Big, bad, and beautiful: Phylogenetic relationships of the horned frogs (Anura: Ceratophryidae)

The horned frog family, Ceratophryidae, currently comprises three genera and 12 extant species, distributed from the Caribbean lowlands to the Pampean grasslands. Horned frogs are fossorial species that are remarkable in terms of their adult and larval morphology, karyotype, behavior, and other aspe...

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Autor principal: Faivovich, J.
Otros Autores: Nicoli, L., Blotto, B.L, Pereyra, M.O, Baldo, D., Barrionuevo, J.S, Fabrezi, M., Wild, E.R, Haddad, C.F.B
Formato: Capítulo de libro
Lenguaje:Inglés
Publicado: Sociedade Brasileira de Herpetologia 2014
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Acceso en línea:Registro en Scopus
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Aporte de:Registro referencial: Solicitar el recurso aquí
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100 1 |a Faivovich, J. 
245 1 0 |a Big, bad, and beautiful: Phylogenetic relationships of the horned frogs (Anura: Ceratophryidae) 
260 |b Sociedade Brasileira de Herpetologia  |c 2014 
270 1 0 |m Faivovich, J.; División Herpetología, Museo Argentino de Ciencias Naturales Bernardino Rivadavia, Consejo Nacional de Investigaciones Científicas y Técnicas, Ángel Gallardo 470, Argentina 
506 |2 openaire  |e Política editorial 
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504 |a Marangoni, F., Schafer, E., Cajade, R., Tejedo, M., Growthmark formation and chronology of two neotropical anuran species (2009) Journal of Herpetology, 43, pp. 546-550 
504 |a Marshall, L.G., Patterson, B., Geology and geochronology of the mammal-bearing tertiary of the valle de santa maria and rio corral quemado, catamarca province, argentina (1981) Fieldiana, Geology, 1321, pp. 1-80 
504 |a Martino, A.L., Sinsch, U., Speciation by polyploidy in odontophrynus americanus (2002) Journal of Zoology, 257, pp. 67-81 
504 |a Maxson, L.R., Ruibal, R., Relationships of frogs in the leptodactylid subfamily ceratophryinae (1988) Journal of Herpetology, 2, pp. 228-231 
504 |a McClanahan, L.L., Jr., Ruibal, R., Shoemaker, V.H., Rate of cocoon formation and its physiological correlates in a ceratophryid frog (1983) Physiological Zoology, 56, pp. 430-435 
504 |a McClanahan, L.L., Jr., Shoemaker, V.H., Ruibal, R., Structure and function of the cocoon of a ceratophryid frog (1976) Copeia, 1976, pp. 179-185 
504 |a McNaughton, S.J., Sala, O.E., Oesterheld, M., Comparative ecology of african and south american arid to subhumid ecosystems (1993) Biological Relationships between Africa and South America, pp. 548-567. , in GoldblattP. (Ed. Yale University Press, New Haven, CT , USA 
504 |a Mercadal, I.T., Determinacion del nivel de ploidia en ejemplares preservados del genero Ceratophrys (1981) Amphibia-Reptilia, 3-4, pp. 205-212 
504 |a Mercadal, I.T., Ceratophrys joazeirensis sp. n. Ceratophryidae, Anura) del noreste de Brasil (1986) Amphibia-Reptilia, 7, pp. 313-334 
504 |a Mercadal, I.T., Sobre la validez de Ceratophrys testudo Andersson, 1945 (Anura, Ceratophryidae) (1988) Amphibia-Reptilia, 9, pp. 1-6 
504 |a Mercadal De Barrio, I.T., Aportes para la elucidacion del fenomeno de la poliploidia en el genero Ceratophrys con especial enfas is en el par diploide-octoploide C. cranwelli-C. ornata (Anura, Ceratophryidae). Revista del Museo Argentino de Ciencias Naturales " Bernardino Rivadavia (1987) Zoología, 14, pp. 139-161 
504 |a Mercadal De Barrio, I.T., Barrio, A., Tetraploidia en Ceratophrys (Anura, Leptodactylidae), analisis del registro fosil (2002) Iheringia, Sé Rie Zoologia, 92, pp. 17-31 
504 |a Miller, M.A., Pfeiffer, W., Schwartz, T., Creating the cipres science gateway for inference of large phylogenetic trees (2010) Proceedings of the Gateway Computing Environments Workshop (GCE), pp. 1-8. , 14 Nov. 2010, New Orleans 
504 |a Miranda-Ribeiro, A., Observacoes sobre algumas phases evolutivas de ceratophrys e stombus (1923) Archivos Do Museu Nacional Do Rio de Janeiro, 24, pp. 201-213 
