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The phylogenetic relationships of the charismatic poster frogs, Phyllomedusinae (Anura, Hylidae)

Identifieur interne : 001944 ( Istex/Corpus ); précédent : 001943; suivant : 001945

The phylogenetic relationships of the charismatic poster frogs, Phyllomedusinae (Anura, Hylidae)

Auteurs : Julián Faivovich ; Célio F. B. Haddad ; Délio Baêta ; Karl-Heinz Jungfer ; Guilherme F. R. Álvares ; Reuber A. Brandão ; Christopher Sheil ; Lucas S. Barrientos ; César L. Barrio-Amor S ; Carlos A. G. Cruz ; Ward C. Wheeler

Source :

RBID : ISTEX:34145248ACB9D3BA25FC53C498F1F5BD3A717426

English descriptors

Abstract

The leaf or monkey frogs of the hylid subfamily Phyllomedusinae are a unique group of charismatic anurans. We present a molecular phylogenetic analysis that includes 45 of the 60 species of phyllomedusines using up to 12 genes and intervening tRNAs. The aims were to gain a better understanding of the phylogenetic position of Phrynomedusa, test the monophyly and explore the relationships among several putative lineages (Hylomantis, the H. buckleyi Group, Phasmahyla, the four species groups of Phyllomedusa, and the species of Phyllomedusa that remain unassigned to any group), and to examine the implications of our phylogeny for the evolution of several characters in phyllomedusines. The analyses resulted in a well‐supported phylogenetic hypothesis that provides a historical framework for a discussion of the evolution of characters associated with reproductive biology, gliding behaviour, the physiology of waterproofing, and bioactive peptides. Implications include an earlier origin for eggless capsules than for leaf‐folding behaviour during amplexus, two independent origins of gliding, and an earlier origin of reduction in evaporative water loss than uricotelism, which is a result that originally was predicted on the basis of physiology alone. Furthermore, our results support the prediction that bioactive peptides from different peptide families are to be expected in all species of Phyllomedusinae. Hylomantis (as recently redefined) is shown to be paraphyletic and the synonymy of Agalychnis is revised to remedy this problem by including both Hylomantis and Pachymedusa.  © The Willi Hennig Society 2009.

Url:
DOI: 10.1111/j.1096-0031.2009.00287.x

Links to Exploration step

ISTEX:34145248ACB9D3BA25FC53C498F1F5BD3A717426

Le document en format XML

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<name sortKey="Jungfer, Karl Einz" sort="Jungfer, Karl Einz" uniqKey="Jungfer K" first="Karl-Heinz" last="Jungfer">Karl-Heinz Jungfer</name>
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<name sortKey="Sheil, Christopher" sort="Sheil, Christopher" uniqKey="Sheil C" first="Christopher" last="Sheil">Christopher Sheil</name>
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<name sortKey="Barrientos, Lucas S" sort="Barrientos, Lucas S" uniqKey="Barrientos L" first="Lucas S." last="Barrientos">Lucas S. Barrientos</name>
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<name sortKey="Barrio Mor S, Cesar L" sort="Barrio Mor S, Cesar L" uniqKey="Barrio Mor S C" first="César L." last="Barrio-Amor S">César L. Barrio-Amor S</name>
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<name sortKey="Cruz, Carlos A G" sort="Cruz, Carlos A G" uniqKey="Cruz C" first="Carlos A. G." last="Cruz">Carlos A. G. Cruz</name>
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<name sortKey="Sheil, Christopher" sort="Sheil, Christopher" uniqKey="Sheil C" first="Christopher" last="Sheil">Christopher Sheil</name>
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<name sortKey="Barrientos, Lucas S" sort="Barrientos, Lucas S" uniqKey="Barrientos L" first="Lucas S." last="Barrientos">Lucas S. Barrientos</name>
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<mods:affiliation>Instituto de Ciencias Naturales, Universidad Nacional de Colombia, calle 53, 2° edificio Bogotá, Colombia</mods:affiliation>
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<name sortKey="Barrio Mor S, Cesar L" sort="Barrio Mor S, Cesar L" uniqKey="Barrio Mor S C" first="César L." last="Barrio-Amor S">César L. Barrio-Amor S</name>
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<mods:affiliation>Fundación AndígenA, Apartado Postal 210, 5101‐A Mérida, Venezuela</mods:affiliation>
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<mods:affiliation>Setor de Herpetologia, Departamento de Vertebrados, Museu Nacional, Universidade Federal do Rio de Janeiro, Quinta da Boa Vista, s/n°, São Cristóvão, CEP 20940‐040, Rio de Janeiro, RJ, Brazil</mods:affiliation>
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<name sortKey="Wheeler, Ward C" sort="Wheeler, Ward C" uniqKey="Wheeler W" first="Ward C." last="Wheeler">Ward C. Wheeler</name>
