dc.creatorBruschi D.P.
dc.creatorBusin C.S.
dc.creatorToledo L.F.
dc.creatorVasconcellos G.A.
dc.creatorStrussmann C.
dc.creatorWeber L.N.
dc.creatorLima A.P.
dc.creatorLima J.D.
dc.creatorRecco-Pimentel S.M.
dc.date2013
dc.date2015-06-25T19:19:03Z
dc.date2015-11-26T15:17:22Z
dc.date2015-06-25T19:19:03Z
dc.date2015-11-26T15:17:22Z
dc.date.accessioned2018-03-28T22:27:04Z
dc.date.available2018-03-28T22:27:04Z
dc.identifier
dc.identifierBmc Genetics. , v. 14, n. , p. 1 - 14, 2013.
dc.identifier14712156
dc.identifier10.1186/1471-2156-14-70
dc.identifierhttp://www.scopus.com/inward/record.url?eid=2-s2.0-84882651093&partnerID=40&md5=ca2b31119482a9fcb17ee70488b17294
dc.identifierhttp://www.repositorio.unicamp.br/handle/REPOSIP/89869
dc.identifierhttp://repositorio.unicamp.br/jspui/handle/REPOSIP/89869
dc.identifier2-s2.0-84882651093
dc.identifier.urihttp://repositorioslatinoamericanos.uchile.cl/handle/2250/1259433
dc.descriptionBackground: The taxonomic and phylogenetic relationships of the genus Phyllomedusa have been amply discussed. The marked morphological similarities among some species hamper the reliable identification of specimens and may often lead to their incorrect taxonomic classification on the sole basis of morphological traits. Phenotypic variation was observed among populations assigned to either P. azurea or P. hypochondrialis. In order to evaluate whether the variation observed in populations assigned to P. hypochondrialis is related to that in genotypes, a cytogenetic analysis was combined with phylogenetic inferences based on mitochondrial and nuclear sequences.Results: The inter- and intra-population variation in the external morphology observed among the specimens analyzed in the present study do not reflect the phylogenetic relationships among populations. A monophyletic clade was recovered, grouping all the specimens identified as P. hypochondrialis and specimens assigned P. azurea from Minas Gerais state. This clade is characterized by conserved chromosomal morphology and a common C-banding pattern. Extensive variation in the nucleolar organizing region (NOR) was observed among populations, with four distinct NOR positions being recognized in the karyotypes. Intra-population polymorphism of the additional rDNA clusters observed in specimens from Barreiras, Bahia state, also highlights the marked genomic instability of the rDNA in the genome of this group. Based on the topology obtained in the phylogenetic analyses, the re-evaluation of the taxonomic status of the specimens from the southernmost population known in Brazil is recommended.Conclusions: The results of this study support the need for a thorough revision of the phenotypic features used to discriminate P. azurea and P. hypochondrialis. The phylogenetic data presented here also contribute to an extension of the geographic range of P. hypochondrialis, which is known to occur in the Amazon basin and neighboring areas of the Cerrado savanna, where it may be sympatric with P. azurea, within contact zones. The misidentification of specimens may have led to inconsistencies in the original definition of the geographic range of P. azurea. The variability observed in the NOR of P. hypochondrialis reinforces the conclusion that these sites represent hotspots of rearrangement. Intraspecific variation in the location of these sites is the result of constant rearrangements that are not detected by classical cytogenetic methods or are traits of an ancestral, polymorphic karyotype, which would not be phylogenetically informative for this group. © 2013 Bruschi et al.; licensee BioMed Central Ltd.
