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首页> 外文期刊>Transactions of the American Fisheries Society >Resolving Adaptive and Demographic Divergence among Chinook Salmon Populations in the Columbia River Basin
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Resolving Adaptive and Demographic Divergence among Chinook Salmon Populations in the Columbia River Basin

机译:解决哥伦比亚河流域奇努克鲑鱼种群之间的适​​应性和人口差异

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Chinook salmon Oncorhynchus tshawytscha in the Columbia River basin (CRB) comprise three lineages-lower Columbia River and sympatric interior ocean and stream types-each with distinct biological attributes. To evaluate the adaptive and neutral genetic variation of this species in the CRB, we genotyped 54 Chinook salmon populations using a panel of 96 single-nucleotide polymorphism (SNP) loci. All three lineages were represented among the collections and were widely distributed across locations, ranging from the upper Salmon River to near the Columbia River estuary. Our goal was to explore local adaptation as a process shaping the population structure and genetic variation among Chinook salmon beyond the inferences possible with neutral marker data. In our analyses with putatively neutral SNPs, the population structure of Chinook salmon throughout the CRB was generally concordant with that of previous studies using microsatellites. Regression analyses and outlier methods identified 28, 17, and 29 candidate SNP loci for positive selection among stream-type, ocean-type, and lower-river Chinook salmon, respectively. The candidate SNP markers were tested for association with seven environmental variables using multiple methods. We identified unambiguous markers, including nine candidates in the stream-type lineage and seven in the ocean-type lineage that were significantly correlated with elevation and/or temperature. The association of six candidates markers in the lower-river lineage could not be confirmed by population structure analyses and remained ambiguous. We observed a significant association of isolation by distance for the ocean-and stream-type lineages with our SNP panel; however, there was also a significant relationship between pairwise F-ST and several habitat variables. In all cases, the apparent adaptive variation complemented the results of demographic genetic structure but with higher resolution of population differentiation.
机译:哥伦比亚河盆地(CRB)中的奇努克鲑鱼Oncorhynchus tshawytscha包括三个谱系-较低的哥伦比亚河和同胞内部海洋和溪流类型-每种都有独特的生物学属性。为了评估CRB中该物种的适应性和中性遗传变异,我们使用一组96个单核苷酸多态性(SNP)基因座对54个奇努克鲑鱼种群进行了基因分型。所有三个世系都代表了这些集合,并广泛分布在各个位置,从鲑鱼河上游到哥伦比亚河河口附近。我们的目标是探索当地适应过程,以塑造奇努克鲑鱼中种群结构和遗传变异的过程,超越使用中性标记数据可能得出的推论。在我们用推定为中性的SNP进行的分析中,整个CRB中的奇努克鲑鱼的种群结构通常与以前使用微卫星的研究一致。回归分析和离群值方法分别确定了28、17和29个候选SNP位点,分别在溪流型,海洋型和下河奇努克鲑鱼中进行阳性选择。使用多种方法测试了候选SNP标记与七个环境变量的关联。我们确定了明确的标记,包括在流型谱系中的九种候选物和在海洋型谱系中的七种与海拔和/或温度显着相关的候选物。下游结构谱系中的六个候选标记的关联无法通过种群结构分析得到证实,并且仍然模棱两可。我们观察到海洋和河流类型沿袭与我们的SNP小组之间的距离之间存在显着的关联。然而,成对的F-ST与几个生境变量之间也存在显着的关系。在所有情况下,表观适应性变异都补充了人口遗传结构的结果,但具有更高的种群分化分辨率。

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