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Parallel adaptive evolution of Atlantic cod on both sides of the Atlantic Ocean in response to temperature

机译:大西洋两岸大西洋鳕鱼对温度的平行适应性演化

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摘要

Despite the enormous economic and ecological importance of marine organisms, the spatial scales of adaptation and biocomplexity remain largely unknown. Yet, the preservation of local stocks that possess adaptive diversity is critical to the long-term maintenance of productive stable fisheries and ecosystems. Here, we document genomic evidence of range-wide adaptive differentiation in a broadcast spawning marine fish, Atlantic cod (Gadus morhua), using a genome survey of single nucleotide polymorphisms. Of 1641 gene-associated polymorphisms examined, 70 (4.2%) tested positive for signatures of selection using a Bayesian approach. We identify a subset of these loci (n = 40) for which allele frequencies show parallel temperature-associated clines (p < 0.001, r2 = 0.89) in the eastern and western north Atlantic. Temperature associations were robust to the statistical removal of geographic distance or latitude effects, and contrasted ‘neutral’ loci, which displayed no temperature association. Allele frequencies at temperature-associated loci were significantly correlated, spanned three linkage groups and several were successfully annotated supporting the involvement of multiple independent genes. Our results are consistent with the evolution and/or selective sweep of multiple genes in response to ocean temperature, and support the possibility of a new conservation paradigm for non-model marine organisms based on genomic approaches to resolving functional and adaptive diversity.
机译:尽管海洋生物具有巨大的经济和生态重要性,但适应性和生物复杂性的空间尺度仍然很大程度上未知。但是,保护具有适应性多样性的当地种群对于长期维持生产稳定的渔业和生态系统至关重要。在这里,我们使用单核苷酸多态性的基因组调查,记录了广播产卵海鱼大西洋鳕(Gadus morhua)中范围广泛的适应性分化的基因组证据。在检查的1641个与基因相关的多态性中,有70个(4.2%)使用贝叶斯方法对选择的签名测试为阳性。我们确定了这些位点的一个子集(n = 40),这些位点的等位基因频率在北大西洋的东部和西部显示平行的温度相关cline(p <0.001,r 2 = 0.89)。温度关联对于统计学上消除地理距离或纬度影响具有鲁棒性,并且对比了“中性”位点,后者没有显示温度关联。与温度相关的基因座处的等位基因频率显着相关,跨越三个连锁组,并且成功注释了多个支持多个独立基因的参与。我们的结果与响应海洋温度的多个基因的进化和/或选择性扫描一致,并支持基于基因组方法解决功能性和适应性多样性的非模式海洋生物新的保护范式的可能性。

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