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Levantamento cariot?pico em esp?cies de peixes marinhos costeiros de fundo arenoso (Osteichthypes, Perciformes)

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Previous issue date: 2007-02-27 / Cytogenetics analyses in fish are important because they compose a private group among the vertebrates, occupying a central position in the animal evolution. The Perciforms Order, dominant in the marine and freshwater environment, it constitutes a model potentially useful in the genetic evaluation of populations, as well as in the understanding of its evolutionary processes. In spite of this, cytogenetics studies in this great group is scarce, above all for the inhabitants of sandy bottom and pelagics habits. The present work proposed to contribute for the cytogenetic characterization of nine species of fish marine of sandy bottom of the coast of Rio Grande do Norte (Brazil), identifying the evolutionary patterns related to the karyotype in these species and the existence of filogenetics affinities between them and other Perciformes. The animals were collected in the beaches of the Redinha, Ponta Negra and B?zios (Coast of Rio Grande do Norte) and in Saint Peter and Saint Paul Archipelago. Later on they were submitted to the cytogenetics technical that consist of mitotic estimulation, obtaining of mitotics chromosomes, proceeded by techniques of conventional coloration (Giemsa) and chromosomic bands (Ag-RONs and C band). Diploid number and fundamental number equal to 48 were observed in most of the species: Menticirrhus americanus, Ophioscion punctatissimus, Pareques acuminatus (Sciaenidae); Chloroscombrus chrysurus (Carangidae); Echeneis sp. 2 (Echeneidae); Archosargus probatocephalus (Sparidae) and Orthopristis ruber (Haemulidae). Trachinotus goodei (NF=52) (Carangidae) and Echeneis sp. 1 (Echeneidae) (NF=54) presented variation in NF, staying constant a diploid number equal to 48. RONs was situated in pericentromeric position in whole the scianids, and in the species Echeneis sp. 2 (22? pair), O. ruber and A. probatocephalus (1? pair), coinciding with great heterocromatics blocks in M. americanus (1? pair), P. acuminatus (2? pairl) and O. ruber (1? pair). RONs was also located in the telomeric area of the short arm of the 5? and 11? acrocentrics pairs in T. goodei, 4? and 19? pairs of C. chrysurus, 1? pair (sm) of Echeneis sp. 1. The C band detected centromeric blocks in most of the chromosomes of the species of Sciaenidae, Carangidae and Echeneidae, with great blocks in A. probatocephalus (4? pair). Heterocromatic blocks in telomeric areas in submetacentrics of Echeneis sp. 1, and pericentromerics in M. americanus (1? and 8? pairs), O. punctatissimus (1? pair) and P. acuminatus (2? pair) were also observed. It is noticed a marked conservatism cromossomic in the species of the family Scianidae and Haemulidae in what says respect to the number of acrocentrics chromosomes and the location of RONs. Even so it is outstanding the presence of heterocromatinization events during the karyotypic evolution of this family. Already in the families Sparidae and Carangidae, the obtained results reaffirm examples of small variations structural resultants of inversion and translocation Robertsonian, as important mechanisms of diversification karyotipical, as well as a pattern numerical evolutionary conserved, also observed in representatives of Echeneidae of Atlantic in relation to Pacific. The presence of RONs multiple, observed in the species T. goodei and C. chrysurus seems to represent a character derived in the family Carangidae. The results for the species O. ruber and A. probatocephalus suggest the presence of possible geographical or climatic barriers among populations of NE of Brazil in relationship the one of the SE / An?lises citogen?ticas em peixes s?o importantes porque os mesmos comp?em um grupo particular entre os vertebrados, ocupando posi??o central na evolu??o animal. A Ordem Perciformes, dominante nos ambientes marinhos e dulc?colas, constitui um modelo potencialmente ?til na avalia??o gen?tica de popula??es, como tamb?m no entendimento de seus