Systematics of spiny-backed treefrogs (Hylidae: Osteocephalus): An Amazonian puzzle

Spiny-backed tree frogs of the genus Osteocephalus are conspicuous components of the tropical wet forests of the Amazon and the Guiana Shield. Here, we revise the phylogenetic relationships of Osteocephalus and its sister group Tepuihyla, using up to 6134 bp of DNA sequences of nine mitochondrial an...

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Autor principal: Jungfer, K.-H
Otros Autores: Faivovich, J., Padial, J.M, Castroviejo-Fisher, S., Lyra, M.M, V. M. Berneck, B., Iglesias, P.P, Kok, P.J.R, Macculloch, R.D, Rodrigues, M.T, Verdade, V.K, Torres Gastello, C.P, Chaparro, J.C, Valdujo, P.H, Reichle, S., Moravec, J., Gvoždík, V., Gagliardi-Urrutia, G., Ernst, R., De la Riva, I., Means, D.B, Lima, A.P, Señaris, J.C, Wheeler, W.C, F. B. Haddad, C.
Formato: Capítulo de libro
Lenguaje:Inglés
Publicado: 2013
Acceso en línea:Registro en Scopus
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100 1 |a Jungfer, K.-H. 
245 1 0 |a Systematics of spiny-backed treefrogs (Hylidae: Osteocephalus): An Amazonian puzzle 
260 |c 2013 
270 1 0 |m Jungfer, K.-H.; Institute of Integrated Sciences, Department of Biology, University of Koblenz-Landau, Universitätsstr. 1, 56070 Koblenz, Germany; email: khjungfer@aol.com 
506 |2 openaire  |e Política editorial 
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504 |a Myers, C.W., Daly, J.W., A name for the poison frog of the Cordillera Azul, eastern Peru, with notes on its biology and skin toxins (Dendrobatidae) (1979) American Museum Novitates, 2674, pp. 1-24 
504 |a Myers, C.W., Daly, J.W., Taxonomy and ecology of Dendrobates bombetes, a new Andean poison frog with new skin toxins (1980) American Museum Novitates, 2692, pp. 1-23 
504 |a Myers, C.W., Donnelly, M.A., The summit herpetofauna of Auyantepui, Venezuela: report from the Robert G. Goelet American Museum-Terramar Expedition (2008) Bulletin of the American Museum of Natural History, 308, pp. 1-147 
504 |a Nixon, K.C., The Parsimony Ratchet, a new method for rapid parsimony analysis (1999) Cladistics, 15, pp. 407-414 
504 |a Nixon, K.C., (2002) WinClada, vers. 1.00.8, , Ithaca, NY: Published by the author 
504 |a Padial, J.M., Bielskis, S., Castroviejo, J., Sobre la fauna de anfibios del pie de monte del Departamento de La Paz (Bolivia) (2000) Boletín de la Asociación Herpetológica Española, 11, pp. 59-62 
504 |a Padial, J.M., De la Riva, I., Integrative taxonomy reveals cryptic Amazonian species of Pristimantis (Anura) (2009) Zoological Journal of the Linnaean Society, 155, pp. 97-122 
504 |a Padial, J.M., De la Riva, I., A response to recent proposals of integrative taxonomy (2010) Biological Journal of the Linnaean Society, 101, pp. 747-756 
504 |a Padial, J.M., Castroviejo-Fisher, S., Köhler, J., Vilà, C., Chaparro, J.C., De la Riva, I., Deciphering the products of evolution at the species level: the need for an integrative taxonomy (2009) Zoologica Scripta, 38, pp. 431-447 
504 |a Padial, J.M., Miralles, A., De la Riva, I., Vences, M., The integrative future of taxonomy (2010) Frontiers in Zoology, 7, pp. 1-14 
504 |a Padial, J.M., Chaparro, J.C., Castroviejo-Fisher, S., Guayasamín, J.M., Lehr, E., Delgado, A.J., Vaira, M., De la Riva, I., A revision of species diversity in the Neotropical genus Oreobates (Anura: Strabomantidae), with the description of three new species from the Amazonian slopes of the Andes (2012) American Museum Novitates, 3752, pp. 1-55 
