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Anolis sex chromosomes are derived from a single ancestral pair

机译:Anolis性染色体来自单个祖先对

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摘要

To explain the frequency and distribution of heteromorphic sex chromosomes in the lizard genus Anolis we compared the relative roles of sex chromosome conservation vs. turnover of sex determining mechanisms. We used model based comparative methods to reconstruct karyotype evolution and the presence of heteromorphic sex chromosomes onto a newly generated Anolis phylogeny. We found that heteromorphic sex chromosomes evolved multiple times in the genus. Fluorescent in situ hybridization (FISH) of repetitive DNA showed variable rates of Y chromosome degeneration among Anolis species and identified previously undetected, homomorphic sex chromosomes in two species. We confirmed homology of sex chromosomes in the genus by performing FISH of an X-linked BAC and qPCR of X-linked genes in multiple Anolis species sampled across the phylogeny. Taken together, these results are consistent with long-term conservation of sex chromosomes in the group. Our results pave the way to address additional questions related to Anolis sex chromosome evolution and describe a conceptual framework that can be used to evaluate the origins and evolution of heteromorphic sex chromosomes in other clades.
机译:为了解释蜥蜴Anolis属中异型性染色体的频率和分布,我们比较了性染色体保守性与性别决定机制周转的相对作用。我们使用基于模型的比较方法将核型进化和异型性染色体的存在重建到新生成的Anolis系统发育上。我们发现异型性染色体在该属中进化了多次。重复DNA的荧光原位杂交(FISH)显示Anolis物种之间Y染色体变性的速率不同,并鉴定出两个物种中以前未检测到的同型性染色体。我们通过对X连锁的BAC进行FISH和在整个系统发育中采样的多个Anolis物种中的X连锁的基因进行qPCR证实了该属中性染色体的同源性。综上所述,这些结果与该组中性染色体的长期保存相一致。我们的结果为解决与Anolis性染色体进化有关的其他问题铺平了道路,并描述了可用于评估其他进化枝中异形性染色体的起源和进化的概念框架。

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