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Sexual selection has minimal impact on effective population sizes in species with high rates of random offspring mortality: an empirical demonstration using fitness distributions

机译:性选择对具有较高随机后代死亡率的物种的有效种群规模影响最小:使用适应度分布的经验证明

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摘要

The effective population size (Ne) is a fundamental parameter in population genetics that influences the rate of loss of genetic diversity. Sexual selection has the potential to reduce Ne by causing the sex-specific distributions of individuals that successfully reproduce to diverge. To empirically estimate the effect of sexual selection on Ne, we obtained fitness distributions for males and females from an outbred, laboratory-adapted population of Drosophila melanogaster. We observed strong sexual selection in this population (the variance in male reproductive success was ∼14 times higher than that for females), but found that sexual selection had only a modest effect on Ne, which was 75% of the census size. This occurs because the substantial random offspring mortality in this population diminishes the effects of sexual selection on Ne, a result that necessarily applies to other high fecundity species. The inclusion of this random offspring mortality creates a scaling effect that reduces the variance/mean ratios for male and female reproductive success and causes them to converge. Our results demonstrate that measuring reproductive success without considering offspring mortality can underestimate Ne and overestimate the genetic consequences of sexual selection. Similarly, comparing genetic diversity among different genomic components may fail to detect strong sexual selection.
机译:有效种群规模(Ne)是种群遗传学中​​影响遗传多样性丧失速率的基本参数。性选择有可能通过使成功繁殖的个体的性别特异性分布发散而降低Ne。为了从经验上评估性选择对Ne的影响,我们从果蝇的果蝇的实验室适应的近交人群中获得了男性和女性的适应度分布。我们观察到该人群中强烈的性别选择(男性生殖成功的差异是女性的14倍左右),但发现性别选择对Ne的影响不大,仅为人口普查规模的75%。发生这种情况是因为该种群中大量的后代死亡率降低了对Ne进行有性选择的影响,这一结果必然适用于其他高繁殖力物种。包括此随机后代死亡率会产生缩放效应,从而降低男性和女性生殖成功的方差/均值比并使它们趋同。我们的结果表明,在不考虑后代死亡率的情况下衡量生殖成功会低估Ne并高估性别选择的遗传后果。同样,比较不同基因组组成部分之间的遗传多样性可能无法检测到强烈的性别选择。

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