634 resultados para GTG-banding


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The present study aimed to cytogenetic analysis and structural and molecular level of four fish species of the genus Trichomycterus: T. diabolus, T. iheringi, T. zonatus and T. cf. mimonha collected in different river basins in Brazil. Techniques were used for classical cytogenetic (Giemsa, Silver nitrate impregnation, C-banding) and molecular with the chromosomal location of genes for 18S and 5S rDNA. All individuals examined had a diploid number 54 chromosomes and karyotype consisting of types of metacentric, submetacentric and subtelocentric. The constitutive heterochromatin identified by C-banding was observed in two small blocks in the karyotype of T. diabolus and large blocks of centromeric several pairs in chromosomal karyotypes of T. iheringi, T. zonatus and T. cf. mimonha. The Silver nitrate impregnation and hybridization with 18S rDNA probe revealed the existence of only a couple carryng nucleolar organizing regions (NORs) on the species T. diabolus, T. iheringi and T. cf mimonha, and two pairs carrying 18S rDNA in T. zonatus. The 5S rDNA was observed in interstitial position 6 of the pair in T. iheringi, the synteny with the two pair in 18S rDNA of T.diabolus in pericentromeric position of and two pairs submetacentric, one being also a case of synteny with the 18S rDNA in T. zonatus and T. cf. mimonha, this rDNA was located in the pairs 3, 18 and 25, and synteny in the 18S rDNA pair 18. Although representatives of these four species Trichomycterus present diploid number and karyotypic formula preserved, three is specific about the distribuition patterns of heterochromatin and location of rDNA sequences, indicating that chromosomal differentiation events in this group of fish are acting directly on these genomic portions

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Cytogenetic analyses of triatomines are considered to be important taxonomic tools. Thus, we analyzed the pattern of constitutive heterochromatin in 7 species of triatomine with fragmentation of the sex chromosome X, focusing on the cytotaxonomy of these triatomines. The species analyzed included Triatoma vitticeps, Triatoma melanocephala, Triatoma tibiamaculata, Triatoma protracta, Meccus pallidipennis, Panstrongylus megistus, and Panstrongylus lignarius. The seminiferous tubules of the adult males were subjected to C-banding. P. megistus and P. lignarius showed differences in chromosome number and disposition of constitutive heterochromatin, as only P. lignarius showed C-blocks in autosomes. C-banding can differentiate these species, since one of the sex chromosome (X) is heterochromatic in T. vitticeps. T. protracta showed C-blocks in both ends of all autosomes, T. tibiamaculata showed terminal C-dots in some autosomal pairs and M. pallidipennis did not show constitutive heterochromatin in autosomes. Thus, we confirmed the heterochromatic pattern of 7 species of insects and emphasized the importance of cytogenetic techniques for C-banding for taxonomy studies of the triatomines, which are important vectors of Chagas disease.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Pós-graduação em Pesquisa e Desenvolvimento (Biotecnologia Médica) - FMB

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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The desert locust (Schistocerca gregaria) has been used as material for numerous cytogenetic studies. Its genome size is estimated to be 8.55 Gb of DNA comprised in 11 autosomes and the X chromosome. Its X0/XX sex chromosome determinism therefore results in females having 24 chromosomes whereas males have 23. Surprisingly, little is known about the DNA content of this locust's huge chromosomes. Here, we use the Feulgen Image Analysis Densitometry and C-banding techniques to respectively estimate the DNA quantity and heterochromatin content of each chromosome. We also identify three satellite DNAs using both restriction endonucleases and next-generation sequencing. We then use fluorescent in situ hybridization to determine the chromosomal location of these satellite DNAs as well as that of six tandem repeat DNA gene families. The combination of the results obtained in this work allows distinguishing between the different chromosomes not only by size, but also by the kind of repetitive DNAs that they contain. The recent publication of the draft genome of the migratory locust (Locusta migratoria), the largest animal genome hitherto sequenced, invites for sequencing even larger genomes. S. gregaria is a pest that causes high economic losses. It is thus among the primary candidates for genome sequencing. But this species genome is about 50 % larger than that of L. migratoria, and although next-generation sequencing currently allows sequencing large genomes, sequencing it would mean a greater challenge. The chromosome sizes and markers provided here should not only help planning the sequencing project and guide the assembly but would also facilitate assigning assembled linkage groups to actual chromosomes.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)