DSpace logo

Use este identificador para citar ou linkar para este item: http://repositorioinstitucional.uea.edu.br//handle/riuea/3616
Registro completo de metadados
Campo DCValorIdioma
dc.contributor.authorMartins, Fernando Sanches dos Santos-
dc.date.available2022-01-07T20:31:39Z-
dc.date.issued2019-11-12-
dc.identifier.citationMARTINS, Fernando Sanches dos Santos. História evolutiva de Scoloplax empousa Schaefer, Weitzman & Britski, 1989 ( Siluriformes: Scoloplacidae). 2019. 30 f. TCC (Graduação em Ciências Biológicas) - Universidade do Estado do Amazonas, Manaus.pt_BR
dc.identifier.urihttp://repositorioinstitucional.uea.edu.br//handle/riuea/3616-
dc.description.abstractBiogeographic studies with neotropical ichthyofauna are scarce, since research for a given area of science is welcome. The analysis of several delimitation methods was used to better understand the species Scoloplax empousa and its distribution in the Upper Paraná and Paraguay Basins. Molecular taxonomic approaches such as Barcode DNA have been successfully used in various taxonomic levels and groups, promoting the discovery of cryptic species, the resolution of morphological variation and the explanation of ambiguities within a taxonomic group. This approach is important for the determination of poorly known faunas, such as the Scoloplax empousa species and the genus Scoloplax in general. Studies with Barcode DNA proved to be very efficient in delimiting two morphologically identified groups as S. empousa coincidentally in the isolated regions of such basins. Biogeographic processes such as vicarious barriers were considered to explain such genetic divergence between the two populations, still using as comparative the brother taxonomic group S. distolothrix. Keyword: Barcode, Vicariance, Ichthyofaunapt_BR
dc.languageporpt_BR
dc.publisherUniversidade do Estado do Amazonaspt_BR
dc.rightsAcesso Abertopt_BR
dc.subjectBarcodept_BR
dc.subjectVicariânciapt_BR
dc.subjectIctiofaunapt_BR
dc.subjectVicariancept_BR
dc.subjectIchthyofaunapt_BR
dc.titleHistória evolutiva de Scoloplax empousa Schaefer, Weitzman & Britski, 1989 ( Siluriformes: Scoloplacidae)pt_BR
dc.title.alternativeEvolutionary history of Scoloplax empousa Schaefer, Weitzman & Britski, 1989 ( Siluriformes: Scoloplacidae)pt_BR
dc.typeTrabalho de Conclusão de Cursopt_BR
dc.date.accessioned2022-01-07T20:31:39Z-
dc.contributor.advisor1Rocha, Marcelo Salles-
dc.contributor.advisor1Latteshttp://lattes.cnpq.br/3725637010799117pt_BR
dc.contributor.referee1Buhrnheim, Cristina Motta-
dc.contributor.referee1Latteshttp://lattes.cnpq.br/6552256507605884pt_BR
dc.contributor.referee2Machado, Valéria Nogueira-
dc.contributor.referee2Latteshttp://lattes.cnpq.br/7662550713275071pt_BR
dc.creator.Latteshttp://lattes.cnpq.br/1398920573146150pt_BR
dc.description.resumoOs estudos biogeográficos com a ictiofauna neotropical são escassos, visto isso pesquisas para dada área da ciência são bem-vindas. A análise de diversos métodos de delimitação foi utilizada para buscar a melhor compreensão da espécie Scoloplax empousa e sua distribuição nas Bacias do Alto Paraná e Paraguai. Abordagens taxonômicas moleculares como o DNA Barcode, vem sendo utilizadas com sucesso nos mais variados níveis e grupos taxonômicos, promovendo a descoberta de espécies crípticas, a resolução da variação morfológica e a explicação das ambiguidades dentro de um grupo taxonômico. Essa abordagem é importante para a determinação de faunas pouco conhecidas, como é o caso da espécie Scoloplax empousa e o gênero Scoloplax no geral. Estudos com DNA Barcode se mostraram muito eficientes em delimitar dois grupos identificados morfologicamente como S. empousa coincidentemente nas regiões isoladas de tais bacias. Processos biogeográficos como barreiras vicariantes foram considerados para explicar tal divergência genética entre as duas populações, ainda usando como comparativo o grupo taxonômico irmão S. distolothrix. Palavras-chave: Barcode, Vicariância, Ictiofaunapt_BR