504 |a Pavan, S.E., Rossi, R.V., Schneider, H., Species diversity in the Monodelphis brevicaudata complex (Didelphimorphia: Didelphidae) inferred from molecular and morphological data, with the description of a new species (2012) Zoological Journal of the Linnaean Society, 165, pp. 190-223 
504 |a Posada, D., jModelTest: phylogenetic model averaging (2008) Molecular Biology and Evolution, 25, pp. 1253-1256 
504 |a Pyron, R.A., Wiens, J.J., A large-scale phylogeny of Amphibia including over 2,800 species, and a revised classification of extant frogs, salamanders, and caecilians (2011) Molecular Phylogenetics and Evolution, 61, pp. 543-583 
504 |a Ron, S., Pramuk, J.B., A new species of Osteocephalus (Anura: Hylidae) from Amazonian Ecuador and Peru (1999) Herpetologica, 55, pp. 433-446 
504 |a Ron, S.R., Santos, J.C., Cannatella, D.C., Phylogeny of the túngara frog genus Engystomops (= Physalaemus pustulosus species group; Anura: Leptodactylidae) (2006) Molecular Phylogenetics and Evolution, 39, pp. 392-403 
504 |a Ron, S.R., Toral, E., Venegas, P.J., Barnes, C.W., Taxonomic revision and phylogenetic position of Osteocephalus festae (Anura, Hylidae) with description of its larva (2010) ZooKeys, 70, pp. 67-92 
504 |a Ron, S.R., Toral, E., Ortiz, D., Almendáriz, A., Amphibia, Hylidae, Osteocephalus cabrerai Cochran and Goin, 1970: first confirmed records from Ecuador with distribution map (2011) Check List, 7, pp. 323-325 
504 |a Ron, S.R., Venegas, P.J., Toral, E., Read, M., Ortiz, D.A., Manzano, A.L., Systematics of the Osteocephalus buckleyi species complex (Anura, Hylidae) from Ecuador and Peru (2012) ZooKeys, 229, pp. 1-52 
504 |a Ruthven, A.G., The amphibians of the University of Michigan-Walker Expedition to British Guiana (1919) Occasional Papers of the Museum of Zoology, University of Michigan, 69, pp. 1-14. , plates I-III 
504 |a Salerno, P.E., Ron, S.R., Señaris, J.C., Rojas-Runjaic, F.J.M., Noonan, B.P., Cannatella, D.C., Ancient Tepui summits harbor young rather than old lineages of endemic frogs (2012) Evolution, 66, pp. 3000-3013 
504 |a Schiesari, L.C., Grillitsch, B., Vogl, C., Comparative morphology of phytotelmonous and pond-dwelling larvae of four neotropical treefrog species (Anura, Hylidae, Osteocephalus oophagus, Osteocephalus taurinus, Phrynohyas resinifictrix, Phrynohyas venulosa (1996) Alytes, 13, pp. 109-139 
504 |a Schlüter, A., Bio-akustische Untersuchungen an Hyliden in einem begrenzten Gebiet des tropischen Regenwaldes von Peru (1979) Salamandra, 15, pp. 211-236 
504 |a Silva, J.M.C., Rylands, A.B., da Fonseca, G.A.B., The fate of the Amazonian areas of endemism (2005) Conservation Biology, 19, pp. 689-694 
504 |a Silverstone, P.A., A revision of the poison-arrow frogs of the genus Dendrobates Wagler (1975) Natural History Museum Los Angeles County Scientific Bulletin, 21, pp. 1-55 
504 |a Simmons, M.P., Misleading results of likelihood-based phylogenetic analyses in the presence of missing data (2012) Cladistics, 28, pp. 208-222 
504 |a Simmons, M.P., Freudenstein, J.V., Spurious 99% bootstrap and jackknife support for unsupported clades (2011) Molecular Phylogenetics and Evolution, 61, pp. 177-191 
504 |a Simmons, M.P., Norton, A.P., Quantification and relative severity of inflated branch-support values generated by alter- native methods: an empirical example (2013) Molecular Phylogenetics and Evolution, 67, pp. 277-296 
504 |a Sites Jr., J.W., Marshall, J.C., Operational criteria for delimiting species (2004) Annual Review of Ecology, Evolution and Systematics, 35, pp. 199-227 
504 |a Smith, E.N., Noonan, B.P., A new species of Osteocephalus (Anura: Hylidae) from Guyana (2001) Revista de Biologia Tropical, 49, pp. 347-357 
