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首页> 外文期刊>Canadian Journal of Fisheries and Aquatic Sciences >Identifying hidden biocomplexity and genomic diversity in Chinook salmon, an imperiled species with a history of anthropogenic influence
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Identifying hidden biocomplexity and genomic diversity in Chinook salmon, an imperiled species with a history of anthropogenic influence

机译:在奇努克鲑鱼中识别隐藏的生物用和基因组多样性,一种危险的人为影响历史

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摘要

Biocomplexity is an important mechanism for population resilience in changing environments. However, we are just beginning to understand how to identify biocomplexity so that species management efforts promote resilience and stability. Genomic techniques are emerging as an important method for identifying biocomplexity. Central Valley (CV) Chinook salmon are an example of a species at risk of extinction if better methods for identifying and protecting biocomplexity are not employed. To address this knowledge gap, we employed restriction site associated DNA sequencing to conduct the first genomic study of all major populations of CV Chinook salmon. We found greater population structure across the Central Valley than previously documented. Additionally, we show evidence for differentiation and adaptation within migratory phenotypes despite high levels of gene flow. We also determined that genomic data can vastly improve our ability to assign individuals to their natal populations, even as they mix during migration, a finding that will assist management practices. These results demonstrate how genomic study can greatly improve our ability to identify and conserve biocomplexity.
机译:生物杂波性是在不断变化环境中的人口复合性的重要机制。但是,我们刚刚开始了解如何识别生物抄本,以便物种管理努力促进弹性和稳定。基因组技术是识别生物交通性的重要方法。中央山谷(CV)Chinook Salmon是灭绝风险的一个例子,如果没有采用更好的鉴定和保护生物分复方法,则存在灭绝的风险。为了解决这一知识差距,我们使用限制性位点相关的DNA测序来进行CV Chinook三文鱼所有主要种群的第一个基因组研究。我们发现中央山谷的人口结构比以前记录在内。此外,尽管高水平的基因流动,我们展示了迁移表型中的分化和适应的证据。我们还确定基因组数据可以大大提高我们将个人分配给其遗产的能力,即使它们在移民期间混合时,也可以协助管理实践。这些结果表明了基因组研究如何大大提高我们识别和保护生物复合性的能力。

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