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Genome-wide signals of drift and local adaptation during rapid lineage divergence in a songbird

机译:在鸣禽中快速血统分歧期间漂移和局部适应的基因组信号

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摘要

The formation of independent evolutionary lineages involves neutral and selective factors, and understanding their relative roles in population divergence is a fundamental goal of speciation research. Correlations between allele frequencies and environmental variability can reveal the role of selection, yet the relative contribution of drift can be difficult to establish. Recently diversified taxa like the Oregon junco (Aves, Passerellidae, Junco hyemalis oreganus) of western North America provide ideal scenarios to apply genetic-environment association analyses (GEA) while controlling for population structure. Analysis of genome-wide SNP loci revealed marked genetic structure consisting of differentiated populations in isolated, dry southern mountain ranges, and less divergent, recently expanded populations in humid northern latitudes. We used correlations between genomic and environmental variance to test for three specific modes of evolutionary divergence: (a) drift in geographic isolation, (b) differentiation along continuous selective gradients and (c) isolation-by-adaptation. We found evidence of strong drift in southern mountains, but also signals of local adaptation driven by temperature, precipitation, elevation and vegetation, especially when controlling for population history. We identified numerous variants under selection scattered across the genome, suggesting that local adaptation can promote rapid differentiation when acting over multiple independent loci.
机译:独立进化谱系的形成涉及中性和选择性因素,并了解人口分歧中的相对角色是物质研究的基本目标。等位基因频率和环境变异性之间的相关性可以揭示选择的作用,但漂移的相对贡献可能难以建立。最近,西北美国俄勒冈俊(Aves,Passerellidae,Junco Hyemalis Orecanus等多元化的分类群提供了应用遗传环境关联分析(GEA)的理想场景,同时控制人口结构。基因组SNP基因座的分析显示出明显的遗传结构,包括分离,干燥南部山脉的分化,干燥的南部山脉,较少的分歧,最近在潮湿的北纬群体中扩展的群体。我们使用基因组和环境方差之间的相关性,以测试三种特定的进化发散模式:(a)在地理隔离中漂移,(b)沿连续选择性梯度的分化和(c)分离。我们发现了南部山脉强烈漂移的证据,也是局部适应的信号,由温度,降水,升降和植被驱动,特别是在控制人口历史时。我们在基因组中散射的选择下鉴定了许多变体,表明当局部适应可以在多个独立基因座上行动时促进快速分化。

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