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<mods:affiliation>Division of Invertebrate Zoology, American Museum of Natural History, Central Park West at 79th St, New York, NY 10024, USA</mods:affiliation>
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<keywords scheme="KwdEn" xml:lang="en">
<term>Agalychnis</term>
<term>Agalychnis annae</term>
<term>Agalychnis callidryas</term>
<term>Alagoas</term>
<term>Alamillo</term>
<term>Alvares</term>
<term>American museum</term>
<term>Amnh</term>
<term>Amphibia</term>
<term>Amphibian</term>
<term>Annae</term>
<term>Antimicrobial</term>
<term>Anura</term>
<term>Anuran</term>
<term>Araguari</term>
<term>Aspera</term>
<term>Aspera group</term>
<term>Atelopoides</term>
<term>Aust</term>
<term>Ayeaye</term>
<term>Azurea</term>
<term>Bahiana</term>
<term>Bayesian</term>
<term>Behaviour</term>
<term>Bicolor</term>
<term>Bioactive</term>
<term>Bioactive peptides</term>
<term>Biochem</term>
<term>Biol</term>
<term>Bladder</term>
<term>Bokermann</term>
<term>Boliviana</term>
<term>Boulenger</term>
<term>Bra</term>
<term>Brandao</term>
<term>Brasil</term>
<term>Bremer</term>
<term>Buckleyi</term>
<term>Buckleyi group</term>
<term>Burmeisteri</term>
<term>Burmeisteri group</term>
<term>Cadle</term>
<term>Caerulea</term>
<term>Calcarifer</term>
<term>Caldas</term>
<term>Caldas novas</term>
<term>Callidryas</term>
<term>Callidryas group</term>
<term>Camba</term>
<term>Cannatella</term>
<term>Caramaschi</term>
<term>Cement gland</term>
<term>Centralis</term>
<term>Cfbh</term>
<term>Cfbht</term>
<term>Chapada</term>
<term>Character states</term>
<term>Chunb</term>
<term>Clade</term>
<term>Cladistics</term>
<term>Cochranae</term>
<term>Comp</term>
<term>Congonhas</term>
<term>Costa</term>
<term>Costa rica</term>
<term>Craspedopus</term>
<term>Cruziohyla</term>
<term>Cruziohyla calcarifer</term>
<term>Cyclorana</term>
<term>Cytochrome</term>
<term>Dacnicolor</term>
<term>Danieli</term>
<term>Dataset</term>
<term>Distincta</term>
<term>Duellman</term>
<term>Duellmani</term>
<term>Ecuador</term>
<term>Eggless</term>
<term>Eggless capsules</term>
<term>Erspamer</term>
<term>Evaporative water loss</term>
<term>Exemplar</term>
<term>Faivovich</term>
<term>Falconieri erspamer</term>
<term>Farris</term>
<term>Former phyllomedusa buckleyi group</term>
<term>Frog</term>
<term>Funkhouser</term>
<term>Genbank</term>
<term>Genus</term>
<term>Gerais</term>
<term>Goias</term>
<term>Golobo</term>
<term>Granulosa</term>
<term>Grosso</term>
<term>Guimaraes</term>
<term>Guttata</term>
<term>Guyana</term>
<term>Haddad</term>
<term>Hennig</term>
<term>Herpetol</term>
<term>Hist</term>
<term>Homology</term>
<term>Hoogmoed</term>
<term>Hulli</term>
<term>Hylid</term>
<term>Hylidae</term>
<term>Hylinae</term>
<term>Hylomantis</term>
<term>Hypochondrialis</term>
<term>Hypochondrialis group</term>
<term>Iheringii</term>
<term>Independent origins</term>
<term>Internal relationships</term>
<term>Iris</term>
<term>Itacolomi</term>
<term>Jackknife</term>
<term>Jandaia</term>
<term>Janeiro</term>
<term>Jungfer</term>
<term>Junior synonym</term>
<term>Larva</term>
<term>Larval</term>
<term>Larval development</term>
<term>Lemur</term>
<term>Limon</term>
<term>Lipid</term>
<term>Litodryas</term>
<term>Litoria</term>
<term>Lutz</term>
<term>Marginata</term>
<term>Mato</term>
<term>Mato grosso</term>
<term>Mcclanahan</term>
<term>Megacephala</term>
<term>Mina</term>
<term>Minas gerais</term>
<term>Mitochondrial</term>
<term>Mnrj</term>
<term>Moen</term>
<term>Monophyletic</term>
<term>Monophyly</term>
<term>Moreletii</term>
<term>Nacional</term>
<term>Natural history</term>
<term>Neildi</term>
<term>Neotropical</term>
<term>Node</term>
<term>Nordestina</term>
<term>Nova</term>
<term>Nuclear genes</term>
<term>Optimal hypothesis</term>
<term>Optimization</term>
<term>Oral disc</term>
<term>Oreades</term>
<term>Other species</term>
<term>Outgroup</term>
<term>Oviposition</term>
<term>Pachymedusa</term>
<term>Pachymedusa dacnicolor</term>
<term>Palliata</term>
<term>Palpebral</term>
<term>Papua</term>
<term>Paraphyletic</term>
<term>Parsimonious trees</term>
<term>Parsimony</term>
<term>Paulo</term>
<term>Pelodryadinae</term>
<term>Pelodryadines</term>
<term>Peptide</term>
<term>Peptide families</term>
<term>Perdizes</term>
<term>Perinesos</term>
<term>Perinesos group</term>
<term>Pers</term>
<term>Phasmahyla</term>
<term>Phrynomedusa</term>
<term>Phrynomedusa marginata</term>
<term>Phyllomedusa</term>
<term>Phyllomedusa ayeaye</term>
<term>Phyllomedusa azurea</term>
<term>Phyllomedusa bicolor</term>
<term>Phyllomedusa centralis</term>
<term>Phyllomedusa oreades</term>
<term>Phyllomedusa sauvagii</term>
<term>Phyllomedusa tomopterna</term>
<term>Phyllomedusinae</term>
<term>Phyllomedusine</term>
<term>Phyllomedusines</term>
<term>Phylogenetic</term>
<term>Phylogenetic analysis</term>