processos evolutivos. Apesar disto, ainda s?o escassos os estudos citogen?ticos neste grande grupo, sobretudo para os habitantes de fundo arenoso e h?bitos pel?gicos. O presente trabalho se prop?s a contribuir para a caracteriza??o citogen?tica de nove esp?cies de peixes marinhos litor?neos de fundo arenoso do litoral do Rio Grande do Norte (Brasil), identificando os padr?es evolutivos relacionados ao cari?tipo nestas esp?cies e a exist?ncia de afinidades filogen?ticas entre elas e outros Perciformes. Os animais foram coletados nas praias da Redinha, Ponta Negra e B?zios (Litoral do Rio Grande do Norte) e no Arquip?lago de S?o Pedro e S?o Paulo. Posteriormente foram submetidos ?s t?cnicas citogen?ticas que consistem em estimula??o mit?tica, obten??o de cromossomos mit?ticos, seguida por t?cnicas de colora??o convencional (Giemsa) e bandamentos cromoss?micos (Ag-RONs e bandamento C). N?mero dipl?ide e n?mero fundamental iguais a 48 foram observados na maioria das esp?cies: Menticirrhus americanus, Ophioscion punctatissimus, Pareques acuminatus (Sciaenidae); Chloroscombrus chrysurus (Carangidae); Echeneis sp. 2 (Echeneidae); Archosargus probatocephalus (Sparidae) e Orthopristis ruber (Haemulidae). Trachinotus goodei (NF=52) (Carangidae) e Echeneis sp. 1 (Echeneidae) (NF=54) apresentaram uma varia??o no NF, mantendo-se constante um n?mero dipl?ide igual a 48. As RONs estavam situadas em posi??o pericentrom?rica em todas os scian?deos, e nas esp?cies Echeneis sp. 2 (22? par), O. ruber e A. probatocephalus (1? par), coincidindo com grandes blocos heterocrom?ticos em M. americanus (1? par), P. acuminatus (2? par) e O. ruber (1? par). As RONs tamb?m foram localizadas na regi?o telom?rica do bra?o curto do 5? e 11? pares acroc?ntricos em T. goodei, 4? e 19? pares de C. chrysurus, 1? par (sm) de Echeneis sp. 1. O bandamento C detectou blocos centrom?ricos na maioria dos cromossomos das esp?cies de Sciaenidae, Carangidae e Echeneidae, com grandes blocos em A. probatocephalus (4? par). Blocos heterocrom?ticos em regi?es telom?ricas em submetac?ntricos de Echeneis sp. 1, e pericentrom?ricas em M. americanus (1? e 8? pares), O. punctatissimus (1? par) e P. acuminatus (2? par) tamb?m foram observados. Nota-se um marcante conservadorismo cromoss?mico nas esp?cies da fam?lia Scianidae e Haemulidae no que diz respeito ao n?mero de cromossomos acroc?ntricos e a localiza??o das RONs. Por?m ? destacada a presen?a de eventos de heterocromatiniza??o durante a evolu??o cariot?pica desta fam?lia. J? nas fam?lias Sparidae e Carangidae, os resultados obtidos reafirmam exemplos de pequenas varia??es estruturais resultantes de invers?es e transloca??es Robertsonianas, como principais mecanismos de diversifica??o cariot?pica, bem como um padr?o evolutivo mais conservado numericamente, tamb?m observado em representantes de Echeneidae do Atl?ntico em rela??o ao Pac?fico. A presen?a de RONs m?ltiplas, observadas nas esp?cies T. goodei e C. chrysurus parecem representar um car?ter derivado na fam?lia Carangidae. Os resultados para as esp?cies O. ruber e A. probatocephalus sugerem a presen?a de poss?veis barreiras geogr?ficas ou clim?ticas entre suas popula??es no NE do Brasil, quando comparada com a regi?o SE

Identiferoai:union.ndltd.org:IBICT/oai:repositorio.ufrn.br:123456789/16774
Date27 February 2007
CreatorsAccioly, Ingrid Vilar
ContributorsCPF:56615043491, http://lattes.cnpq.br/8437464961129518, Affonso, Paulo Roberto Antunes de Mello, CPF:03228004716, http://lattes.cnpq.br/4149576837587664, Blaha, Carlos Alfredo Galindo, CPF:80573380082, http://lattes.cnpq.br/2307806644081146, Molina, Wagner Franco
PublisherUniversidade Federal do Rio Grande do Norte, Programa de P?s-Gradua??o em Gen?tica e Biologia Molecular, UFRN, BR, Gen?tica e Biologia Molecular
Source SetsIBICT Brazilian ETDs
LanguagePortuguese
Detected LanguageEnglish
Typeinfo:eu-repo/semantics/publishedVersion, info:eu-repo/semantics/masterThesis
Formatapplication/pdf
Sourcereponame:Repositório Institucional da UFRN, instname:Universidade Federal do Rio Grande do Norte, instacron:UFRN
Rightsinfo:eu-repo/semantics/openAccess

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