濒危物种黄雀的核型组织

Sandra Eloisa Bülau, Rafael Kretschmer, I. O. Furo, E. D. de Oliveira, T. R. D. de Freitas
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引用次数: 1

摘要

核型分析在染色体组织、进化和细胞分类研究中有许多应用。它们对于基因组组装项目也是必不可少的。本文首次利用常规的Giemsa染色和18S rDNA探针对濒危物种黄雀属(Gubernatrix cristata)进行了核型描述。本种共有78条染色体,其中大染色体12对,微染色体27对。在4条微染色体中发现了18S rDNA簇。结果表明,鸡冠鸡具有典型的鸟类核型(约80条染色体)。然而,在18S rDNA分布上,由于祖先条件只对应两条具有这些序列的微染色体,因此鸡冠藓具有一种非对称状态。可能是重复和易位导致了鸡冠18S rDNA簇数的增加。并将结果与其他飞虱科和飞蛾目成员进行了比较和讨论。考虑到其全球濒危状况,我们认为其核型描述可能是未来细胞遗传学和测序项目的起点。
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Karyotype Organization of the Endangered Species Yellow Cardinal (Gubernatrix cristata)
Karyotypic analyses have several applications in studies of chromosome organization, evolution, and cytotaxonomy. They are also essential to genome assembly projects. Here, we present for the first time the karyotype description of the endangered species yellow cardinal, Gubernatrix cristata (Passeriformes, Thraupidae), using conventional staining with Giemsa and 18S rDNA probes. This species has 78 chromosomes, with 12 pairs of macrochromosomes and 27 microchromosome pairs. The 18S rDNA clusters were found in four microchromosomes. Our results revealed that G. cristata has a typical avian karyotype (approximately 80 chromosomes). However, G. cristata has an apomorphic state in relation to the 18S rDNA distribution since the ancestral condition corresponds to only two microchromosomes with these sequences. Probably, duplications and translocations were responsible for increasing the number of 18S rDNA clusters in G. cristata. The results were compared and discussed with respect to other Thraupidae and Passeriformes members. Considering the globally threatened status of G. cristata, we believe that its karyotype description could be a starting point for future cytogenetics and sequencing projects.
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