<term>Phylogenetic hypothesis</term>
<term>Phylogenetic relationships</term>
<term>Physiol</term>
<term>Pimenta</term>
<term>Pombal</term>
<term>Precursor</term>
<term>Prov</term>
<term>Putative</term>
<term>Pyburn</term>
<term>Reproductive</term>
<term>Reproductive biology</term>
<term>Reticulated</term>
<term>Rica</term>
<term>Rito</term>
<term>Rito santo</term>
<term>Riva</term>
<term>Rohdei</term>
<term>Saltator</term>
<term>Sama</term>
<term>Santa teresa</term>
<term>Sauvagii</term>
<term>Sequence divergence</term>
<term>Serra</term>
<term>Several species</term>
<term>Sheil</term>
<term>Shoemaker</term>
<term>Silva</term>
<term>Sister group</term>
<term>Sister taxon</term>
<term>Smns</term>
<term>Species group</term>
<term>Species groups</term>
<term>Spurrelli</term>
<term>Subfamily</term>
<term>Synapomorphies</term>
<term>Synapomorphy</term>
<term>Tadpole</term>
<term>Tarsius</term>
<term>Tarsius group</term>
<term>Taxon</term>
<term>Taxonomic</term>
<term>Taxonomic distribution</term>
<term>Tetraploidea</term>
<term>Tomopterna</term>
<term>Topology</term>
<term>Trinitatis</term>
<term>Type locality</term>
<term>Ubatuba</term>
<term>Unassigned</term>
<term>Unavailable species</term>
<term>Univ</term>
<term>Universidade</term>
<term>Urate</term>
<term>Uricotelism</term>
<term>Vaillanti</term>
<term>Water loss</term>
<term>Webbing</term>
<term>Weygoldt</term>
<term>Wiens</term>
<term>Willi</term>
<term>Willi hennig society</term>
<term>Zool</term>
<term>Zootaxa</term>
</keywords>
<keywords scheme="Teeft" xml:lang="en">
<term>Agalychnis</term>
<term>Agalychnis annae</term>
<term>Agalychnis callidryas</term>
<term>Alagoas</term>
<term>Alamillo</term>
<term>Alvares</term>
<term>American museum</term>
<term>Amnh</term>
<term>Amphibia</term>
<term>Amphibian</term>
<term>Annae</term>
<term>Antimicrobial</term>
<term>Anura</term>
<term>Anuran</term>
<term>Araguari</term>
<term>Aspera</term>
<term>Aspera group</term>
<term>Atelopoides</term>
<term>Aust</term>
<term>Ayeaye</term>
<term>Azurea</term>
<term>Bahiana</term>
<term>Bayesian</term>
<term>Behaviour</term>
<term>Bicolor</term>
<term>Bioactive</term>
<term>Bioactive peptides</term>
<term>Biochem</term>
<term>Biol</term>
<term>Bladder</term>
<term>Bokermann</term>
<term>Boliviana</term>
<term>Boulenger</term>
<term>Bra</term>
<term>Brandao</term>
<term>Brasil</term>
<term>Bremer</term>
<term>Buckleyi</term>
<term>Buckleyi group</term>
<term>Burmeisteri</term>
<term>Burmeisteri group</term>
<term>Cadle</term>
<term>Caerulea</term>
<term>Calcarifer</term>
<term>Caldas</term>
<term>Caldas novas</term>
<term>Callidryas</term>
<term>Callidryas group</term>
<term>Camba</term>
<term>Cannatella</term>
<term>Caramaschi</term>
<term>Cement gland</term>
<term>Centralis</term>
<term>Cfbh</term>
<term>Cfbht</term>
<term>Chapada</term>
<term>Character states</term>
<term>Chunb</term>
<term>Clade</term>
<term>Cladistics</term>
<term>Cochranae</term>
<term>Comp</term>
<term>Congonhas</term>
<term>Costa</term>
<term>Costa rica</term>
<term>Craspedopus</term>
<term>Cruziohyla</term>
<term>Cruziohyla calcarifer</term>
<term>Cyclorana</term>
<term>Cytochrome</term>
<term>Dacnicolor</term>
<term>Danieli</term>
<term>Dataset</term>
<term>Distincta</term>
<term>Duellman</term>
<term>Duellmani</term>
<term>Ecuador</term>
<term>Eggless</term>
<term>Eggless capsules</term>
<term>Erspamer</term>
<term>Evaporative water loss</term>
<term>Exemplar</term>
<term>Faivovich</term>
<term>Falconieri erspamer</term>
<term>Farris</term>
<term>Former phyllomedusa buckleyi group</term>
<term>Frog</term>
<term>Funkhouser</term>
<term>Genbank</term>
<term>Genus</term>
<term>Gerais</term>
<term>Goias</term>
<term>Golobo</term>
<term>Granulosa</term>
<term>Grosso</term>
<term>Guimaraes</term>
<term>Guttata</term>
<term>Guyana</term>
<term>Haddad</term>
<term>Hennig</term>
<term>Herpetol</term>
<term>Hist</term>
<term>Homology</term>
<term>Hoogmoed</term>
<term>Hulli</term>
<term>Hylid</term>
<term>Hylidae</term>
<term>Hylinae</term>
<term>Hylomantis</term>
<term>Hypochondrialis</term>
<term>Hypochondrialis group</term>
<term>Iheringii</term>
<term>Independent origins</term>
<term>Internal relationships</term>
<term>Iris</term>
<term>Itacolomi</term>
<term>Jackknife</term>
<term>Jandaia</term>
<term>Janeiro</term>
<term>Jungfer</term>
<term>Junior synonym</term>
<term>Larva</term>
<term>Larval</term>
<term>Larval development</term>
<term>Lemur</term>
<term>Limon</term>
<term>Lipid</term>
<term>Litodryas</term>
<term>Litoria</term>
<term>Lutz</term>
<term>Marginata</term>
<term>Mato</term>
<term>Mato grosso</term>
<term>Mcclanahan</term>
<term>Megacephala</term>
<term>Mina</term>
<term>Minas gerais</term>
<term>Mitochondrial</term>
<term>Mnrj</term>
<term>Moen</term>
<term>Monophyletic</term>
<term>Monophyly</term>
<term>Moreletii</term>
<term>Nacional</term>
