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Genotyping‐by‐sequencing of genome‐wide microsatellite loci reveals fine‐scale harvest composition in a coastal Atlantic salmon fishery

机译:通过全基因组微卫星基因座测序的基因分型揭示了沿海大西洋鲑鱼捕捞的精细收获组成

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Individual assignment and genetic mixture analysis are commonly utilized in contemporary wildlife and fisheries management. Although microsatellite loci provide unparalleled numbers of alleles per locus, their use in assignment applications is increasingly limited. However, next‐generation sequencing, in conjunction with novel bioinformatic tools, allows large numbers of microsatellite loci to be simultaneously genotyped, presenting new opportunities for individual assignment and genetic mixture analysis. Here, we scanned the published Atlantic salmon genome to identify 706 microsatellite loci, from which we developed a final panel of 101 microsatellites distributed across the genome (average 3.4 loci per chromosome). Using samples from 35 Atlantic salmon populations ( n =?1,485 individuals) from coastal Labrador, Canada, a region characterized by low levels of differentiation in this species, this panel identified 844 alleles (average of 8.4 alleles per locus). Simulation‐based evaluations of assignment and mixture identification accuracy revealed unprecedented resolution, clearly identifying 26 rivers or groups of rivers spanning 500?km of coastline. This baseline was used to examine the stock composition of 696 individuals harvested in the Labrador Atlantic salmon fishery and revealed that coastal fisheries largely targeted regional groups (.
机译:个人分配和遗传混合物分析通常用于当代野生动植物和渔业管理中。尽管微卫星基因座为每个基因座提供了无与伦比的等位基因数量,但是它们在分配应用中的使用越来越受到限制。但是,新一代测序技术与新颖的生物信息学工具相结合,可以同时对大量微卫星基因座进行基因分型,从而为个体分配和遗传混合物分析提供了新的机会。在这里,我们扫描了已发布的大西洋鲑鱼基因组,以确定706个微卫星基因座,从中我们开发出了分布在基因组中的101个微卫星的最终面板(每个染色体平均3.4个基因座)。使用来自加拿大拉布拉多沿海地区的35个大西洋鲑鱼种群(n = 1485个人)的样本,该地区的特征是该物种的低分化水平,该小组鉴定了844个等位基因(每个基因座平均8.4个等位基因)。基于模拟的分配和混合识别精度评估显示出前所未有的分辨率,可以清楚地识别出26条河流或河流群,跨越海岸线500?km。该基准用于检查在拉布拉多大西洋鲑鱼渔业中收获的696个人的种群构成,并显示沿海渔业主要针对区域群体(。

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