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Canadian polar bear population structure using genome‐wide markers

机译:加拿大北极熊人口结构采用基因组 - 宽标记

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Predicting the consequences of environmental changes, including human‐mediated climate change on species, requires that we quantify range‐wide patterns of genetic diversity and identify the ecological, environmental, and historical factors that have contributed to it. Here, we generate baseline data on polar bear population structure across most Canadian subpopulations (n?=?358) using 13,488 genome‐wide single nucleotide polymorphisms (SNPs) identified with double‐digest restriction site‐associated DNA sequencing (ddRAD). Our ddRAD dataset showed three genetic clusters in the sampled Canadian range, congruent with previous studies based on microsatellites across the same regions; however, due to a lack of sampling in Norwegian Bay, we were unable to confirm the existence of a unique cluster in that subpopulation. These data on the genetic structure of polar bears using SNPs provide a detailed baseline against which future shifts in population structure can be assessed, and opportunities to develop new noninvasive tools for monitoring polar bears across their range.
机译:预测环境变化的后果,包括人类介导的气候变化物种,要求我们量化遗传多样性的范围范围,并确定为其做出贡献的生态,环境和历史因素。在这里,我们在大多数加拿大群(N?= 358)上产生关于北极熊人口结构的基线数据(n?=Δ358),使用用双消化限制性位点相关的DNA测序(DDRAD)鉴定。我们的DDRAD数据集在采样的加拿大范围内显示了三个遗传集群,与以前的研究一致基于同一地区的微卫星;但是,由于挪威湾缺乏抽样,我们无法确认在该亚群中的独特群集的存在。使用SNP的北极熊遗传结构的这些数据提供了一种详细的基线,可以评估人口结构的未来班次,以及开发用于监控其范围的北极熊的新型非侵入性工具的机会。

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