504 |a Morescalchi, A., The close karyological affinities between ceratophrys and pelobates (amphibia, salienta (1967) Experientia, 23, pp. 1071-1072 
504 |a Murphy, J.B., Pedal luring in the leptodactylid frog, ceratophrys calcarata boulenger (1976) Herpetologica, 32, pp. 339-341 
504 |a Natale, G.S., Alcalde, L., Herrera, R., Cajade, R., Schaefer, E.F., Marangoni, F., Trudeau, V., Underwater acoustic communication in the macrophagic carnivorous larvae of ceratophrys ornata (anura: Ceratophryidae) (2011) Acta Zologica, 92, pp. 46-53 
504 |a Nicoli, L., Reappraisal of a ceratophyid frog from the oligocene of patagonia: Assignation to ceratophrys and new insight about its provenance (2014) Ameghiniana, 51, pp. 184-193 
504 |a Nicoli, L., New fossil species of the extant genus lepidobatrachus (anura, ceratophryidae) from the late miocene-early pliocene of central argentina Journal of Vertebrate Paleontology, , in press in press 
504 |a Nieden, F., Anura i subordo aglossa und phanerglossa sectio 1 arcifera (1923) Das Tierreich, 46, pp. 1-584 
504 |a Nixon, K.C., The parsimony ratchet, a new method for rapid parsimony analysis (1999) Cladistics, 15, pp. 407-414 
504 |a Ortiz, D.A., Almeida-Donoso, D., Coloma, L.A., Notes on husbandry, reproduction and development in the pacific horned frog ceratophrys stolzmanni (anura: Ceratophryidae) with comments on its amplexus (2013) International Zoo Yearbook, 47, pp. 151-162 
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504 |a Pyron, R.A., Bio geographic analysis reveals ancient continental vicariance and recent oceanic dispersal in amphibians (2014) Systematic Biology, 63, pp. 779-797 
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504 |a Quinzio, S.I., Fabrezi, M., Faivovich, J., Redescription of the tadpole of chacophrys pierottii (vellard, 1948) (anura, ceratophryidae (2006) South American Journal of Herpetology, 1, pp. 202-209 
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504 |a Reig, O.A., Cei, J.M., Elucidacion morfologico estadistica de las entidades del genero Lepidobatrachus Budgett (Anura, Ceratophrynidae), con consideracion es sobre la extension del distrito chaqueno del dominio zoogeografico subtropical (1963) Physis, 24, pp. 181-204 
504 |a Reig, O.A., Limeses, C.E., Un nuevo genero de anuros ceratofrinidos del distrito chaqueno (1963) Physis, 24, pp. 113-128 
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504 |a Santana, D.O., Faria, D.G., Caldas, F.L.S., De-Carvalho, C.B., Ceratophrys joazeirensis mercadal 1986 (anura: Ceratophryidae): New state record (2014) Check List, 10, pp. 386-387 
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504 |a Soares-Scott, M.D., Trajtengertz, I., Soma, M., Beçak, M.L., C and agas bands of the octaploid untanha frog ceratophrys dorsata (c. Aurita) (8n = 104, amphibia, anura (1988) Brazilian Jo Urnal of Genetics, 11, pp. 625-631 
504 |a Sterli, J., Pol, D., Laurin, M., Incorporating phylogenetic uncertainty on phylogeny-based palaeontological dating and the timing of turtle diversification (2013) Cladistics, 29, pp. 233-246 
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504 |a Trueb, L., Evolutionary relationships of casque-headed tree frogs with co-ossified skulls (family hylidae). University of kansas publications (1970) Museum of Natural History, 18, pp. 547-716 
504 |a Ulloa Kreisel, Z.E., Metamorfosis del aparato digestivo en larvas carnivoras de Ceratophrys cranwelli (Anura: Leptodactylidae (2000) Cuadernos de Herpetologia, 14, pp. 105-116 
504 |a Ulloa Kreisel, Z.E., Caracteristicas morfologicas del tubo digestivo en larvas carnivoras de Lepidobatrachus llanensis (Anura: Leptodactylidae (2002) Acta Zoologica Lilloana, 46, pp. 31-38 
504 |a Valetti, J.A., Salas, N.E., Martino, A.L., A new polyploid species of pleurodema (anura: Leiuperidae) from sierra de comechingones, cordoba, argentina and redescription of pleurodema kriegi (muller, 1926 (2009) Zootaxa, 2073, pp. 1-21 
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504 |a Vieira, K.S., Silva, A.P.Z., Arzabe, C., Cranial morphology and karyotypic analysis of ceratophrys joazeirensis (anura: Ceratophryidae, ceratophryinae): Taxonomic considerations (2006) Zootaxa, 1320, pp. 57-68 