dc.description14
dc.description
dc.description1
dc.description14
dc.descriptionCruz, C.A.G., Sobre as relações intergenéricas de Phyllomedusinae da Floresta Atlântica (Amphibia, Anura, Hylidae) (1982) Rev Bras Biol, 50, pp. 709-726
dc.descriptionCaramaschi, U., Redefinição do grupo de Phyllomedusa hypochondrialis, com redescrição de P. megacephala (Miranda-Ribeiro, 1926), revalidação de P. azurea Cope, 1826 e descrição de uma nova espécie (Amphibia, Anura, Hylidae) (2006) Arq Mus Nac, 64, pp. 159-179
dc.descriptionFaivovich, J., Haddad, C.F.B., Garcia, P.C.A., Frost, D.R., Campbell, J.A., Wheeler, W.C., A systematics review of the frog family Hylidae, with special reference to the Hylinae, a phylogenetic analysis and taxonomic revision (2005) Bul Am Nat Hist, 294, pp. 1-240
dc.descriptionFaivovich, J., Haddad, C.F.B., Baêta, D., Jungfer, K.H., Álvares, G.F.R.A., Brandão, R.A., Sheil, C., Wheeler, W.C., The phylogenetic relationships of the charismatic poster frogs, Phyllomedusinae (Anura, Hylidae) (2010) Cladistics, 25, pp. 1-35
dc.descriptionFrost, D.R., Amphibian Species of the World: An online reference, , http://research.amnh.org/vz/herpetology/amphibia/
dc.descriptionBrandão, R.A., Álvares, G.F.R., Remarks on " a new Phyllomedusa Wagler (Anura: Hylidae) with reticulated pattern on flanks from Southeastern Brazil" (2044) Zootaxa, 2009, pp. 61-64
dc.descriptionGiaretta, A.A., Filho, J.C.O., Kokubum, M.N., A new Phyllomedusa Wagler (Anura, Hylidae) with reticulated pattern on flanks from Southeastern Brazil (2007) Zootaxa, 1614, pp. 31-41
dc.descriptionBaêta, D., Caramaschi, U., Cruz, C.A.G., Pombal, J.P., Phyllomedusa itacolomi Caramaschi, Cruz & Feio, 2006, a junior synonym of Phyllomedusa ayeaye (B. Lutz, 1966) (Hylidae, Phyllomedusinae) (2226) Zootaxa, 2226, pp. 58-65
dc.descriptionCaramaschi, U., Cruz, C.A.G., Feio, R.N., A new species of Phyllomedusa Wagler, 1830 from the state of Minas Gerais, Brazil (Amphibia Anura, Hylidae) (2007) Bol Mus Nac, 524, pp. 1-8
dc.descriptionCalderon, L.A., Messias, M.R., Serrano, R.P., Zaqueo, K.D., Souza, E.S., Nienow, S.S., Cardozo-Filho, J.L., Stabeli, R.G., Amphibia, Anura, Hylidae, Phyllomedusinae, Phyllomedusa azurea: Distribution extension and geographic distribution map (2009) Check List, 5 (2), pp. 317-319
dc.descriptionLucas, E.M., Fortes, V.B., Garcia, P.C.A., Amphibia, Anura, Hylidae, Phyllomedusa azurea Cope, 1862: Distribution extension to southern Brazil (2010) Check List, 6 (1), pp. 164-166
dc.descriptionPaiva, C.R., Nascimento, J., Silva, A.P.Z., Bernarde, O.S., Ananias, F., Karyotypes and Ag-NORs in Phyllomedusa camba De La Riva, 1999 and P. rohdei Mertens, 1926 (Anura, Hylidae, Phyllomedusinae): cytotaxonomic considerations (2010) Ital J Zool, 77, pp. 116-121
dc.descriptionBarth, A., Solé, M., Costa, M.A., Chromosome polymorphism in Phyllomedusa rohdei populations (Anura, Hylidae) (2009) J Herpetol, 43, pp. 676-679
dc.descriptionBruschi, D.P., Busin, C.S., Siqueira, S., Recco-Pimentel, S.M., Cytogenetic analysis of two species in the Phyllomedusa hypochondrialis group (Anura, Hylidae) (2012) Hereditas, 149, pp. 34-40. , 10.1111/j.1601-5223.2010.02236.x, 22458439
dc.descriptionMorando, M., Hernando, A., Localización cromosómica de genes ribosomales activos em Phyllomedusa hypochondrialis y P. sauvagii (Anura, Hylidae) (1997) Cuad Herpetol, 11, pp. 31-36
dc.descriptionKasahara, S., Campos, J.R.C., Catroli, G.F., Haddad, C.F.B., Cytogenetics of Phyllomedusa distincta (2n=2x=26), Phyllomedusa tetraploida (2n=4x=52) and their triploid hybrids (2n=3x=39) [abstract] (2007) Chrom Res, 5, pp. s10
dc.descriptionBeçak, M.L., Denaro, L., Beçak, W., Polyploidy and mechanisms of karyotypic diversification in Amphibia (1970) Cytogenetics, 9, pp. 225-238. , 10.1159/000130093, 5474808
dc.descriptionHaddad, C.F., Pombal-Jr, J.P., Batistic, R.F., Natural hybridization between diploid and tetraploid species of leaf-frogs, genus Phyllomedusa (Amphibia) (1994) J Herpetol, 28, pp. 425-430
