The untapped potential of seascape genomics in the North Pacific

Laura E. Timm, Nicholas Tucker, Anna Rix, Savannah LaBua, J. Andrés López, Kevin M Boswell, Jessica R Glass
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Abstract

Seascape genomics provides a powerful framework to evaluate the presence and strength of environmental pressures on marine organisms, as well as to forecast long term species stability under various perturbations. In the highly productive North Pacific, forage fishes, key trophic links across ecosystems, are also contending with a rapidly warming climate and a litany of associated oceanographic changes (e.g., changes in salinity, dissolved oxygen, pH, primary production, etc.). These changes can place substantial selective pressures on populations over space and time. While several population genomics studies have targeted forage fishes in the North Pacific, none have formally analyzed the interactions between genotype and environment. However, when population genomics studies provide collection location information and other critical data, it is possible to supplement a published genomic dataset with environmental data from existing public databases and perform “ post hoc seascape genomics” analyses. In reviewing the literature, we find pertinent metadata (dates and locations of sample collection) are rarely provided. We identify specific factors that may impede the application of seascape genomics methods in the North Pacific. Finally, we present an approach for supplementing data in a reproducible way to allow for post hoc seascape genomics analysis, in instances when metadata are reported. Overall, our goal is to demonstrate – via literature review – the utility and importance of seascape genomics to understanding the long term health of forage fish species in the North Pacific.
北太平洋海景基因组学尚未开发的潜力
海景基因组学提供了一个强大的框架来评估环境压力对海洋生物的存在和强度,以及预测各种扰动下物种的长期稳定性。在高产的北太平洋,作为生态系统关键营养环节的饲料鱼类也在与迅速变暖的气候和一系列相关的海洋学变化(例如,盐度、溶解氧、pH值、初级产量等的变化)作斗争。这些变化可以在空间和时间上对种群施加巨大的选择压力。虽然一些种群基因组学研究针对北太平洋的饲料鱼,但没有一个正式分析基因型和环境之间的相互作用。然而,当种群基因组学研究提供收集位置信息和其他关键数据时,可以用现有公共数据库中的环境数据补充已发布的基因组数据集,并进行“事后海景基因组学”分析。在回顾文献时,我们发现很少提供相关的元数据(样本收集的日期和地点)。我们确定了可能阻碍海景基因组学方法在北太平洋应用的具体因素。最后,我们提出了一种以可重复的方式补充数据的方法,以便在报告元数据的情况下进行事后海景基因组学分析。总的来说,我们的目标是通过文献综述来证明海景基因组学对了解北太平洋饲料鱼类的长期健康状况的效用和重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
2.60
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