dc.publisher.countryBrasilpt_BR
dc.relation.referencesAVISE, J. C., ARNOLD, J., BALL, R. M., BERMINGHAM, E., LAMB, T., NEIGEL, J.E., REEB, C.A., SAUNDERS, N.C. (1987). Intraspecific phylogeography: The mitochondrial DNA bridge between Population genetics and systematics. Annual Review of Ecology and Systematics 18, 489-522. BAILEY, R.M., BASKIN, J. A. 1989 Scoloplax dicra, a new armored catfish from the Bolivian amazon. Mus. Zool. Univ. Mich 1-113 CARSTENS, B.C., PELLETIER, T.A., REID, N.M., SATLER, J.D., 2013. How to fail at species delimitation. Mol. Ecol. 22, 4369–4383. CARVALHO, D.C., OLIVEIRA, D.A.A., POMPEU, P.S., LEAL, C.G., OLIVEIRA, C., HANNER, R., 2011. Deep barcode divergence in Brazilian freshwater fishes: the case of the São Francisco River basin. Mitochondrial DNA 22, 80–86 DRUMMOND, A.J., RAMBAULT, A., SHAPIRO, B., PYBUS O. G. Bayesian Coalescent Inference of Past Population Dynamics from Molecular Sequences (2005) Department of Zoology, University of Oxford, Oxford, United Kingdom DRUMMOND, A.J., HO, S.Y.W., PHILLIPS, M.J., RAMBAUT, A., 2006. Relaxed phylogenetics and dating with confidence. PLoS Biol. 4, 699–710. doi:10.1371/journal.pbio.0040088 DE OLIVEIRA, R.R.; ROCHA M.S.; ANJOS, M.B.; ZUANON, J.A. & RAPP PY DANIEL, L. 2009. Fish fauna of small streams of the Catua-Ipixuna Extractive Reserve, State of Amazonas, Brazil. Check List, 5(2): 154–172. FUJISAWA, T., BARRACLOUGH, T.G., 2013. Delimiting species using single-locus data and the generalized mixed yule coalescent approach: A revised method and evaluation on simulated data sets. Syst. Biol. 62, 707– 724. GOMES, L.C., PESSALI, T.C., Sales, N.G., POMPEU, P.S., CARVALHO, D.C., 2015. Integrative taxonomy detects cryptic and overlooked fish species in a neotropical river basin. Genética 143, 581–588 HEBERT, P., GREGORY, T.R., 2005. The Promise of DNA Barcoding for Taxonomy. Syst. Biol. 54, 852–859. HUELSENBECK, J.P., 2001. Bayesian Inference of Phylogeny and Its Impact on Evolutionary Biology. Science (80). 294, 2310–2314. HUDSON R.R. 2002. Generating samples under aWright-Fisher neutral model of genetic variation. Bioinformatics 18:337–338.Parenti and Rauchenberger, 1989 HEBERT, P.D.N., CYWINSKA, A., BALL, S.L., DEWAARD, J.R., 2003. Biological identifications through DNA barcodes. Proc. R. Soc. B Biol. Sci. 270, 313–32 HORTON, B. K., DECELLES, P. G., The modern foreland basin system adjacent to the Central Andes. Geology; October 1997; v. 25; no. 10; p. 895– 898 LARSSON, A., (2014) AliView: a fast and lightweight alignment viewer and editor for large datasets. Bioinformatics, 30 n. 22, p. 3276-327. LUNDBERG, J.G., MARSHALL, L.G., GUERREROG, J., HORTON, B., MALABARBA, M.C.S.L., WESSELINGH, F., 1998. The stage for neotropical fish diversification a history of tropical south american rivers. Phylogeny Classif. Neotrop. Fishes 603. LARA, A., PONCE DE LEÓN, J.L., RODRIGUEZ, R., CASANE, D., CÔTE, G., BERNATCHEZ, L., GARCIAMACHADO, E., 2010. DNA barcoding of Cuban freshwater fishes: Evidence for cryptic species and taxonomic conflicts. Mol. Ecol. Resour. 10, 421–430. MINISTERIO DO MEIO AMBIENTE, Secretaria de Recursos hídricos. Caderno da região hidrográfica amazônica. Ed.01. Brasília, DF. Ministério da educação. 2006. 124p NEIL, C.; ELSENBEER, H.; KRUSCHE, A. V.; LEHMANN, J.; MARKEWITH; FIGUEIREDO, R.de O. (2006). Hydrological and Biogechemical Processes in a Changing Amazon: Results from small watershed studies and the Large-Scale Biosphere- Atmosphere Experiment. Hydrological processes. 