<term>Natural history</term>
<term>Neildi</term>
<term>Neotropical</term>
<term>Node</term>
<term>Nordestina</term>
<term>Nova</term>
<term>Nuclear genes</term>
<term>Optimal hypothesis</term>
<term>Optimization</term>
<term>Oral disc</term>
<term>Oreades</term>
<term>Other species</term>
<term>Outgroup</term>
<term>Oviposition</term>
<term>Pachymedusa</term>
<term>Pachymedusa dacnicolor</term>
<term>Palliata</term>
<term>Palpebral</term>
<term>Papua</term>
<term>Paraphyletic</term>
<term>Parsimonious trees</term>
<term>Parsimony</term>
<term>Paulo</term>
<term>Pelodryadinae</term>
<term>Pelodryadines</term>
<term>Peptide</term>
<term>Peptide families</term>
<term>Perdizes</term>
<term>Perinesos</term>
<term>Perinesos group</term>
<term>Pers</term>
<term>Phasmahyla</term>
<term>Phrynomedusa</term>
<term>Phrynomedusa marginata</term>
<term>Phyllomedusa</term>
<term>Phyllomedusa ayeaye</term>
<term>Phyllomedusa azurea</term>
<term>Phyllomedusa bicolor</term>
<term>Phyllomedusa centralis</term>
<term>Phyllomedusa oreades</term>
<term>Phyllomedusa sauvagii</term>
<term>Phyllomedusa tomopterna</term>
<term>Phyllomedusinae</term>
<term>Phyllomedusine</term>
<term>Phyllomedusines</term>
<term>Phylogenetic</term>
<term>Phylogenetic analysis</term>
<term>Phylogenetic hypothesis</term>
<term>Phylogenetic relationships</term>
<term>Physiol</term>
<term>Pimenta</term>
<term>Pombal</term>
<term>Precursor</term>
<term>Prov</term>
<term>Putative</term>
<term>Pyburn</term>
<term>Reproductive</term>
<term>Reproductive biology</term>
<term>Reticulated</term>
<term>Rica</term>
<term>Rito</term>
<term>Rito santo</term>
<term>Riva</term>
<term>Rohdei</term>
<term>Saltator</term>
<term>Sama</term>
<term>Santa teresa</term>
<term>Sauvagii</term>
<term>Sequence divergence</term>
<term>Serra</term>
<term>Several species</term>
<term>Sheil</term>
<term>Shoemaker</term>
<term>Silva</term>
<term>Sister group</term>
<term>Sister taxon</term>
<term>Smns</term>
<term>Species group</term>
<term>Species groups</term>
<term>Spurrelli</term>
<term>Subfamily</term>
<term>Synapomorphies</term>
<term>Synapomorphy</term>
<term>Tadpole</term>
<term>Tarsius</term>
<term>Tarsius group</term>
<term>Taxon</term>
<term>Taxonomic</term>
<term>Taxonomic distribution</term>
<term>Tetraploidea</term>
<term>Tomopterna</term>
<term>Topology</term>
<term>Trinitatis</term>
<term>Type locality</term>
<term>Ubatuba</term>
<term>Unassigned</term>
<term>Unavailable species</term>
<term>Univ</term>
<term>Universidade</term>
<term>Urate</term>
<term>Uricotelism</term>
<term>Vaillanti</term>
<term>Water loss</term>
<term>Webbing</term>
<term>Weygoldt</term>
<term>Wiens</term>
<term>Willi</term>
<term>Willi hennig society</term>
<term>Zool</term>
<term>Zootaxa</term>
</keywords>
</textClass>
</profileDesc>
</teiHeader>
<front>
<div type="abstract" xml:lang="en">The leaf or monkey frogs of the hylid subfamily Phyllomedusinae are a unique group of charismatic anurans. We present a molecular phylogenetic analysis that includes 45 of the 60 species of phyllomedusines using up to 12 genes and intervening tRNAs. The aims were to gain a better understanding of the phylogenetic position of Phrynomedusa, test the monophyly and explore the relationships among several putative lineages (Hylomantis, the H. buckleyi Group, Phasmahyla, the four species groups of Phyllomedusa, and the species of Phyllomedusa that remain unassigned to any group), and to examine the implications of our phylogeny for the evolution of several characters in phyllomedusines. The analyses resulted in a well‐supported phylogenetic hypothesis that provides a historical framework for a discussion of the evolution of characters associated with reproductive biology, gliding behaviour, the physiology of waterproofing, and bioactive peptides. Implications include an earlier origin for eggless capsules than for leaf‐folding behaviour during amplexus, two independent origins of gliding, and an earlier origin of reduction in evaporative water loss than uricotelism, which is a result that originally was predicted on the basis of physiology alone. Furthermore, our results support the prediction that bioactive peptides from different peptide families are to be expected in all species of Phyllomedusinae. Hylomantis (as recently redefined) is shown to be paraphyletic and the synonymy of Agalychnis is revised to remedy this problem by including both Hylomantis and Pachymedusa.  © The Willi Hennig Society 2009.</div>
</front>
</TEI>
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<corpusName>wiley</corpusName>
<keywords>
<teeft>
<json:string>phyllomedusa</json:string>
<json:string>agalychnis</json:string>
<json:string>faivovich</json:string>
<json:string>phyllomedusinae</json:string>
<json:string>hylidae</json:string>
<json:string>phasmahyla</json:string>