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504 |a Wheeler, W.C., Optimization alignment: The end of multiple sequence alignment in phylogenetics? (1996) Cladistics, 12, pp. 1-9 
504 |a Wheeler, W.C., Op timization alignment: Down, up, error, and improvements (2002) Techniques in Molecular Systematics and Evolution, pp. 55-69. , in De Salle R., Giribet G., Wheeler W.C. (Eds. Birkhauser Verlag, Bassel 
504 |a Wheeler, W.C., Iterative pass optimization of sequence data (2003) Cladistics, 19, pp. 254-260 
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504 |a Wiens, J.J., Graham, C.H., Moen, D.S., Smith, S.A., Reeder, T.W., Evolutionary and ecological causes of the latitudinal diversity gradie nt in hylid frogs: Treefrog tree unearth the roots of high tropiocal diversity (2006) The American Naturalist, 168, pp. 579-596 
504 |a Wild, E.R., Description of the adult skeleton and developmental osteo logy of the hyperossified horned frog ceratophrys cornuta (anura: Leptodactylidae (1997) Journal of Morphology, 232, pp. 169-206 
504 |a Wild, E.R., Description of the chondrocranium and osteogenesis of the chacoan burrowing frog chacophrys pierottii (anura: Leptodactylidae (1999) Journal of Morphology, 242, pp. 229-246 
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504 |a Withers, P.C., Evaporative water loss and the role of cocoon formation in australian frogs (1998) Australian Journal of Zoology, 46, pp. 405-418 
504 |a Withers, P.C., Thompson, G.G., Cocoon for mation and metabolic depression by the aestivating hylid frogs cyclorana australis and cyclorana cultripes (amphibia: Hylidae (2000) Journal of the Royal Society of Western Australia, 83, pp. 39-40 
504 |a Woodburne, M.O., Goin, F.J., Bond, M., Carlini, A.A., Gelfo, J.N., López, G.M., Zimicz, A.M., Paleogene land mammal faunas of south america; A response to global climatic changes and indigenous floral diversity (2014) Journal of Mammal Evolution, 21, pp. 1-73 
504 |a Zárate, M.A., El Cenozoico tardio continental de la provincia de Buenos Aires (2005) Relatorio XVI Congre so Geologico Argentino. Geologia y Recursos Minerales de la Provincia de Buenos Aires, pp. 39-149. , in de Barrio, R., Etcheverry, R., Caballe, M., Llambias, E. (Eds.) 
504 |a Zhang, P., Liang, D., Mao, R.L., Hillis, D.M., Wake, D.B., Cannatella, D.C., Efficient sequencing of anuran mtdnas and a mitoge nomic exploration of the phylogeny and evolution of frogs (2013) Molecular Biology and Evolution, 30, pp. 1899-1915 
504 |a Ziermann, J.M., Infante, C., Hanken, J., Olsson, L., Morphology of the c ranial skeleton and musculature in the obligate carnivorous tadpole of lepidobatrachus laevis (anura: Ceratophryidae) (2013) Acta Zoologica, 94, pp. 101-112 
520 3 |a The horned frog family, Ceratophryidae, currently comprises three genera and 12 extant species, distributed from the Caribbean lowlands to the Pampean grasslands. Horned frogs are fossorial species that are remarkable in terms of their adult and larval morphology, karyotype, behavior, and other aspects of their biology. In this paper we present a molecular phylogenetic analysis with the goals of: (1) exploring the relationships among the species of Ceratophryidae; (2) studying the evolution of polyploidy; (3) studying the evolution of cocoon formation and larval development duration associated with surviving in semiarid environments; and (4) reviewing the ceratophryid fossil record that could be relevant as calibration points in molecular divergence estimations. The analysis included 11 of the 12 extant species and, when possible, multiple exemplars per species, as well as multiple outgroups. Sequence data were obtained on seven mitochondrial and six nuclear genes for up to 8200 bp per specimen. Our results indicate that the individual monophyly of Ceratophrys and Lepidobatrachus is well corroborated. The monotypic Chacophrys is recovered as the sister taxon of Lepidobatrachus, but with Jackknife frequency < 50%. Lepidobatrachus asper is the sister taxon of L. laevis + L. llanensis. Relationships within Ceratophrys are congruent with an earlier proposal, with a clade composed of the species possessing a dorsal bony shield (Ce. aurita, Ce. cranwelli, Ce. joazeirensis, and Ce. ornata), and another clade composed of Ce. stolzmanni, Ce. calcarata, and Ce. cornuta. Unlike earlier proposals, the octoploid species (Ce. aurita, Ce. joazeirensis, and Ce. ornata) are not monophyletic, as the diploid Ce. cranwelli, and Ce. ornata are sister taxa. This result implies an ambiguous optimization of ploidy levels, with either a single origin of octoploidy with a subsequent reversal to diploidy, or two independent origins of octoploidy being equally parsimonious; both alternatives are quite unusual from the perspective of chromosome evolution. Our results suggest that ceratophryids diversified in semiarid environments and three independent events resulted in three species subsequently occupying temperate or tropical humid areas. This early diversification in semiarid areas explains the retention of characteristics associated with these environments (like the production of a cocoon of dead skin during estivation, and possibly an accelerated larval period and development) in species present in humid areas. A revision of the fossil record of this family of frogs indicates that there are only two fossil remains that could serve as calibration points for molecular clock estimation, but a number of issues associated with them preclude their use. © 2014 Brazilian Society of Herpetology.  |l eng 
593 |a División Herpetología, Museo Argentino de Ciencias Naturales Bernardino Rivadavia, Consejo Nacional de Investigaciones Científicas y Técnicas, Ángel Gallardo 470, Buenos Aires, Argentina 
593 |a Departamento de Biodiversidad y Biología Experimental, Facultad de Ciencias Exactas y Naturales, Argentina 
593 |a Departamento de Zoologia, Instituto de Biociências, Universidade de São Paulo, São Paulo, Brazil 
593 |a Laboratorio de Genética Evolutiva, Instituto de Biología Subtropical, Universidad Nacional de Misiones, Posadas, Argentina 
593 |a Instituto de Bio y Geociencias Del NOA, Centro Científico Tecnológico-Salta, Consejo Nacional de Investigaciones Científicas y Técnicas, 9 de Julio 14, Rosario de Lerma, Salta, Argentina 
593 |a Department of Biology and Museum of Natural History, University of Wisconsin-Stevens Point., Stevens Point, WI, United States 
593 |a Departamento de Zoologia, Instituto de Biociências, Universidade Estadual Paulista, Avenida 24A1515, Rio-Claro, São Paulo, Brazil 
690 1 0 |a CERATOPHRYS 
690 1 0 |a DIVERGENCE TIME ESTIMATION 
690 1 0 |a FOSSIL CALIBRATION 
690 1 0 |a HYLOIDES 
690 1 0 |a KARYOTYPE EVOLUTION 
690 1 0 |a LEPIDOBATRACHUS 
690 1 0 |a SEMIARID ENVIRONMENTS 
690 1 0 |a ANURA 
690 1 0 |a CERATOPHRYS 
690 1 0 |a CORNUTA 
690 1 0 |a HEMIPHRACTUS 
690 1 0 |a LEPIDOBATRACHUS 
690 1 0 |a LEPIDOBATRACHUS ASPER 
690 1 0 |a LEPIDOBATRACHUS LAEVIS 
690 1 0 |a LEPIDOBATRACHUS LLANENSIS 
651 4 |a CHACOPHRYS 
651 4 |a CHACOPHRYS 
700 1 |a Nicoli, L. 
700 1 |a Blotto, B.L. 
700 1 |a Pereyra, M.O. 
700 1 |a Baldo, D. 
700 1 |a Barrionuevo, J.S. 
700 1 |a Fabrezi, M. 
700 1 |a Wild, E.R. 
700 1 |a Haddad, C.F.B. 
773 0 |d Sociedade Brasileira de Herpetologia, 2014  |g v. 9  |h pp. 207-227  |k n. 3  |x 18089798  |w (AR-BaUEN)CENRE-9650  |t South Am. J. Herpetol. 
856 4 1 |u https://www.scopus.com/inward/record.uri?eid=2-s2.0-84920483186&doi=10.2994%2fSAJH-D-14-00032.1&partnerID=40&md5=762b161425c3335eaf32a7d417f26c9e  |y Registro en Scopus 
856 4 0 |u https://doi.org/10.2994/SAJH-D-14-00032.1  |y DOI 
856 4 0 |u https://hdl.handle.net/20.500.12110/paper_18089798_v9_n3_p207_Faivovich  |y Handle 
856 4 0 |u https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_18089798_v9_n3_p207_Faivovich  |y Registro en la Biblioteca Digital 
961 |a paper_18089798_v9_n3_p207_Faivovich  |b paper  |c PE 
962 |a info:eu-repo/semantics/article  |a info:ar-repo/semantics/artículo  |b info:eu-repo/semantics/publishedVersion 
999 |c 75679