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Architecture of Parallel Adaptation in Ten Lacustrine Threespine Stickleback Populations from the White Sea Area

机译:白海地区十个湖滨三脊s背种群的平行适应体系结构

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摘要

Adaptation of threespine stickleback to freshwater involves parallel recruitment of freshwater alleles in clusters of closely linked sites, or divergence islands (DIs). However, it remains unclear to what extent the DIs and the alleles that constitute them coincide between populations that underwent adaptation to freshwater independently. We examine threespine sticklebacks from ten freshwater lakes that emerged 500–1500 years ago in the White Sea basin, with the emphasis on repeatability of genomic patterns of adaptation among the lake populations and the role of local recombination rate in the distribution and structure of DIs. The 65 detected DIs are clustered in the genome, forming 12 aggregations, and this clustering cannot be explained by the variation of the recombination rate. Only 21 of the DIs are present in all the freshwater populations, likely being indispensable for successful colonization of freshwater environment by the ancestral marine population. Within most DIs, the same set of single nucleotide polymorphisms (SNPs) distinguish marine and freshwater haplotypes in all the lake populations; however, in some DIs, freshwater alleles differ between populations, suggesting that they could have been established by recruitment of different haplotypes in different populations.
机译:Threespine棘背back适应淡水涉及在紧密联系的地点或发散岛(DI)的群集中并行招募淡水等位基因。然而,尚不清楚DIs和构成它们的等位基因在独立适应淡水的种群之间在多大程度上重合。我们研究了500到1500年前在白海盆地出现的十个淡水湖泊中的三脊刺背le,重点是湖泊种群之间适应基因组模式的可重复性以及局部重组率在DI的分布和结构中的作用。检测到的65个DI聚集在基因组中,形成12个聚集体,这种聚集无法用重组率的变化来解释。所有淡水种群中仅存在21个DI,这对于祖先海洋种群成功定居淡水环境而言可能是必不可少的。在大多数DI中,同一套单核苷酸多态性(SNP)可以区分所有湖泊种群中的海洋和淡水单倍型。但是,在某些直接投资中,不同种群之间的淡水等位基因不同,这表明它们可以通过在不同种群中招募不同的单倍型而建立。

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