dc.descriptionSchmid, M., Feichtinger, W., Weimer, R., Mais, C., Bolaños, F., León, P., Chromosome banding in Amphibia XXI. Inversion polymorphism and multiple nucleolus organizer regions in Agalychnis callidryas (Anura, Hylidae) (1995) Cytogenet Cell Genet, 69, pp. 18-26. , 10.1159/000133929, 7835080
dc.descriptionLourenço, L.B., Garcia, P.C., Recco-Pimentel, S.M., Cytogenetics of a new species of the Paratelmatobius cardosoi group (Anura: Leptodactylidae) with the description of an apparent case of pericentric inversion (2003) Amphibia-Reptilia, 24 (1), pp. 47-55
dc.descriptionBusin, C.S., Lima, A.P., Strussmann, C., Siqueira-Jr, S., Recco-Pimentel, S.M., Chromosomal differentiation of populations of Lysapsus limellus limellus and L. l. bolivianus, and of Lysapsus caraya (Hylinae, Hylidae) (2006) Micron, 37, pp. 355-362. , 10.1016/j.micron.2005.11.009, 16448818
dc.descriptionSilva, A.P.Z., Haddad, C.F.B., Kasahara, S., Nucleolus organizer in Physalaemus cuvieri (Anura, Leptodactylidae), with evidence of a unique case of Ag-NOR variability (1999) Hereditas, 131, pp. 135-141
dc.descriptionTargueta, C.P., Rivera, M., Souza, M.B., Recco-Pimentel, S.M., Lourenço, L.B., Cytogenetics contributions for the study of the Amazonian Engystomops (Anura: Leiuperidae) assessed in the light of phylogenetic relationships (2010) Mol Phyl Evol, 54, pp. 709-725
dc.descriptionCazaux, B., Catalan, J., Veyrunes, F., Douzery, E.J.P., Britton-Davidian, J., Are ribosomal DNA clusters rearrangement hotspots? A case in the genus Mus (Rodentia, Muridae) (2011) BMC Evol Biol, 11, p. 124. , 10.1186/1471-2148-11-124, 3112088, 21569527
dc.descriptionBritton-Davidian, J., Cazaux, B., Catalan, J., Chromosomal dynamics of nucleolar organizer regions (NORs) in the house mouse: micro-evolutionary insights (2012) Heredity, 108, pp. 68-74. , 10.1038/hdy.2011.105, 3238117, 22086078
dc.descriptionMedeiros, L.R., Rossa-Feres, D.C., Recco-Pimentel, S.M., Chromosomal differentiation of Hyla nana and Hyla sanborni (Anura, Hylidae) with a description of NOR polymorphism in H. nana (2003) J Hered, 94, pp. 149-154. , 10.1093/jhered/esg019, 12721226
dc.descriptionSiqueira, S., Aguiar, O., Pansonato, A., Giaretta, A.A., Strüssmann, C., Martins, I., Recco-Pimentel, S.M., The karyotype of three Brazilian Terrarana frogs (Amphibia, Anura) with evidence of a new Barycholos species (2009) Genet Mol Biol, 32 (3), pp. 470-476. , 10.1590/S1415-47572009005000044, 3036057, 21637508
dc.descriptionAndreone, F., Aprea, G., Vences, M., Odierna, G., A new frog of the genus Mantidactylus from the rainforests of North-Eastern Madagascar, and its karyological affinities (2003) Amphibia-Reptilia, 24, pp. 285-303
dc.descriptionNguyen, T.T., Aniskin, V.M., Gerbault-Seureau, M., Planton, H., Renard, J.P., Nguyen, B.X., Hassanin, A., Volobouev, V.T., Phylogenetic position of the saola (Pseudoryx nghetinhensis) inferred from cytogenetic analysis of eleven species of Bovidae (2008) Cytogenet Genome Res, 122, pp. 41-54. , 10.1159/000151315, 18931485
dc.descriptionNguyen, P., Sahara, K., Yoshio, A., Marec, F., Evolutionary dynamics of rDNA clusters on chromosomes of moths and butterflies (Lepidoptera) (2010) Genetica, 138, pp. 343-354. , 10.1007/s10709-009-9424-5, 19921441
dc.descriptionBatistic, R.F., (1989) Aspectos citogenéticos da evolução em Phyllomedusa (Anura-Amphibia). PhD thesis, , Ribeirão Preto, São Paulo: Faculdade de Medicina, USP
dc.descriptionWiley, J.E., Little, M.L., Romano, M.A., Blount, D.A., Cline, C.R., Polymorphism in the location of the 18S and 28S rDNA genes in chromosomes of the diploid-tetraploid tree frogs Hyla chrysoscelis and Hyla versicolor (1989) Chromosoma, 97, pp. 481-487
dc.descriptionKaiser, H., Mais, C., Bolaños, F., Steinlein, C., Feichtinger, W., Schmid, M., Chromosomal investigation of three Costa Rica frogs from the 30-chromosome radiation of Hyla with description of a unique geographic variation in nucleolus organizer regions (1996) Genetica, 98, pp. 95-102
