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Fixation Probability in a Haploid-Diploid Population

机译:单倍体-二倍体群体的固定概率

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摘要

Classical population genetic theory generally assumes either a fully haploid or fully diploid life cycle. However, many organisms exhibit more complex life cycles, with both free-living haploid and diploid stages. Here we ask what the probability of fixation is for selected alleles in organisms with haploid-diploid life cycles. We develop a genetic model that considers the population dynamics using both the Moran model and Wright–Fisher model. Applying a branching process approximation, we obtain an accurate fixation probability assuming that the population is large and the net effect of the mutation is beneficial. We also find the diffusion approximation for the fixation probability, which is accurate even in small populations and for deleterious alleles, as long as selection is weak. These fixation probabilities from branching process and diffusion approximations are similar when selection is weak for beneficial mutations that are not fully recessive. In many cases, particularly when one phase predominates, the fixation probability differs substantially for haploid-diploid organisms compared to either fully haploid or diploid species.
机译:古典种群遗传学理论通常假定完全单倍体或完全二倍体的生命周期。然而,许多生物表现出更复杂的生命周期,包括自由生存的单倍体和二倍体阶段。在这里,我们问具有单倍体-二倍体生命周期的有机体中选定等位基因的固定概率是多少。我们开发了一种遗传模型,该模型同时使用Moran模型和W​​right-Fisher模型来考虑人口动态。应用分支过程的近似值,假设种群很大并且突变的净效应是有益的,我们将获得准确的固定概率。我们还发现了固定概率的扩散近似值,只要选择很弱,即使在较小的人群和有害的等位基因中也很准确。当对于不是完全隐性的有益突变的选择很弱时,这些来自分支过程和扩散近似的固定概率是相似的。在许多情况下,特别是当一个相占优势时,与完全单倍体或二倍体物种相比,单倍体-二倍体生物体的固定概率差异很大。

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