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Microsatellite DNA loci reveal genetic structure of yellow perch in Lake Michigan

机译:微卫星DNA基因座揭示了密歇根湖黄鲈的遗传结构

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The genetic population structure of yellow perch Perca flavescens was assessed, with a focus on spawning groups within Lake Michigan. Six microsatellite DNA loci were evaluated, which had heterozygosities ranging from 0.21 to 0.86 in samples from seven Lake Michigan locations and six others in the north-central United States. Genetic variation within samples was somewhat higher in Lake Michigan than in surrounding inland lakes. Genetic variation was also higher in the north-central United States than in a sample from the eastern United States. Exact tests for population differentiation and the fixation index R-ST indicated little differentiation among spawning groups within southern Lake Michigan or Green Bay (pairwise R-ST values,-0.005 to +0.014; P > 0.05 after sequential Bonferroni correction for multiple tests). However, spawning groups in Green Bay were distinct from those in Lake Michigan, and all inland locations were distinct from one another as well as from those in Lake Michigan (P < 0.01). All north-central U.S. samples were considerably different from the eastern U.S. sample (pairwise R-ST values 0.67-0.72). Although the sample sizes for northern Lake Michigan were limited, these fish grouped more closely with those from southern Lake Michigan than with those from Green Bay. There thus is evidence for the proposition that the yellow perch in Lake Michigan proper should be managed separately from those in Green Bay.
机译:评估了黄鲈Perca flavescens的遗传种群结构,重点是密歇根湖内的产卵群体。对六个微卫星DNA位点进行了评估,在密歇根湖七个地点和美国中北部其他六个地点的样品中,杂合度在0.21至0.86之间。密歇根湖的样品内遗传变异比周围的内陆湖高一些。美国中北部的遗传变异也比美国东部的样本高。种群分化和固定指数R-ST的精确测试表明,密歇根湖南部或格林贝南部产卵组之间几乎没有差异(成对的R-ST值,-0.005至+0.014;经过多次Bonferroni校正后,P> 0.05,多次测试)。但是,绿湾的产卵组与密歇根湖的产卵组不同,所有内陆位置也与密歇根湖的产卵组不同(P <0.01)。美国中北部所有样本均与美国东部样本有很大差异(成对R-ST值为0.67-0.72)。尽管北部密歇根湖的样本数量有限,但这些鱼类与密歇根州南部的鱼类相比,与格林湾的鱼类更为接近。因此,有证据表明,密歇根湖中的黄鲈应该与绿湾中的黄鲈分开管理。

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