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Oceanographic variation influences spatial genomic structure in the sea scallop Placopecten magellanicus

机译:海洋学变化影响海扇贝(Placopecten magellanicus)的空间基因组结构

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摘要

Environmental factors can influence diversity and population structure in marine species and accurate understanding of this influence can both improve fisheries management and help predict responses to environmental change. We used 7163 SNPs derived from restriction site‐associated DNA sequencing genotyped in 245 individuals of the economically important sea scallop, Placopecten magellanicus, to evaluate the correlations between oceanographic variation and a previously identified latitudinal genomic cline. Sea scallops span a broad latitudinal area (>10 degrees), and we hypothesized that climatic variation significantly drives clinal trends in allele frequency. Using a large environmental dataset, including temperature, salinity, chlorophyll a, and nutrient concentrations, we identified a suite of SNPs (285–621, depending on analysis and environmental dataset) potentially under selection through correlations with environmental variation. Principal components analysis of different outlier SNPs and environmental datasets revealed similar northern and southern clusters, with significant associations between the first axes of each (R 2 adj = .66–.79). Multivariate redundancy analysis of outlier SNPs and the environmental principal components indicated that environmental factors explained more than 32% of the variance. Similarly, multiple linear regressions and random‐forest analysis identified winter average and minimum ocean temperatures as significant parameters in the link between genetic and environmental variation. This work indicates that oceanographic variation is associated with the observed genomic cline in this species and that seasonal periods of extreme cold may restrict gene flow along a latitudinal gradient in this marine benthic bivalve. Incorporating this finding into management may improve accuracy of management strategies and future predictions.
机译:环境因素可以影响海洋物种的多样性和种群结构,对这种影响的准确理解既可以改善渔业管理,又可以帮助预测对环境变化的反应。我们使用了在经济上重要的海扇贝(Placopecten magellanicus)的245个个体中进行基因分型的限制性位点相关DNA测序的7163个SNP,来评估海洋学变异与先前确定的纬度基因组谱系之间的相关性。海扇贝横跨宽阔的纬度区域(> 10度),我们假设气候变化显着推动了等位基因频率的倾斜趋势。通过使用大型环境数据集,包括温度,盐度,叶绿素a和营养物浓度,我们确定了一组可能与环境变化相关的SNP(285-621,取决于分析和环境数据集)。不同离群SNP和环境数据集的主成分分析显示相似的北部和南部群集,每个群集的第一轴之间具有显着关联(R 2 adj = .66–.79)。离群SNP和环境主要成分的多变量冗余分析表明,环境因素解释了超过32%的方差。同样,多重线性回归和随机森林分析将冬季的平均温度和最低海洋温度确定为遗传和环境变化之间联系的重要参数。这项工作表明,海洋变化与该物种中观察到的基因组谱系有关,极端寒冷的季节可能会限制该海洋底栖双壳类动物沿纬度梯度的基因流动。将这一发现纳入管理可以提高管理策略和未来预测的准确性。

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