<json:string>mina</json:string>
<json:string>anura</json:string>
<json:string>gerais</json:string>
<json:string>cruziohyla</json:string>
<json:string>minas gerais</json:string>
<json:string>clade</json:string>
<json:string>phylogenetic</json:string>
<json:string>hypochondrialis</json:string>
<json:string>cladistics</json:string>
<json:string>hylomantis</json:string>
<json:string>phrynomedusa</json:string>
<json:string>litoria</json:string>
<json:string>wiens</json:string>
<json:string>duellman</json:string>
<json:string>rohdei</json:string>
<json:string>peptide</json:string>
<json:string>paulo</json:string>
<json:string>callidryas</json:string>
<json:string>oreades</json:string>
<json:string>frog</json:string>
<json:string>willi</json:string>
<json:string>hennig</json:string>
<json:string>dacnicolor</json:string>
<json:string>willi hennig society</json:string>
<json:string>tarsius</json:string>
<json:string>buckleyi</json:string>
<json:string>pelodryadinae</json:string>
<json:string>burmeisteri</json:string>
<json:string>calcarifer</json:string>
<json:string>taxonomic</json:string>
<json:string>taxon</json:string>
<json:string>phyllomedusines</json:string>
<json:string>amphibian</json:string>
<json:string>ayeaye</json:string>
<json:string>lemur</json:string>
<json:string>lutz</json:string>
<json:string>cfbh</json:string>
<json:string>grosso</json:string>
<json:string>spurrelli</json:string>
<json:string>pachymedusa</json:string>
<json:string>azurea</json:string>
<json:string>mato</json:string>
<json:string>monophyly</json:string>
<json:string>mato grosso</json:string>
<json:string>annae</json:string>
<json:string>sauvagii</json:string>
<json:string>chunb</json:string>
<json:string>amphibia</json:string>
<json:string>bicolor</json:string>
<json:string>zool</json:string>
<json:string>saltator</json:string>
<json:string>centralis</json:string>
<json:string>megacephala</json:string>
<json:string>tomopterna</json:string>
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<json:string>caldas</json:string>
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<json:string>pyburn</json:string>
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<json:string>haddad</json:string>
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<json:string>perinesos</json:string>
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<json:string>node</json:string>
<json:string>atelopoides</json:string>
<json:string>erspamer</json:string>
<json:string>iris</json:string>
<json:string>hypochondrialis group</json:string>
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<json:string>cruziohyla calcarifer</json:string>
<json:string>character states</json:string>
<json:string>topology</json:string>
<json:string>cannatella</json:string>
<json:string>tetraploidea</json:string>
<json:string>itacolomi</json:string>
<json:string>eggless</json:string>
<json:string>camba</json:string>
<json:string>sister taxon</json:string>
<json:string>buckleyi group</json:string>
<json:string>vaillanti</json:string>
<json:string>phylogenetic hypothesis</json:string>
<json:string>synapomorphies</json:string>
<json:string>biol</json:string>
<json:string>trinitatis</json:string>
<json:string>taxonomic distribution</json:string>
<json:string>eggless capsules</json:string>
<json:string>chapada</json:string>
<json:string>costa</json:string>
<json:string>caramaschi</json:string>
<json:string>guimaraes</json:string>
<json:string>brandao</json:string>
<json:string>herpetol</json:string>
<json:string>guttata</json:string>
<json:string>bioactive</json:string>
<json:string>mitochondrial</json:string>
<json:string>universidade</json:string>
<json:string>junior synonym</json:string>
<json:string>reticulated</json:string>
<json:string>anuran</json:string>
<json:string>boulenger</json:string>
<json:string>sama</json:string>
<json:string>bra</json:string>
<json:string>phyllomedusa oreades</json:string>
<json:string>species groups</json:string>
<json:string>pelodryadines</json:string>
<json:string>phylogenetic analysis</json:string>
<json:string>amnh</json:string>
<json:string>pombal</json:string>
<json:string>moen</json:string>
<json:string>distincta</json:string>
<json:string>hist</json:string>
<json:string>ubatuba</json:string>
<json:string>tarsius group</json:string>
<json:string>craspedopus</json:string>
<json:string>mnrj</json:string>
<json:string>genus</json:string>
<json:string>optimization</json:string>
<json:string>serra</json:string>
<json:string>exemplar</json:string>
<json:string>nacional</json:string>
<json:string>palliata</json:string>
<json:string>putative</json:string>
<json:string>unassigned</json:string>
<json:string>bokermann</json:string>
<json:string>pachymedusa dacnicolor</json:string>
<json:string>litodryas</json:string>
<json:string>biochem</json:string>
<json:string>funkhouser</json:string>
<json:string>cochranae</json:string>
