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Genome-Wide Patterns of Genetic Variation within and among Alternative Selective Regimes

机译:选择性选择体制内和之中的遗传变异的全基因组模式

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摘要

Environmental heterogeneity has been hypothesized to influence levels of genetic variation but the effect of heterogeneity depends on (i) the form of heterogeneity, (ii) whether ecologically relevant or neutral loci are being considered, and (iii) the genetic basis of ecological adaptation. We surveyed genome-wide SNP diversity in replicate experimental Drosophila melanogaster populations with equal census sizes that evolved for 42 generations under one of four selection regimes: (i) salt-enriched environment (Salt), (ii) cadmium-enriched environment (Cad), (iii) temporally (Temp) or (iv) spatially (Spatial) variable environments. There was significant differentiation between all pairs of treatments but the greatest differentiation occurred between the two homogenous treatments (Cad and Salt). For sites likely under differential ecological selection (and those closely linked to them), the pattern of within-population diversity π followed the expectation from classic antagonistic selection theory: Spatial>Temp>Salt≈Cad. However, neutral diversity unlinked to selected sites followed a different pattern: Spatial>Salt≈Cad>Temp. As implicated by the latter result, measures of FST among replicate populations within treatments are consistent with differences in effective population sizes among selective regimes despite equal census sizes. Though there are clear changes in the rank order of treatments when contrasting selected and neutral sites with respect to π, the rank ordering of treatments with respect to FST appears reasonably consistent between site categories. These results demonstrate that alternative selective regimes affect within- and among-population diversity differently for different site types.
机译:假设环境异质性会影响遗传变异的水平,但异质性的影响取决于(i)异质性的形式,(ii)是否考虑了生态相关位点或中性位点,以及(iii)生态适应的遗传基础。我们调查了具有相同人口普查规模的黑果蝇的重复实验种群的全基因组SNP多样性,该种群在四种选择机制之一下进化了42代:(i)富盐环境(Salt),(ii)富镉环境(Cad) ,(iii)时间(Temp)或(iv)空间(空间)可变环境。所有成对的处理之间都有明显的区别,但两种同质处理(Cad和Salt)之间的区别最大。对于可能处于差异生态选择(以及与之密切相关的那些)的场所,种群内多样性π的模式遵循经典的对抗性选择理论的期望:空间>温度>盐≈镉。但是,与选定位点不相关的中性多样性遵循不同的模式:空间>盐≈镉>温度。如后者结果所暗示,尽管人口普查规模相同,但治疗中重复人群之间FST的测量值与选择性方案中有效人群大小的差异一致。尽管将选定的中性位点与π进行对比时治疗的等级顺序有明显的变化,但是相对于 FST 的治疗等级的等级顺序在位点类别之间似乎是合理一致的。这些结果表明,对于不同的地点类型,替代选择方案对种群内和种群间多样性的影响不同。

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