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Discovery and characterization of single nucleotide polymorphisms in two anadromous alosine fishes of conservation concern

机译:在两个需要保护的淡水淡水青鱼中发现和鉴定了单核苷酸多态性

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摘要

Freshwater habitat alteration and marine fisheries can affect anadromous fish species, and populations fluctuating in size elicit conservation concern and coordinated management. We describe the development and characterization of two sets of 96 single nucleotide polymorphism (SNP) assays for two species of anadromous alosine fishes, alewife and blueback herring (collectively known as river herring), that are native to the Atlantic coast of North America. We used data from high‐throughput DNA sequencing to discover SNPs and then developed molecular genetic assays for genotyping sets of 96 individual loci in each species. The two sets of assays were validated with multiple populations that encompass both the geographic range and the known regional genetic stocks of both species. The SNP panels developed herein accurately resolved the genetic stock structure for alewife and blueback herring that was previously identified using microsatellites and assigned individuals to regional stock of origin with high accuracy. These genetic markers, which generate data that are easily shared and combined, will greatly facilitate ongoing conservation and management of river herring including genetic assignment of marine caught individuals to stock of origin.
机译:淡水生境的改变和海洋渔业可能影响淡水鱼类,种群规模的波动引起人们对保护的关注和协调管理。我们描述了两种96种单核苷酸多态性(SNP)检测方法的开发和特征,这两种方法是两种原产于北美大西洋沿岸的无性芦荟鱼(alewife)和蓝鲱鱼(统称为河鲱鱼)。我们使用来自高通量DNA测序的数据来发现SNP,然后针对每个物种中96个单个基因座的基因型进行了分子遗传分析。两组测定均已通过多个种群进行了验证,这些种群既涵盖了地理分布,又涵盖了两种物种的已知区域遗传资源。本文开发的SNP专家组准确地解析了以前使用微卫星鉴定出的alewife和blueblue鲱鱼的遗传种群结构,并以高准确度将个体分配给了区域起源种群。这些遗传标记产生易于共享和共享的数据,将极大地促进正在进行的鱼类鲱鱼的养护和管理,包括将海洋捕获的个体进行遗传分配到原产地。

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