首页> 外文期刊>Journal of evolutionary biology >Indirect evidence from DNA sequence diversity for genetic degeneration of the Y-chromosome in dioecious species of the plant Silene: the SlY4/SlX4 and DD44-X/DD44-Y gene pairs
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Indirect evidence from DNA sequence diversity for genetic degeneration of the Y-chromosome in dioecious species of the plant Silene: the SlY4/SlX4 and DD44-X/DD44-Y gene pairs

机译:来自DNA序列多样性的间接证据表明植物Silee的雌雄异株物种中Y染色体的遗传退化:SlY4 / SlX4和DD44-X / DD44-Y基因对

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摘要

The action of natural selection is expected to reduce the effective population size of a nonrecombining chromosome, and this is thought to be the chief factor leading to genetic degeneration of Y-chromosomes, which cease recombining during their evolution from ordinary chromosomes. Low effective population size of Y chromosomes can be tested by studying DNA sequence diversity of Y-linked genes. In the dioecious plant, Silene latifolia, which has sex chromosomes, one comparison (SlX1 vs. SlY1) indeed finds lower Y diversity compared with the homologous X-linked gene, and one Y-linked gene with no X-linked homologue has lower species-wide diversity than a homologous autosomal copy (SlAp3Y vs. SlAp3A). To test whether this is a general pattern for Y-linked genes, we studied two further recently described X and Y homologous gene pairs in samples from several populations of S. latifolia and S. dioica. Diversity is reduced for both Y-linked genes, compared with their X-linked homologues. Our new data are analysed to show that the low Y effective size cannot be explained by different levels of gene flow for the X vs. the Y chromosomes, either between populations or between these closely related species. Thus, all four Y-linked genes that have now been studied in these plants (the two studied here, and two previously studied genes, have low diversity). This supports other evidence for an ongoing degeneration process in these species.
机译:预期自然选择的作用会减少非重组染色体的有效种群大小,这被认为是导致Y染色体遗传退化的主要因素,Y染色体在其从普通染色体进化过程中会停止重组。可以通过研究Y连锁基因的DNA序列多样性来测试Y染色体的低有效种群大小。在具有雌性染色体的雌雄异株植物中,一种比较(SlX1与SlY1)确实发现与同源X连锁基因相比具有较低的Y多样性,而一个没有X连锁同源物的Y连锁基因具有较低的物种。范围的多样性要高于同源常染色体拷贝(SlAp3Y与SlAp3A)。为了测试这是否是Y连锁基因的一般模式,我们研究了近来进一步描述的两个X和Y同源基因对,这些样本来自数个链球菌和二重链霉菌种群。与Y连锁的同源物相比,Y连锁的基因的多样性都降低了。对我们的新数据进行分析,得出较低的Y有效大小无法用种群之间或这些紧密相关物种之间X染色体和Y染色体的不同水平的基因流动来解释。因此,现在已经在这些植物中研究了所有四个Y连锁基因(此处研究的两个和先前研究的两个基因的多样性较低)。这为这些物种正在进行的退化过程提供了其他证据。

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