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Sequencing improves our ability to study threatened migratory species: Genetic population assignment in Californias Central Valley Chinook salmon

机译:测序提高了我们研究濒临灭绝的迁徙物种的能力:加利福尼亚州中部奇努克鲑鱼的遗传种群分配

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摘要

Effective conservation and management of migratory species requires accurate identification of unique populations, even as they mix along their migratory corridors. While telemetry has historically been used to study migratory animal movement and habitat use patterns, genomic tools are emerging as a superior alternative in many ways, allowing large‐scale application at reduced costs. Here, we demonstrate the usefulness of genomic resources for identifying single‐nucleotide polymorphisms (SNPs) that allow fast and accurate identification of the imperiled Chinook salmon in the Great Central Valley of California. We show that 80 well‐chosen loci, drawn from a pool of over 11,500 SNPs developed from restriction site‐associated DNA sequencing, can accurately identify Chinook salmon runs and select populations within run. No other SNP panel for Central Valley Chinook salmon has been able to achieve the high accuracy of assignment we show here. This panel will greatly improve our ability to study and manage this ecologically, economically, and socially important species and demonstrates the great utility of using genomics to study migratory species.
机译:要有效地保护和管理移徙物种,就必须准确地识别独特的种群,即使它们沿着其迁徙走廊混合在一起也是如此。遥测技术历来被用于研究迁徙动物的运动和栖息地使用方式,但是基因组学工具在许多方面正在成为一种优越的替代方法,从而可以降低成本进行大规模应用。在这里,我们证明了基因组资源在鉴定单核苷酸多态性(SNP)方面的有用性,从而可以快速准确地鉴定加利福尼亚大中央山谷中受侵害的奇努克鲑鱼。我们显示,从限制位点相关的DNA测序开发的超过11,500个SNP的库中提取了80个精心选择的基因座,可以准确地识别奇努克鲑鱼的奔跑并在奔跑中选择种群。 Central Valley Chinook鲑鱼没有其他SNP小组能够达到我们在此处显示的高精度分配。该小组将大大提高我们研究和管理这种在生态,经济和社会上重要的物种的能力,并展示使用基因组学研究迁徙物种的巨大实用性。

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