophagous insects has been driven by oscillations in host range, and our personal interpretation of the most efficient way in which West-Eberhard's theory could account for plasticity-driven speciation. A major unresolved issue is the extent to which a wide host plant range is due to adaptive plasticity with dedicated modules of genetic machinery for utilizing different plants.</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{"location":"wsj-grid-card-download-pdf-modal","work_title":"Butterfly host plant range: an example of plasticity as a promoter of speciation?","attachmentId":44390099,"attachmentType":"pdf","work_url":"https://www.academia.edu/14257959/Butterfly_host_plant_range_an_example_of_plasticity_as_a_promoter_of_speciation","alternativeTracking":true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-wsj-grid-card-view-pdf" href="https://www.academia.edu/14257959/Butterfly_host_plant_range_an_example_of_plasticity_as_a_promoter_of_speciation"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" style="font-size: 18px" translate="no">chevron_right</span></a></div></div></div></div><div class="ds-sticky-ctas--wrapper js-loswp-sticky-ctas hidden"><div class="ds-sticky-ctas--grid-container"><div class="ds-sticky-ctas--container"><button class="ds2-5-button js-swp-download-button" data-signup-modal="{"location":"continue-reading-button--sticky-ctas","attachmentId":94003433,"attachmentType":"pdf","workUrl":null}">See full PDF</button><button class="ds2-5-button ds2-5-button--secondary js-swp-download-button" data-signup-modal="{"location":"download-pdf-button--sticky-ctas","attachmentId":94003433,"attachmentType":"pdf","workUrl":null}"><span class="material-symbols-outlined" style="font-size: 20px" translate="no">download</span>Download PDF</button></div></div></div><div class="ds-below-fold--grid-container"><div class="ds-work--container js-loswp-embedded-document"><div class="attachment_preview" data-attachment="Attachment_94003433" style="display: none"><div class="js-scribd-document-container"><div class="scribd--document-loading js-scribd-document-loader" style="display: block;"><img alt="Loading..." src="//a.academia-assets.com/images/loaders/paper-load.gif" /><p>Loading Preview</p></div></div><div style="text-align: center;"><div class="scribd--no-preview-alert js-preview-unavailable"><p>Sorry, preview is currently unavailable. You can download the paper by clicking the button above.</p></div></div></div></div><div class="ds-sidebar--container js-work-sidebar"><div class="ds-related-content--container"><h2 class="ds-related-content--heading">Related papers</h2><div class="ds-related-work--container js-related-work-sidebar-card" data-collection-position="0" data-entity-id="110316249" data-sort-order="default"><a class="ds-related-work--title js-related-work-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/110316249/A_global_phylogeny_of_butterflies_reveals_their_evolutionary_history_ancestral_hosts_and_biogeographic_origins">A global phylogeny of butterflies reveals their evolutionary history, ancestral hosts and biogeographic origins</a><div class="ds-related-work--metadata"><a class="js-related-work-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="24283448" href="https://unmsm.academia.edu/GerardoLamas">Gerardo Lamas</a></div><p class="ds-related-work--metadata 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