504 |a Steindachner, F., Über zwei noch unbeschriebene Batrachier aus den Sammlungen des K. K. Museum zu Wien (1862) Archivio per la zoologia l'anatomia e la fisiologia, 2, pp. 77-82. , and Table VI 
504 |a Stuart, B.L., Inger, R.F., Voris, H.K., High level of cryptic species diversity revealed by sympatric lineages of Southeast Asian forest frogs (2006) Biology Letters, 2, pp. 470-474 
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504 |a Thompson, J.D., Gibson, T.J., Plewniak, F., Jeanmougin, F., Higgins, D.G., The CLUSTAL_X windows interface: flexible strategies for multiple sequence alignment aided by quality analysis tools (1997) Nucleic Acids Research, 25, pp. 4876-4882 
504 |a Trueb, L., The evolutionary relationships of casque-headed treefrogs with co-ossified skulls (family Hylidae) (1970) University of Kansas Publications, Museum of Natural History, 18, pp. 547-716 
504 |a Trueb, L., Duellman, W.E., The systematic status and life history of Hyla verrucigera Werner (1970) Copeia, 1970, pp. 601-610 
504 |a Trueb, L., Duellman, W.E., A synopsis of Neotropical hylid frogs, genus Osteocephalus (1971) Occasional Papers of the Museum of Natural History, The University of Kansas, 1, pp. 1-48 
504 |a Trueb, L., Tyler, M.J., Systematics and evolution of the Greater Antillean hylid frogs (1974) Occasional Papers of the Museum of Natural History, The University of Kansas, 24, pp. 1-60 
504 |a Ueda, H., Reproduction of Chirixalus eiffingeri (Boettger) (1986) Scientific Report of the Laboratory of Amphibian Biology, Hiroshima University, 8, pp. 109-116 
504 |a Valdujo, P.H., Silvano, D.L., Colli, G., Martins, M., Anuran species composition and distribution patterns in Brazilian Cerrado, a Neotropical hotspot (2012) South American Journal of Herpetology, 7, pp. 63-78 
504 |a Varon, A., Vinh, V.S., Bomash, I., Wheeler, W.C., (2009), http://research.amnh.org/scicomp/projects/poy.php, POY 4.1.1. American Museum of Natural History. Available via; Vences, M., Wake, D., Speciation, species boundaries and phylogeography of amphibians (2007) Amphibian Biology, pp. 2613-2669. , In H. Heatwole (Ed.) (Vol. 7 -). Chipping Norton: Surrey Beatty & Sons 
504 |a Vences, M., Glaw, F., Köhler, J., Wollenberg, K.C., Molecular phylogeny, morphology and bioacoustics reveal five additional species of arboreal microhylid frogs of the genus Anodonthyla from Madagascar (2010) Contributions to Zoology, 79, pp. 1-32 
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504 |a Wells, K.D., (2007) The Ecology and Behavior of Amphibians, , Chicago, London: University of Chicago Press 
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504 |a Wheeler, W.C., Iterative pass optimization of sequence data (2003) Cladistics, 19, pp. 254-260 
504 |a Wheeler, W.C., Implied alignment: a synapomorphy-based multiple-sequence alignment method and its use in cladogram search (2003) Cladistics, 19, pp. 261-268 
504 |a Wheeler, W.C., Trivial minimization of extra-steps under dynamic homology (2012) Cladistics, 28, pp. 188-189 
504 |a Wheeler, W.C., Aagesen, L., Arango, C.P., Faivovich, J., Grant, T., D'Haese, C., Janies, D., Giribet, G., (2006) Dynamic Homology and Phylogenetic Systematics: A Unified Approach Using POY, , New York: American Museum of Natural History 
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504 |a Wiens, J.J., Graham, C.H., Moen, D.S., Smith, A.S., Reeder, T.W., Evolutionary and ecological causes of the latitudinal diversity gradient in hylid frogs: treefrog trees unearth the roots of high tropical diversity (2006) American Naturalist, 168, pp. 579-596 