<json:string>araguari</json:string>
<json:string>natural history</json:string>
<json:string>species group</json:string>
<json:string>parsimony</json:string>
<json:string>bremer</json:string>
<json:string>papua</json:string>
<json:string>bayesian</json:string>
<json:string>palpebral</json:string>
<json:string>hulli</json:string>
<json:string>agalychnis callidryas</json:string>
<json:string>phyllomedusa ayeaye</json:string>
<json:string>weygoldt</json:string>
<json:string>farris</json:string>
<json:string>antimicrobial</json:string>
<json:string>riva</json:string>
<json:string>phyllomedusa tomopterna</json:string>
<json:string>bahiana</json:string>
<json:string>zootaxa</json:string>
<json:string>rito</json:string>
<json:string>jungfer</json:string>
<json:string>rica</json:string>
<json:string>cyclorana</json:string>
<json:string>sequence divergence</json:string>
<json:string>rito santo</json:string>
<json:string>larval development</json:string>
<json:string>precursor</json:string>
<json:string>larva</json:string>
<json:string>univ</json:string>
<json:string>duellmani</json:string>
<json:string>prov</json:string>
<json:string>costa rica</json:string>
<json:string>physiol</json:string>
<json:string>bioactive peptides</json:string>
<json:string>golobo</json:string>
<json:string>perinesos group</json:string>
<json:string>larval</json:string>
<json:string>limon</json:string>
<json:string>peptide families</json:string>
<json:string>bladder</json:string>
<json:string>hylinae</json:string>
<json:string>genbank</json:string>
<json:string>jandaia</json:string>
<json:string>evaporative water loss</json:string>
<json:string>webbing</json:string>
<json:string>uricotelism</json:string>
<json:string>american museum</json:string>
<json:string>mcclanahan</json:string>
<json:string>sister group</json:string>
<json:string>unavailable species</json:string>
<json:string>jackknife</json:string>
<json:string>cadle</json:string>
<json:string>urate</json:string>
<json:string>iheringii</json:string>
<json:string>reproductive biology</json:string>
<json:string>type locality</json:string>
<json:string>burmeisteri group</json:string>
<json:string>agalychnis annae</json:string>
<json:string>phyllomedusa azurea</json:string>
<json:string>homology</json:string>
<json:string>guyana</json:string>
<json:string>caerulea</json:string>
<json:string>congonhas</json:string>
<json:string>outgroup</json:string>
<json:string>other species</json:string>
<json:string>tadpole</json:string>
<json:string>pimenta</json:string>
<json:string>sheil</json:string>
<json:string>perdizes</json:string>
<json:string>danieli</json:string>
<json:string>caldas novas</json:string>
<json:string>phylogenetic relationships</json:string>
<json:string>callidryas group</json:string>
<json:string>dataset</json:string>
<json:string>paraphyletic</json:string>
<json:string>internal relationships</json:string>
<json:string>cfbht</json:string>
<json:string>alagoas</json:string>
<json:string>comp</json:string>
<json:string>alvares</json:string>
<json:string>santa teresa</json:string>
<json:string>smns</json:string>
<json:string>neotropical</json:string>
<json:string>aust</json:string>
<json:string>lipid</json:string>
<json:string>phyllomedusine</json:string>
<json:string>silva</json:string>
<json:string>neildi</json:string>
<json:string>hoogmoed</json:string>
<json:string>alamillo</json:string>
<json:string>phyllomedusa sauvagii</json:string>
<json:string>cement gland</json:string>
<json:string>brasil</json:string>
<json:string>optimal hypothesis</json:string>
<json:string>aspera group</json:string>
<json:string>phrynomedusa marginata</json:string>
<json:string>behaviour</json:string>
<json:string>nova</json:string>
<json:string>reproductive</json:string>
<json:string>parsimonious trees</json:string>
<json:string>nuclear genes</json:string>
<json:string>water loss</json:string>
<json:string>phyllomedusa centralis</json:string>
<json:string>oral disc</json:string>
<json:string>independent origins</json:string>
<json:string>several species</json:string>
<json:string>falconieri erspamer</json:string>
<json:string>phyllomedusa bicolor</json:string>
<json:string>former phyllomedusa buckleyi group</json:string>
<json:string>ecuador</json:string>
<json:string>argentina</json:string>
<json:string>brazil</json:string>
<json:string>agalychnis saltator</json:string>
<json:string>sequence data</json:string>
<json:string>molecular data</json:string>
<json:string>phyllomedusa boliviana</json:string>
<json:string>phyllomedusa perinesos group</json:string>
<json:string>oreades chunb</json:string>
<json:string>skin secretion</json:string>
<json:string>fila comadre</json:string>
<json:string>taxonomic revision</json:string>
<json:string>phyllomedusa megacephala</json:string>
<json:string>espirito santo</json:string>
<json:string>arboreal</json:string>
