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Spatial heterogeneity in the strength of selection against deleterious alleles and the mutation load

机译:针对有害等位基因和突变负荷的选择强度的空间异质性

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摘要

According to current estimates of genomic deleterious mutation rates (which are often of the order 0.1–1) the mutation load (defined as a reduction in the average fitness of a population due to the presence of deleterious alleles) may be important in many populations. In this paper, I use multilocus simulations to explore the effect of spatial heterogeneity in the strength of selection against deleterious alleles on the mutation load (for example, it has been suggested that stressful environments may increase the strength of selection). These simulations show contrasted results: in some situations, spatial heterogeneity may greatly reduce the mutation load, due to the fact that migrants coming from demes under stronger selection carry relatively few deleterious alleles, and benefit from a strong advantage within demes under weaker selection (where individuals carry many more deleterious alleles); in other situations, however, deleterious alleles accumulate within demes under stronger selection, due to migration pressure from demes under weaker selection, leading to fitness erosion within those demes. This second situation is more frequent when the productivity of the different demes is proportional to their mean fitness. The effect of spatial heterogeneity is greatly reduced, however, when the response to environmental differences is inconsistent across loci.
机译:根据目前对基因组有害突变率的估计(通常约为0.1-1),突变负荷(定义为由于存在有害等位基因导致种群平均适应性降低)在许多人群中可能很重要。在本文中,我使用多基因座模拟来研究空间异质性在针对有害等位基因的选择强度上对突变负荷的影响(例如,有人提出,压力环境可能会提高选择强度)。这些模拟显示了相反的结果:在某些情况下,空间异质性可能会大大降低突变负荷,这是由于以下事实:来自选择强度较高的种属的移民携带的有害等位基因相对较少,并且受益于选择强度较弱的种属内的强大优势(其中个人携带更多有害的等位基因);但是,在其他情况下,由于选择较弱的情况下来自家畜的迁移压力,有害的等位基因会在选择强度较高的家畜内积聚,导致适合性降低。当不同性能的生产率与它们的平均适应度成正比时,第二种情况更加频繁。但是,当不同位点对环境差异的响应不一致时,空间异质性的影响将大大降低。

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