504 |a Wiens, J.J., Kuczynski, C.A., Hua, X., Moen, D.S., An expanded phylogeny of treefrogs (Hylidae) based on nuclear and mitochondrial sequence data (2010) Molecular Phylogenetics and Evolution, 55, pp. 871-882 
504 |a Wiley, E.O., The evolutionary species concept reconsidered (1978) Systematic Zoology, 27, pp. 17-26 
504 |a Wynn, A., Heyer, W.R., Do geographically widespread species of tropical amphibians exist? An estimate of genetic relatedness within the neotropical frog Leptodactylus fuscus (Schneider, 1799) (Anura Leptodactylidae) (2001) Tropical Zoology, 14, pp. 255-285 
504 |a Zwickl, D.J., (2006), Genetic algorithm approaches for the phylogenetic analysis of large biological sequence datasets under the maximum likelihood criterion. PhD dissertation. Austin: The University of Texas at Austin 
520 3 |a Spiny-backed tree frogs of the genus Osteocephalus are conspicuous components of the tropical wet forests of the Amazon and the Guiana Shield. Here, we revise the phylogenetic relationships of Osteocephalus and its sister group Tepuihyla, using up to 6134 bp of DNA sequences of nine mitochondrial and one nuclear gene for 338 specimens from eight countries and 218 localities, representing 89% of the 28 currently recognized nominal species. Our phylogenetic analyses reveal (i) the paraphyly of Osteocephalus with respect to Tepuihyla, (ii) the placement of 'Hyla' warreni as sister to Tepuihyla, (iii) the non-monophyly of several currently recognized species within Osteocephalus and (iv) the presence of low (<1%) and overlapping genetic distances among phenotypically well-characterized nominal species (e.g. O. taurinus and O. oophagus) for the 16S gene fragment used in amphibian DNA barcoding. We propose a new taxonomy, securing the monophyly of Osteocephalus and Tepuihyla by rearranging and redefining the content of both genera and also erect a new genus for the sister group of Osteocephalus. The colouration of newly metamorphosed individuals is proposed as a morphological synapomorphy for Osteocephalus. We recognize and define five monophyletic species groups within Osteocephalus, synonymize three species of Osteocephalus (O. germani, O. phasmatus and O. vilmae) and three species of Tepuihyla (T. celsae, T. galani and T. talbergae) and reallocate three species (Hyla helenae to Osteocephalus, O. exophthalmus to Tepuihyla and O. pearsoni to Dryaderces gen. n.). Furthermore, we flag nine putative new species (an increase to 138% of the current diversity). We conclude that species numbers are largely underestimated, with most hidden diversity centred on widespread and polymorphic nominal species. The evolutionary origin of breeding strategies within Osteocephalus is discussed in the light of this new phylogenetic hypothesis, and a novel type of amplexus (gular amplexus) is described. © 2013 The Norwegian Academy of Science and Letters.  |l eng 
593 |a División Herpetología, Museo Argentino de Ciencias Naturales 'Bernardino Rivadavia'-CONICET, Angel Gallardo 470, Buenos Aires, C1405DJR, Argentina 
593 |a Departamento de Biodiversidad y Biologia Experimental, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Buenos Aires, Argentina 
593 |a Section of Amphibians and Reptiles, Carnegie Museum of Natural History, 4400 Forbes Avenue, Pittsburgh, PA, 15213-4080, United States 
593 |a Department of Herpetology, American Museum of Natural History, Central Park West at 79th Street, New York, NY, 10024-5192, United States 