<json:string>evaporative</json:string>
<json:string>divergence</json:string>
<json:string>santo</json:string>
<json:string>campo</json:string>
<json:string>excretion</json:string>
<json:string>tarsius groups</json:string>
<json:string>phyllomedusa hypochondrialis group</json:string>
<json:string>parsimony jackknife</json:string>
<json:string>present paper</json:string>
<json:string>mitochondrial genes</json:string>
<json:string>phyllomedusa hypochondrialis</json:string>
<json:string>type species</json:string>
<json:string>phyllomedusa burmeisteri</json:string>
<json:string>universidade estadual paulista</json:string>
<json:string>vomerine teeth</json:string>
<json:string>agalychnis calcarifer</json:string>
<json:string>phyllomedusa araguari</json:string>
<json:string>hylomantis granulosa</json:string>
<json:string>pairwise distances</json:string>
<json:string>omar torrijos</json:string>
<json:string>bicoloured iris</json:string>
<json:string>strict consensus</json:string>
<json:string>phasmahyla phyllomedusa</json:string>
<json:string>phyllomedusa itacolomi</json:string>
<json:string>taxon sampling</json:string>
<json:string>present analysis</json:string>
<json:string>putative synapomorphy</json:string>
<json:string>southeastern brazil</json:string>
<json:string>phyllomedusa wagler</json:string>
<json:string>hylid frogs</json:string>
<json:string>morphological synapomorphies</json:string>
<json:string>active peptides</json:string>
<json:string>myersiohyla kanaima</json:string>
<json:string>antimicrobial peptides</json:string>
<json:string>alto colorado</json:string>
</teeft>
</keywords>
<author>
<json:item>
<name>Julián Faivovich</name>
<affiliations>
<json:string>División Herpetología, Museo Argentino de Ciencias Naturales‐CONICET, Angel Gallardo 470, C1405DJR, Buenos Aires, Argentina; Departamento de Zoologia, I.B., Universidade Estadual Paulista, Rio Claro, CEP 13506‐900, São Paulo, Brazil; and Herpetology, Division of Vertebrate Zoology, American Museum of Natural History, New York, USA</json:string>
<json:string>E-mail: julian@macn.gov.ar</json:string>
</affiliations>
</json:item>
<json:item>
<name>Célio F. B. Haddad</name>
<affiliations>
<json:string>Departamento de Zoologia, I.B., Universidade Estadual Paulista, Rio Claro, CEP 13506‐900, São Paulo, Brazil</json:string>
</affiliations>
</json:item>
<json:item>
<name>Délio Baêta</name>
<affiliations>
<json:string>Setor de Herpetologia, Departamento de Vertebrados, Museu Nacional, Universidade Federal do Rio de Janeiro, Quinta da Boa Vista, s/n°, São Cristóvão, CEP 20940‐040, Rio de Janeiro, RJ, Brazil</json:string>
</affiliations>
</json:item>
<json:item>
<name>Karl‐Heinz Jungfer</name>
<affiliations>
<json:string>Panoramastr. 14, 74405 Gaildorf, Germany</json:string>
</affiliations>
</json:item>
<json:item>
<name>Guilherme F. R. Álvares</name>
<affiliations>
<json:string>Laboratório de Fauna e Unidades de Conservação, Departamento de Engenharia Florestal, Universidade de Brasília, Brasília‐DF, CEP 70910‐900, Brazil</json:string>
</affiliations>
</json:item>
<json:item>
<name>Reuber A. Brandão</name>
<affiliations>
<json:string>Laboratório de Fauna e Unidades de Conservação, Departamento de Engenharia Florestal, Universidade de Brasília, Brasília‐DF, CEP 70910‐900, Brazil</json:string>
</affiliations>
</json:item>
<json:item>
<name>Christopher Sheil</name>
<affiliations>
<json:string>Department of Biology, Dolan Center for Science & Technology, John Carroll University, 20700 North Park Boulevard, University Heights, OH 44118, USA</json:string>
</affiliations>
</json:item>
<json:item>
<name>Lucas S. Barrientos</name>
<affiliations>
<json:string>Instituto de Ciencias Naturales, Universidad Nacional de Colombia, calle 53, 2° edificio Bogotá, Colombia</json:string>
</affiliations>
</json:item>
<json:item>
<name>César L. Barrio‐Amorós</name>
<affiliations>
<json:string>Fundación AndígenA, Apartado Postal 210, 5101‐A Mérida, Venezuela</json:string>
</affiliations>
</json:item>
<json:item>
<name>Carlos A. G. Cruz</name>
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<abstract>The leaf or monkey frogs of the hylid subfamily Phyllomedusinae are a unique group of charismatic anurans. We present a molecular phylogenetic analysis that includes 45 of the 60 species of phyllomedusines using up to 12 genes and intervening tRNAs. The aims were to gain a better understanding of the phylogenetic position of Phrynomedusa, test the monophyly and explore the relationships among several putative lineages (Hylomantis, the H. buckleyi Group, Phasmahyla, the four species groups of Phyllomedusa, and the species of Phyllomedusa that remain unassigned to any group), and to examine the implications of our phylogeny for the evolution of several characters in phyllomedusines. The analyses resulted in a well‐supported phylogenetic