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Estimating the strength of sexual selection from Y-chromosome and mitochondrial DNA diversity

机译:从Y染色体和线粒体DNA多样性估算性选择的强度

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We show that a sex difference in the opportunity for selection results in sex differences in the strength of random genetic drift and thus creates different patterns of genetic diversity for maternally and paternally inherited haploid genes. We derive the effective population size N-e for a male-limited or female-limited haploid gene in terms of I, the "opportunity for selection" or the variance in relative fitness. Because the variance in relative fitness of males can be an order of magnitude larger than that of females, the N-e is much smaller for males than it is for females. We derive both nonequilibrium and equilibrium expressions for F-ST in terms of I and show how the portion of I owing to sexual selection, I-mates, that is, the variation among males in mate numbers, is a simple function of the F's for cytoplasmic (female inherited) and Y-linked (male inherited) genes. Because multiple, transgenerational data are lacking to apply the nonequilibrium expression, we apply only the equilibrium model to published data on Y chromosome and mitochondrial sequence divergence in Homo sapiens to quantify the opportunity for sexual selection. The estimate suggests that sexual selection in humans represents a minimum of 54.8% of total selection, supporting Darwin's proposal that sexual selection has played a significant role in human evolution and the recent proposal regarding a shift from polygamy to monogamy in humans.
机译:我们表明,选择机会中的性别差异会导致随机遗传漂移强度的性别差异,从而为母本和父本单倍体基因创造不同的遗传多样性模式。我们根据I,“选择机会”或相对适应度的方差得出男性有限或女性有限的单倍体基因的有效种群大小N-e。因为男性相对健康度的变化可能比女性大一个数量级,所以男性的N-e比女性的N-e小得多。我们根据I得出F-ST的非平衡和平衡表达式,并表明由于性选择,I配偶的I部分是如何变化的,即I-mates,即男性之间的配偶数变化,是F的简单函数。细胞质(女性遗传)和Y连锁(男性遗传)基因。由于缺少多个跨世代数据来应用非平衡表达,因此我们仅将平衡模型应用于智人的Y染色体和线粒体序列发散的公开数据,以量化性选择的机会。估计表明,人类的性选择至少占总选择的54.8%,这支持了达尔文关于性选择在人类进化中起着重要作用的提议,以及最近关于从一夫多妻制向一夫一妻制转变的提议。

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