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Sex chromosome evolution in snakes inferred from divergence patterns of two gametologous genes and chromosome distribution of sex chromosome-linked repetitive sequences

机译:从两个配子基因的发散方式和性染色体连锁重复序列的染色体分布推断蛇的性染色体进化

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摘要

BackgroundThe discovery of differentially organized sex chromosome systems suggests that heteromorphic sex chromosomes evolved from a pair of homologous chromosomes. Whereas karyotypes are highly conserved in alethinophidian snakes, the degeneration status of the W chromosomes varies among species. The Z and W chromosomes are morphologically homomorphic in henophidian species, whereas in snakes belonging to caenophidian families the W chromosomes are highly degenerated. Snakes therefore are excellent animal models in which to study sex chromosome evolution. Herein, we investigated the differentiation processes for snake sex chromosomes using both coding and repetitive sequences. We analyzed phylogenetic relationships of CTNNB1 and WAC genes, localized to the centromeric and telomeric regions, respectively, of the long arms on snake sex chromosomes, and chromosome distribution of sex chromosome-linked repetitive sequences in several henophidian and caenophidian species.
机译:背景技术差异性性染色体系统的发现表明,异型性染色体是从一对同源染色体进化而来的。尽管在拟南芥蛇中核型是高度保守的,但W染色体的退化状态在物种之间有所不同。 Z和W染色体在hephiphidian种中形态上是同态的,而在属于caenophidian家族的蛇中,W染色体高度退化。因此,蛇是研究性染色体进化的优秀动物模型。在这里,我们调查了使用编码和重复序列的蛇性染色体的分化过程。我们分析了CTNNB1和WAC基因的系统发生关系,分别位于蛇性染色体上长臂的着丝粒和端粒区域,以及在几个杂种动物和贪食动物物种中性染色体连锁重复序列的染色体分布。

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