hypothesis that provides a historical framework for a discussion of the evolution of characters associated with reproductive biology, gliding behaviour, the physiology of waterproofing, and bioactive peptides. Implications include an earlier origin for eggless capsules than for leaf‐folding behaviour during amplexus, two independent origins of gliding, and an earlier origin of reduction in evaporative water loss than uricotelism, which is a result that originally was predicted on the basis of physiology alone. Furthermore, our results support the prediction that bioactive peptides from different peptide families are to be expected in all species of Phyllomedusinae. Hylomantis (as recently redefined) is shown to be paraphyletic and the synonymy of Agalychnis is revised to remedy this problem by including both Hylomantis and Pachymedusa.  © The Willi Hennig Society 2009.</abstract>
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<title>The phylogenetic relationships of the charismatic poster frogs, Phyllomedusinae (Anura, Hylidae)</title>
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<p> © The Willi Hennig Society 2009.</p>
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<b>Appendix S1.</b>
GenBank numbers.</p>
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<i>Hylomantis</i>
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<i>Phasmahyla</i>
, the four species groups of
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, and the species of
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<i>Hylomantis</i>
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<i>Agalychnis</i>
is revised to remedy this problem by including both
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<abstract lang="en">The leaf or monkey frogs of the hylid subfamily Phyllomedusinae are a unique group of charismatic anurans. We present a molecular phylogenetic analysis that includes 45 of the 60 species of phyllomedusines using up to 12 genes and intervening tRNAs. The aims were to gain a better understanding of the phylogenetic position of Phrynomedusa, test the monophyly and explore the relationships among several putative lineages (Hylomantis, the H. buckleyi Group, Phasmahyla, the four species groups of Phyllomedusa, and the species of Phyllomedusa that remain unassigned to any group), and to examine the implications of our phylogeny for the evolution of several characters in phyllomedusines. The analyses resulted in a well‐supported phylogenetic hypothesis that provides a historical framework for a discussion of the evolution of characters associated with reproductive biology, gliding behaviour, the physiology of waterproofing, and bioactive peptides. Implications include an earlier origin for eggless capsules than for leaf‐folding behaviour during amplexus, two independent origins of gliding, and an earlier origin of reduction in evaporative water loss than uricotelism, which is a result that originally was predicted on the basis of physiology alone. Furthermore, our results support the prediction that bioactive peptides from different peptide families are to be expected in all species of Phyllomedusinae. Hylomantis (as recently redefined) is shown to be paraphyletic and the synonymy of Agalychnis is revised to remedy this problem by including both Hylomantis and Pachymedusa.  © The Willi Hennig Society 2009.</abstract>
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<note type="content"> Appendix S1. GenBank numbers. Please note: Wiley‐Blackwell are not responsible for the content or functionality of any supporting materials supplied by the authors. Any queries (other than missing material) should be directed to the corresponding author for the article. Appendix S1. GenBank numbers. Please note: Wiley‐Blackwell are not responsible for the content or functionality of any supporting materials supplied by the authors. Any queries (other than missing material) should be directed to the corresponding author for the article.Supporting Info Item: Supporting info item - </note>
<identifier type="ISSN">0748-3007</identifier>
<identifier type="eISSN">1096-0031</identifier>
<identifier type="DOI">10.1111/(ISSN)1096-0031</identifier>
<identifier type="PublisherID">CLA</identifier>
<part>
<date>2010</date>
<detail type="volume">
<caption>vol.</caption>
<number>26</number>
</detail>
<detail type="issue">
<caption>no.</caption>
<number>3</number>
</detail>
<extent unit="pages">
<start>227</start>
<end>261</end>
<total>35</total>
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<identifier type="DOI">10.1111/j.1096-0031.2009.00287.x</identifier>
<identifier type="ArticleID">CLA287</identifier>
<accessCondition type="use and reproduction" contentType="copyright">© The Willi Hennig Society 2009</accessCondition>
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