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本地适应种群中的等位基因频率和选择系数。

Allele frequencies and selection coefficients in locally adapted populations.

作者信息

Sibly Richard M, Curnow Robert N

机构信息

School of Biological Sciences, University of Reading, UK.

Department of Mathematics and Statistics, University of Reading, UK.

出版信息

J Theor Biol. 2023 May 21;565:111463. doi: 10.1016/j.jtbi.2023.111463. Epub 2023 Mar 11.

Abstract

Understanding the role of natural selection in driving evolutionary change requires accurate estimates of the strength of selection acting at the genetic level in the wild. This is challenging to achieve but may be easier in the case of populations in migration-selection balance. When two populations are at equilibrium under migration-selection balance, there exist loci whose alleles are selected different ways in the two populations. Such loci can be identified from genome sequencing by their high values of F. This raises the question of what is the strength of selection on locally-adaptive alleles. To answer this question we analyse a 1-locus 2-allele model of a population distributed between two niches. We show by simulation of selected cases that the outputs from finite-population models are essentially the same as those from deterministic infinite-population models. We then derive theory for the infinite-population model showing the dependence of selection coefficients on equilibrium allele frequencies, migration rates, dominance and relative population sizes in the two niches. An Excel spreadsheet is provided for the calculation of selection coefficients and their approximate standard errors from observed values of population parameters. We illustrate our results with a worked example, with graphs showing the dependence of selection coefficients on equilibrium allele frequencies, and graphs showing how F depends on the selection coefficients acting on the alleles at a locus. Given the extent of recent progress in ecological genomics, we hope our methods may help those studying migration-selection balance to quantify the advantages conferred by adaptive genes.

摘要

要理解自然选择在推动进化变化中的作用,需要准确估计野生环境中基因水平上的选择强度。这一目标颇具挑战性,但对于处于迁移 - 选择平衡状态的种群而言,或许相对容易实现。当两个种群在迁移 - 选择平衡下达到平衡时,存在一些位点,其等位基因在两个种群中以不同方式被选择。通过基因组测序,这些位点可因其较高的F值而被识别。这就引出了一个问题:对本地适应性等位基因的选择强度究竟是多少?为回答这个问题,我们分析了一个分布在两个生态位之间的种群的单基因座双等位基因模型。我们通过对选定案例的模拟表明,有限种群模型的输出结果与确定性无限种群模型的输出结果基本相同。然后,我们推导了无限种群模型的理论,展示了选择系数对平衡等位基因频率、迁移率、显性以及两个生态位中相对种群大小的依赖性。我们提供了一个Excel电子表格,用于根据种群参数的观测值计算选择系数及其近似标准误差。我们通过一个实例来说明我们的结果,绘制图表展示选择系数对平衡等位基因频率的依赖性,以及展示F如何依赖于作用于一个基因座上等位基因的选择系数。鉴于生态基因组学近期取得的进展程度,我们希望我们的方法能够帮助那些研究迁移 - 选择平衡的人员量化适应性基因所赋予的优势。

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