593 |a Laboratorio de Sistemática de Vertebrados, Pontifícia Universidade Católica do Rio Grande do Sul, Porto Alegre, RS, Brazil 
593 |a Departamento de Zoologia, Instituto de Biociências, Universidade Estadual Paulista, Av. 24A 1515, Rio Claro, São Paulo, CEP 13506-900, Brazil 
593 |a Departamento de Ecología, Genética y Evolución, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Instituto de Ecología, Genética y Evolución de Buenos Aires, IEGEBA-CONICET, Ciudad Universitaria Pab. II, Buenos Aires, C1428EHA, Argentina 
593 |a Amphibian Evolution Lab, Department of Biology, Vrije Universiteit Brussel, Pleinlaan 2, Brussels, B-1050, Belgium 
593 |a Department of Vertebrates, Royal Belgian Institute of Natural Sciences, rue Vautier 29, Brussels, B-1000, Belgium 
593 |a Department of Natural History, Royal Ontario Museum, 100 Queens Park, Toronto, ON, M5S 2C6, Canada 
593 |a Departamento de Zoologia, Instituto de Biociências, Universidade de São Paulo, Caixa Postal 11461, São Paulo, CEP 05508-090, Brazil 
593 |a Centro de Ciências Naturais e Humanas, Universidade Federal do ABC, Av. dos Estados, Santo André, São Paulo, 5001 CEP 09210-971, Brazil 
593 |a Departamento de Herpetología, Museo de Historia Natural de la Universidad Nacional Mayor de San Marcos, Av. Arenales 1256, Lima 14, Apto. 14-0434, Peru 
593 |a Museo de Historia Natural, Universidad Nacional de San Antonio Abad del Cusco, Cusco, Peru 
593 |a Departamento de Ecologia, Instituto de Biociências, Universidade de São Paulo, Rua do Matão, travessa 14, São Paulo, SP, 05508-900, Brazil 
593 |a Fundación para la Conservación del Bosque Chiquitano, Av. Ejército Nacional No 160, Santa Cruz de la Sierra, Bolivia 
593 |a Department of Zoology, National Museum, Prague 9, Czech Republic 
593 |a Programa de Investigación en Biodiversidad Amazónica, Instituto de Investigaciones de la Amazonia Peruana, Av. Quiñonez Km 2.5, Iquitos, Peru 
593 |a Museum für Tierkunde, Senckenberg Natural History Collections Dresden, Königsbrücker Landstr. 159, Dresden, D-01109, Germany 
593 |a Department of Biodiversity and Evolutionary Biology, Museo Nacional de Ciencias Naturales-CSIC, C/José Gutiérrez Abascal 2, Madrid, 28006, Spain 
593 |a Coastal Plains Institute and Land Conservancy, 1313 Milton Street, Tallahassee, FL, 32303, United States 
593 |a Instituto Nacional de Pesquisas da Amazônia, Caixa Postal 478, Manaus, Amazonas, CEP 69011-970, Brazil 
593 |a Laboratorio de Ecología y Genética de Poblaciones, Centro de Ecología, Instituto Venezolano de Investigaciones Científicas, Apartado 21827, Caracas, 1020-A, Venezuela 
593 |a Division of Invertebrate Zoology, American Museum of Natural History, Central Park West at 79th Street, New York, NY, 10024-5192, United States 
690 1 0 |a AMPHIBIA 
690 1 0 |a ANURA 
690 1 0 |a HYLA 
690 1 0 |a HYLIDAE 
690 1 0 |a OSTEOCEPHALUS 
690 1 0 |a OSTEOCEPHALUS OOPHAGUS 
690 1 0 |a OSTEOCEPHALUS TAURINUS 
690 1 0 |a TEPUIHYLA 
700 1 |a Faivovich, J. 
700 1 |a Padial, J.M. 
700 1 |a Castroviejo-Fisher, S. 
700 1 |a Lyra, M.M. 
700 1 |a V. M. Berneck, B. 
700 1 |a Iglesias, P.P. 
700 1 |a Kok, P.J.R. 
700 1 |a Macculloch, R.D. 
700 1 |a Rodrigues, M.T. 
700 1 |a Verdade, V.K. 
700 1 |a Torres Gastello, C.P. 
700 1 |a Chaparro, J.C. 
700 1 |a Valdujo, P.H. 
700 1 |a Reichle, S. 
700 1 |a Moravec, J. 
700 1 |a Gvoždík, V. 
700 1 |a Gagliardi-Urrutia, G. 
700 1 |a Ernst, R. 
700 1 |a De la Riva, I. 
700 1 |a Means, D.B. 
700 1 |a Lima, A.P. 
700 1 |a Señaris, J.C. 
700 1 |a Wheeler, W.C. 
700 1 |a F. B. Haddad, C. 
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