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A selective sweep in or near the Silene latifolia X-linked gene SlssX

机译:矽胶草X连锁基因SlssX内或附近的选择性扫描

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The most prominent feature of Y chromosomes is that they do not recombine and are usually genetically degenerate, containing only a few genes. White campion Silene latifolia has evolved sex chromosomes relatively recently, probably within the last 10-15 million years. Perhaps due to its recent origin, the Y chromosome in this species has not completely degenerated and most isolated X-linked genes have intact Y-linked homologues. A gene encoding a protein with strong homology to spermidine synthases, Slss, is the exception to this rule, as the Y-linked copy of this gene has apparently lost its function. Here I report evidence for a recent selective sweep in the X-linked copy of this gene (SlssA) that could reflect compensatory evolution in an X-linked gene that has lost a functional Y-linked homologue. The spread and fixation of an advantageous mutation in SlssX has resulted in a dramatic loss of genetic diversity and an excess of high-frequency derived polymorphisms in this gene. As the sweep has not affected the closely linked DD44X gene, the selective advantage of the mutation that has driven the sweep in the SlssX gene might have been less than 1%.
机译:Y染色体最显着的特征是它们不重组,通常是遗传简并的,仅包含少数基因。白褶ion Silene latifolia相对较近地进化了性染色体,可能在最近的10-15百万年内。也许由于其最近的起源,该物种的Y染色体尚未完全变性,并且大多数分离的X连锁基因具有完整的Y连锁同源物。编码与亚精胺合酶具有高度同源性的蛋白Slss的基因是该规则的例外,因为该基因的Y联拷贝显然已经失去了功能。在这里,我报告了该基因的X连锁拷贝(SlssA)最近的选择性扫描的证据,这可能反映了丢失了功能性Y连锁同源物的X连锁基因的补偿性进化。 SlssX中一个有利突变的扩散和固定导致该基因遗传多样性的巨大损失和高频衍生多态性的过多。由于扫描未影响紧密联系的DD44X基因,因此驱动SlssX基因扫描的突变的选择性优势可能小于1%。

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