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Detecting polygenic selection in marine populations by combining population genomics and quantitative genetics approaches

机译:结合种群基因组学和定量遗传学方法检测海洋种群的多基因选择

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摘要

Highly fecund marine species with dispersive life-history stages often display large population sizes and wide geographic distribution ranges. Consequently, they are expected to experience reduced genetic drift, efficient selection fueled by frequent adaptive mutations, and high migration loads. This has important consequences for understanding how local adaptation proceeds in the sea. A key issue in this regard, relates to the genetic architecture underlying fitness traits. Theory predicts that adaptation may involve many genes but with a high variance in effect size. Therefore, the effect of selection on allele frequencies may be substantial for the largest effect size loci, but insignificant for small effect genes. In such a context, the performance of population genomic methods to unravel the genetic basis of adaptation depends on the fraction of adaptive genetic variance explained by the cumulative effect of outlier loci. Here, we address some methodological challenges associated with the detection of local adaptation using molecular approaches. We provide an overview of genome scan methods to detect selection, including those assuming complex demographic models that better describe spatial population structure. We then focus on quantitative genetics approaches that search for genotype–phenotype associations at different genomic scales, including genome-wide methods evaluating the cumulative effect of variants. We argue that the limited power of single locus tests can be alleviated by the use of polygenic scores to estimate the joint contribution of candidate variants to phenotypic variation.
机译:生命周期阶段分散的高繁殖力海洋物种通常显示出较大的种群规模和广泛的地理分布范围。因此,预计他们将经历减少的遗传漂移,频繁的适应性突变推动的高效选择以及高迁移负荷。这对于理解海洋的局部适应如何发展具有重要的意义。在这方面,一个关键问题与适应性状的遗传结构有关。理论预测,适应可能涉及许多基因,但效应大小差异很大。因此,选择对等位基因频率的影响对于最大的效应大小基因座可能是实质性的,而对于小的效应基因而言则微不足道。在这种情况下,群体基因组方法揭示适应性遗传基础的性能取决于异常基因座的累积效应所解释的适应性遗传方差的比例。在这里,我们解决与使用分子方法检测局部适应性相关的一些方法学挑战。我们提供了用于检测选择的基因组扫描方法的概述,包括那些假定能够更好地描述空间种群结构的复杂人口统计模型的方法。然后,我们将重点放在定量遗传学方法上,该方法在不同的基因组规模上搜索基因型-表型的关联,包括评估变体累积效应的全基因组方法。我们认为,通过使用多基因评分来评估候选变异对表型变异的联合贡献,可以缓解单基因座测试的局限性。

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