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An investigation of Y chromosome incorporations in 400 species of Drosophila and related genera

机译:果蝇及其近缘属400种Y染色体掺入研究

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摘要

Y chromosomes are widely believed to evolve from a normal autosome through a process of massive gene loss (with preservation of some male genes), shaped by sex-antagonistic selection and complemented by occasional gains of male-related genes. The net result of these processes is a male-specialized chromosome. This might be expected to be an irreversible process, but it was found in 2005 that the Drosophila pseudoobscura Y chromosome was incorporated into an autosome. Y chromosome incorporations have important consequences: a formerly male-restricted chromosome reverts to autosomal inheritance, and the species may shift from an XY/XX to X0/XX sex-chromosome system. In order to assess the frequency and causes of this phenomenon we searched for Y chromosome incorporations in 400 species from Drosophila and related genera. We found one additional large scale event of Y chromosome incorporation, affecting the whole montium subgroup (40 species in our sample); overall 13% of the sampled species (52/400) have Y incorporations. While previous data indicated that after the Y incorporation the ancestral Y disappeared as a free chromosome, the much larger data set analyzed here indicates that a copy of the Y survived as a free chromosome both in montium and pseudoobscura species, and that the current Y of the pseudoobscura lineage results from a fusion between this free Y and the neoY. The 400 species sample also showed that the previously suggested causal connection between X-autosome fusions and Y incorporations is, at best, weak: the new case of Y incorporation (montium) does not have X-autosome fusion, whereas nine independent cases of X-autosome fusions were not followed by Y incorporations. Y incorporation is an underappreciated mechanism affecting Y chromosome evolution; our results show that at least in Drosophila it plays a relevant role and highlight the need of similar studies in other groups.
机译:人们普遍认为Y染色体是从正常的常染色体进化而来的,其过程是大规模的基因丢失(保留了一些雄性基因),其过程是通过性别拮抗选择而形成的,偶尔还会有雄性相关基因的获得。这些过程的最终结果是男性专用染色体。这可能被认为是不可逆的过程,但是在2005年发现果蝇Y染色体被整合到常染色体中。 Y染色体掺入有重要的后果:以前是雄性限制的染色体恢复为常染色体遗传,并且该物种可能从XY / XX转换为X0 / XX性染色体系统。为了评估这种现象的发生频率和原因,我们在果蝇及其相关属的400种物种中搜索了Y染色体掺入。我们发现了另外一个大规模的Y染色体掺入事件,影响了整个mont亚组(在我们的样本中为40种)。总共13%的采样物种(52/400)具有Y掺入。尽管先前的数据表明,在Y掺入后,祖先的Y消失为自由染色体,但此处分析的更大数据集表明,Y的一个副本在蒙太奇属和假ob虫物种中均作为自由染色体幸存下来,而目前的假隐姓谱系是由这个自由的Y和neoY融合而成的。 400个物种的样本还显示,以前建议的X-常染色体融合与Y掺入之间的因果关系最弱:新的Y掺入案例(蒙太奇)没有X-常染色体融合,而九个独立的X案例-常染色体融合体之后没有Y掺入。 Y掺入是影响Y染色体进化的一种未被充分认识的机制。我们的结果表明,至少在果蝇中,它起着相关的作用,并强调了其他人群进行类似研究的必要性。

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