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The evolution of XY recombination: Sexually antagonistic selection versus deleterious mutation load

机译:XY重组的进化:性拮抗选择与有害突变负载

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摘要

Recombination arrest between X and Y chromosomes, driven by sexually antagonistic genes, is expected to induce their progressive differentiation. However, in contrast to birds and mammals (which display the predicted pattern), most cold-blooded vertebrates have homomorphic sex chromosomes. Two main hypotheses have been proposed to account for this, namely high turnover rates of sex-determining systems and occasional XY recombination. Using individual-based simulations, we formalize the evolution of XY recombination (here mediated by sex reversal; the "fountain-of-youth" model) under the contrasting forces of sexually antagonistic selection and deleterious mutations. The shift between the domains of elimination and accumulation occurs at much lower selection coefficients for the Y than for the X. In the absence of dosage compensation, mildly deleterious mutations accumulating on the Y depress male fitness, thereby providing incentives for XY recombination. Under our settings, this occurs via "demasculinization" of the Y, allowing recombination in XY (sex-reversed) females. As we also show, this generates a conflict with the X, which coevolves to oppose sex reversal. The resulting rare events of XY sex reversal are enough to purge the Y from its load of deleterious mutations. Our results support the "fountain of youth" as a plausible mechanism to account for the maintenance of sex-chromosome homomorphy.
机译:由性拮抗基因驱动的X和Y染色体之间的重组停滞有望诱导它们的逐步分化。但是,与鸟类和哺乳动物(显示出预期的模式)相反,大多数冷血脊椎动物具有同型性染色体。提出了两个主要的假设来解释这个问题,即性别决定系统的高周转率和偶尔的XY重组。使用基于个体的模拟,我们在性对抗选择和有害突变的对比作用下,正式确定了XY重组的进化过程(这里是由性逆转;“青年之泉”模型)。 Y的消除系数和消除域之间的转换发生在Y的选择系数比X更低的情况下。在没有剂量补偿的情况下,Y上积累的轻度有害突变会降低雄性适应性,从而为XY重组提供动力。在我们的设置下,这是通过Y的“去男性化”发生的,从而允许XY(性反转)的雌性重组。正如我们还显示的那样,这与X产生了冲突,X共同反对异性冲动。产生的罕见的XY性别反转事件足以清除Y的有害突变。我们的研究结果支持“青年喷泉”作为一种合理的机制来解释性染色体同态的维持。

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