dc.descriptionDatson, P.M., Murray, B.G., Ribosomal DNA locus evolution in Nemesia: transposition rather than structural rearrangement as the key mechanism? (2006) Chrom Res, 14, pp. 845-857. , 10.1007/s10577-006-1092-z, 17195054
dc.descriptionCabrero, J., Camacho, J.P.M., Location and expression of ribosomal RNA genes in grasshoppers: abundance of silent and cryptic loci (2008) Chrom Res, 16, pp. 595-607. , 10.1007/s10577-008-1214-x, 18431681
dc.descriptionHuang, J., Ma, L., Fei, S., Li, L., 45S rDNA regions are chromosome fragile sites expressed as gaps in vitro on metaphase chromosomes of root-tip meristematic cells in Lolium spp (2008) Plos One, 3, pp. e2167. , 10.1371/journal.pone.0002167, 2366065, 18478113
dc.descriptionStankiewicz, P., Lupski, J.R., Genome architecture, rearrangements and genomic disorders (2002) Trends Genet, 18, pp. 74-81. , 10.1016/S0168-9525(02)02592-1, 11818139
dc.descriptionSchubert, I., Wobus, U., In situ hybridization confirms jumping nucleolus organizing regions in Allium (1985) Chromosoma, 92, pp. 143-148
dc.descriptionRaskina, Q., Barber, J.C., Nevo, E., Belyayev, A., Repetitive DNA and chromosomal rearrangements: speciation-related events in plant genomes (2008) Cytogent Genome Res, 120, p. 351
dc.descriptionPrado, V.H.M., Borges, R.E., Silva, F.R., Tognolo, T.T., Rossa-Feres, D.C., Amphibia, Anura, Hylidae, Phyllomedusa azurea: Distribution extension (2008) Check List, 4 (1), pp. 55-56
dc.descriptionBencke, G.A., Mauricio, G.N., Develey, P.F., Goerck, J.M., (2006) Áreas Importantes Para a Conservação das Aves no Brasil: Parte 1 - Estados do Domínio da Mata Atlântica, , São Paulo: SAVE Brasil
dc.descriptionGoebel, A.M., Donnelly, J.M., Atz, M.E., PCR primers and amplification methods for 12S ribosomal DNA, the control region, cytochrome oxidase I, and cytochrome b in bufonids and other frogs, and an overview of PCR primers which have amplified DNA in amphibians successfully (1999) Mol Phylogenet Evol, 11, pp. 163-199. , 10.1006/mpev.1998.0538, 10082619
dc.descriptionThompson, J.D., Higgins, D.G., Gibson, T.J., CLUSTAL W: improving the sensitivity of progressive multiple sequence alignments through sequence weighting, position specific gap penalties and weight matrix choice (1994) Nucleic Acids Res., 22, pp. 4673-4680. , 10.1093/nar/22.22.4673, 308517, 7984417
dc.descriptionRoquist, F., Huelsenbeck, J.P., MrBayes 3: Bayesian phylogenetic inference under mixed models (2003) Bioinformatics, 19, pp. 1572-1574. , 10.1093/bioinformatics/btg180, 12912839
dc.descriptionPosada, D., Crandall, K.A., Model Test: testing the model of DNA substitution (1998) Bioinformatics, 14, pp. 817-818. , 10.1093/bioinformatics/14.9.817, 9918953
dc.descriptionKing, M., Rofe, R., Karyotypic variation in the Australian gekko Phyllodactylus marmoratus (Gray) (Gekkonidae: Reptilia) (1976) Chromosoma, 54, pp. 75-87. , 10.1007/BF00331835, 1248335
dc.descriptionSchmid, M., Chromosome banding in Amphibia. I. Constitutive heterochromatin and nucleolus organizer regions in Bufo and Hyla (1978) Chromosoma, 66, pp. 361-368
dc.descriptionHowell, W.M., Black, D.A., Controlled silver staining of nucleolar organizer regions with a protective colloidal developer: a -1 step method (1980) Experientia, 36, pp. 1014-1015. , 10.1007/BF01953855, 6160049
dc.descriptionSumner, A.T., A simple technique for demostrating centromeric heterochromatin (1972) Exp Cell Res, 83, pp. 438-442
dc.descriptionGreen, D.M., Sessions, S.K., Nomenclature for chromosomes (1991) Amphibian cytogenetics and evolution, pp. 431-432. , San Diego: Academic Press
dc.languageen
dc.publisher
dc.relationBMC Genetics
dc.rightsaberto
dc.sourceScopus
dc.titleEvaluation Of The Taxonomic Status Of Populations Assigned To Phyllomedusa Hypochondrialis (anura, Hylidae, Phyllomedusinae) Based On Molecular, Chromosomal, And Morphological Approach
dc.typeArtículos de revistas


Este ítem pertenece a la siguiente institución