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多基因局部适应在复合种群中的作用:一种随机生态进化模型。

Polygenic local adaptation in metapopulations: A stochastic eco-evolutionary model.

机构信息

Institute of Science and Technology Austria, Am Campus 1, Klosterneuburg, 3400, Austria.

Department of Mathematics, University of Vienna, Vienna, 1090, Austria.

出版信息

Evolution. 2021 May;75(5):1030-1045. doi: 10.1111/evo.14210. Epub 2021 Apr 6.

Abstract

This article analyzes the conditions for local adaptation in a metapopulation with infinitely many islands under a model of hard selection, where population size depends on local fitness. Each island belongs to one of two distinct ecological niches or habitats. Fitness is influenced by an additive trait which is under habitat-dependent directional selection. Our analysis is based on the diffusion approximation and accounts for both genetic drift and demographic stochasticity. By neglecting linkage disequilibria, it yields the joint distribution of allele frequencies and population size on each island. We find that under hard selection, the conditions for local adaptation in a rare habitat are more restrictive for more polygenic traits: even moderate migration load per locus at very many loci is sufficient for population sizes to decline. This further reduces the efficacy of selection at individual loci due to increased drift and because smaller populations are more prone to swamping due to migration, causing a positive feedback between increasing maladaptation and declining population sizes. Our analysis also highlights the importance of demographic stochasticity, which exacerbates the decline in numbers of maladapted populations, leading to population collapse in the rare habitat at significantly lower migration than predicted by deterministic arguments.

摘要

本文分析了在硬选择模型下具有无限多个岛屿的复合种群中局部适应的条件,其中种群大小取决于局部适合度。每个岛屿属于两个不同的生态位或栖息地之一。适合度受到依赖栖息地的定向选择的加性特征的影响。我们的分析基于扩散逼近,同时考虑了遗传漂变和种群动态随机波动的影响。通过忽略连锁不平衡,它给出了每个岛屿上等位基因频率和种群大小的联合分布。我们发现,在硬选择下,稀有栖息地中局部适应的条件对于更多多基因特征更为严格:即使在非常多的位点上每个位点的迁移负荷适中,也足以导致种群数量下降。这进一步由于漂移增加和由于迁移导致较小的种群更容易被淹没而降低了单个位点选择的有效性,从而导致适应不良和种群数量下降之间的正反馈。我们的分析还强调了种群动态随机波动的重要性,它加剧了适应不良种群数量的下降,导致稀有栖息地的种群崩溃,其迁移水平明显低于确定性论点预测的水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b501/8251656/ccfc26da0ece/EVO-75-1030-g004.jpg

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