20, p. 2467-2477. PEREIRA, L.H.G., MAIA, G.M.G., HANNER, R., FORESTI, F., OLIVEIRA, C., 2013. Can DNA barcoding accurately discriminate megadiverse neotropical freshwater fish fauna? BMC Genet. 14, 20. PEREIRA, L.H.G., MAIA, G.M.G., HANNER, R., FORESTI, F., OLIVEIRA, C., 2011. DNA barcodes discriminate freshwater fishes from the Paraíba do Sul River Basin, São Paulo, Brazil. Mitochondrial DNA 22, 71–79. PUILLANDRE, N., LAMBERT, A., BROUILLET, S., ACHAZ, G., 2012. ABGD, Automatic Barcode Gap Discovery for primary species delimitation. Mol. Ecol. 21, 1864–1877. PONS, J., BARRACLOUGH, T., GOME-ZURITA, J., CARDOSO, A., DURAN, D., HAZELL, S., KAMOUN, S., SUMLIN, W., VOGLER, A., 2006. Sequence Based Species Delimitation for the DNA Taxonomy of Undescribed Insects. Syst. Biol. 55, 595–609. ROSSO, J.J., MAGABRAGAÑA, E., GONZÁLEZ, C, M., DIAZ DE ASTARLOA, J.M., 2012. DNA barcoding neotropical fishes: Recent advances from the Pampa Plain, Argentina. Mol. Ecol. Resour. 12, 999–1011. ROCHA, M.S.; DE OLIVEIRA, R.R. & RAPP PY-DANIEL, L. 2008. Scoloplax baskini: a new spiny dwarf catfish from rio Aripuanã, Amazonas, Brazil (Loricarioidei: Scoloplacidae). Neotropical Ichthyology, 6 (3): 323–328. SILVA, J. M. C., RYLANDS, A. B., FONSECA, G. A. B. 2005 The fate of Amazonian areas of endemism. Conserv. Biol. 19, 689–694. SCHAEFER, S.A. 1990. Anatomy and relationships of the scoloplacidae catfishes. Proceedings of the Academy of Natural Sciences of Philadelphia, 142: 167–210. SCHAEFER, S.A 2003. Scoloplacidae. In: Reis, R.E.; Kullander, S.O., & Ferraris, Jr., C.J. (Eds.). Checklist of the freshwater fishes of South and Central America. Edipucrs, Porto Alegre. p. 310–311. SCHAEFER, S.A.; WEITZMAN, S.H. & BRISTIK, H.A. 1989. Review of the neotropical catfish genus Scoloplax (Pisces: Loricarioidea: Scoloplacidae) with comments on reductive characters in phylogenetic analysis. Proceedings of the Academy of Natural Sciences of Philadelphia, 141: 181–211. SAZIMA, I.; MACHADO, F.A. & ZUANNON, J.A. 2000. Natural history of Scoloplax empousa (Scoloplacidae), a minute spiny catfish from the Pantanal wetlands in western Brazil. Ichthyological Exploration of Freshwaters, 11: 89–95. TAMURA, K., STECHER, G., PETERSON, D., FILIPSKI, A., KUMAR, S., 2018. MEGAX: Molecular evolutionary genetics analysis version 10.0. Mol. Biol. Evol. 30, 2725–2729. STAMATAKIS, A., 2006. RAxML-VI-HPC: Maximum likelihood-based phylogenetic analyses with thousands of taxa and mixed models. Bioinformatics 22, 2688–2690. TANG, C.Q., HUMPHREYS, A.M., FONTANETO, D., BARRACLOUGH, T.G., 2014. Effects of phylogenetic reconstruction method on the robustness of species delimitation using single-locus data 1086–1094. doi:10.1111/2041- 210X.12246 VARI, R.P., MALABARBA, L.R., 1998. Neotropical Ichthyology: An Overview. Phylogeny Classif. Neotrop. Fishes 1870, 1–11. VALDEZ-MORENO, M., IVANOVA, N. V., ELIAS-GUTIÉRREZ, M., CONTRERAS-BALDERAS, S., HEBERT, P.D.N., 2009. Probing diversity in freshwater fishes from Mexico and Guatemala with DNA barcodes. J. Fish Biol. 74, 377–402. YULE, G.U., 1925. A mathematical theory of evolution, based on the conclusions of Dr. J. C. Willis, F.R.S. Philos. Trans. R. Soc. Lond. B 213, 402–410. ZHANG, J., KAPLI, P., PAVLIDIS, P., STAMATAKIS, A., 2013. A general species delimitation method with applications to phylogenetic placements 29, 2869–2876.pt_BR
dc.subject.cnpqCiências Biológicaspt_BR
dc.publisher.initialsUEApt_BR
Aparece nas coleções:ENS - Trabalho de Conclusão de Curso de Graduação

Arquivos associados a este item:
Arquivo Descrição TamanhoFormato 
História evolutiva de Scoloplax empousa Schaefer, Weitzman & Britski, 1989 ( Siluriformes - Scoloplacidae).pdf672,5 kBAdobe PDFVisualizar/Abrir


Os itens no repositório estão protegidos por copyright, com todos os direitos reservados, salvo quando é indicado o contrário.