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首页> 外文期刊>Anais da Academia Brasileira de Ciencias >Chromosome diversity in species of the genus Arachis, revealed by FISH and CMA/DAPI banding, and inferences about their karyotype differentiation
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Chromosome diversity in species of the genus Arachis, revealed by FISH and CMA/DAPI banding, and inferences about their karyotype differentiation

机译:Arachis种类的染色体多样性,由鱼和CMA / DAPI条带透露,以及对其核型分化的推论

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The species of the genus Arachis (Leguminosae) are ordered into nine sections. The assignment of genome types in this genus has been based on cross-compatibility analysis and molecular cytogenetic studies. The latter has also allowed karyotypically establishing well-defined genomes and reassigning the genome of several species. However, most of these studies have been focused mainly on the sections Arachis and Rhizomatosae. To increase the knowledge about the chromosome diversity of the whole genus, here we performed a detailed karyotype characterization of representative species of most of the sections and genomes of Arachis. This characterization included chromosome morphology, CMA/DAPI chromosome banding, and chromosome marker localization (rDNAloci and one satDNA sequence) by fluorescent in situ hybridization (FISH). Based on the data obtained and other previously published data, we established the karyotype similarities by cluster analysis and defined eleven karyotype groups. The grouping was partly coincident with the traditional genome assignment, except for some groups and some individual species. Karyotype similarities among some genomes were also found. The main characteristics of each karyotype group of Arachis were summarized. Together, our results provide information that may be beneficial for future cytogenetic and evolutionary studies, and also contribute to the identification of interspecific hybrids.
机译:甘氨酸属(豆科植物)的种类被命令为九个部分。该属性在该属的基因组类型基于交叉相容性分析和分子细胞遗传学研究。后者还允许核型上建立明确定义的基因组,并重新分配几种物种的基因组。然而,这些研究中的大多数主要集中在植物和根瘤菌段。为了提高关于整个属的染色体多样性的知识,在这里,我们进行了大多数植物的主要部分和基因组的特征的详细核型表征。该表征包括染色体形态,CMA / DAPI染色体条带,以及荧光原位杂交(鱼)的染色体标记定位(RDNALoci和一种撒腹序列)。基于所获得的数据和其他先前发布的数据,我们通过群集分析和定义了11个核型组建立了核型相似之处。除了一些群体和一些单独的物种外,分组部分与传统的基因组分配部分巧合。还发现了一些基因组中的核型相似性。总结了每个核型组的核型组的主要特征。我们的结果在一起提供了对未来细胞遗传学和进化研究可能有益的信息,并有助于鉴定杂种的鉴定。

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