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Chromosomal characterization in two species of an Astyanax bimaculatus complex (Characidae Characiformes) using different techniques of chromosome banding

机译:使用不同的染色体条带技术对两种Astyanax bimaculatus复合体(CharacidaeCharaciformes)的染色体特征进行鉴定

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摘要

Astyanax has been the subject of extensive cytogenetic studies due to its wide karyotypic diversity. This genus comprises species complexes, namely groups of fish of difficult morphological differentiation, such as the bimaculatus complex, which includes the characids with a rounded humeral spot. Thence, the present study proposed to accomplish a cytogenetic characterization of two species of this complex: A. asuncionensis and A. altiparanae, aiming to find chromosomal markers that differentiate these species, as well as achieve a better understanding of the karyotype evolution in the genus. For this we used different techniques of chromosome banding as C-banding, impregnation by silver nitrate, fluorochrome staining and FISH with 18S rDNA probe. This is the first cytogenetic study in A. asuncionensis, from Miranda river, which presented 2n = 50 and 18 m + 22sm + 6st + 4a (FN = 96) and single NORs. The populations of A. altiparanae also presented 2n = 50, but with different karyotypic formulae: the population of the Quexada river presented 16 m + 24sm + 4st + 6a (FN = 94) and the Esperança stream and Jacutinga river showed 16 m + 20sm + 4st + 10a (FN = 90). All analyzed populations showed an interindividual variation in the number and location of the nucleolar organizer regions (NORs). Single and multiple NORs were detected either by impregnation with silver nitrate or by FISH with 18S rDNA probe. After C-banding, the two species differed in relation to the composition and heterochromatin distribution. The meiotic cells of A. altiparanae male individuals were also analyzed, showing that, despite the high karyotype variability, chromosome pairing occurs normally. The data show that A. altiparanae and A. asuncionensis share some characteristics with other species of the bimaculatus complex, suggesting a close phylogenetic relationship among those species. However, some features can be used as differentiation chromosomal markers in altiparanae/asuncionensis morphotypes, which could result from a natural speciation process.
机译:由于其广泛的核型多样性,Astyanax已成为广泛的细胞遗传学研究的主题。该属包括物种复合体,即形态上难以区分的鱼类群,例如bimaculatus复合体,其中包括具有圆形肱骨斑点的焦酸。因此,本研究提出完成该复合体两个物种的细胞遗传学表征:A。asuncionensis和A. altiparanae,旨在寻找区分这些物种的染色体标记,并更好地了解该属的核型进化。为此,我们使用了不同的染色体显带技术,例如C显带,硝酸银浸渍,荧光染料染色以及18S rDNA探针进行FISH。这是来自米兰达河的松果曲霉的第一个细胞遗传学研究,显示2n = 50和18m + 22sm + 6st + 4a(FN = 96)和单个NOR。 Altiparanae的种群也呈现2n = 50,但具有不同的核型式:Quexada河的种群呈现16m + 24sm + 4st + 6a(FN = 94),Esperança河流和Jacutinga河的种群呈现16m + 20sm + 4st + 10a(FN = 90)。所有分析的种群均在核仁组织区(NORs)的数量和位置上存在个体差异。通过用硝酸银浸渍或通过带18S rDNA探针的FISH检测单个或多个NOR。在C带后,这两种物质在组成和异染色质分布方面有所不同。还分析了拟南芥男性个体的减数分裂细胞,结果表明,尽管核型变异性很高,染色体配对仍正常发生。数据显示,高海拔拟南芥和松散拟南芥与比目鱼群其他物种共有一些特征,表明这些物种之间存在着密切的系统发育关系。但是,某些特征可以用作alparparanae / asuncionensis形态型的分化染色体标记,这可能是自然形成过程引起的。

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