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首页> 外文期刊>Transactions of the American Fisheries Society >A microsatellite genome screen identifies chromosomal regions under differential selection in steelhead and rainbow trout. (Special Issue: Genetic adaptation of natural salmonid populations)
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A microsatellite genome screen identifies chromosomal regions under differential selection in steelhead and rainbow trout. (Special Issue: Genetic adaptation of natural salmonid populations)

机译:微卫星基因组筛选可识别硬头鳟和虹鳟鱼的差异选择下的染色体区域。 (特刊:天然鲑鱼种群的遗传适应)

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Novel genetic resources now make it possible to directly assess the effects of natural selection on specific regions of the salmonid genome. Natural selection on specific genetic loci will also affect the variation in linked flanking regions through "hitchhiking" effects, causing greater differentiation between populations than would be expected from purely neutral processes. Here we identify candidate genomic regions for the effects of differential natural selection in two closely related populations of steelhead-rainbow trout Oncorhynchus mykiss separated for the last century following anthropogenic introduction above a barrier waterfall in a coastal California stream. A set of 110 expressed sequence tag (EST)-linked and 188 anonymous microsatellite loci, most of which are mapped, were chosen to provide distributed coverage of all linkage groups in the O. mykiss genome. A genome screen was then performed to identify genomic regions under divergent selection. Multiple complementary statistical methods were used to detect outlier loci, and loci identified by more than one method were considered strong candidates for genomic regions affected by recent natural selection and genomic adaptation to the environment above the waterfall. We identified six strongly supported outlier loci, including one linked to an EST and two located in a genomic region that contains quantitative trait loci associated with egg development, spawning time, and other life history variation. Identification of regions in the genome that are potentially under selection provides valuable information about the genetic basis of selection in novel habitats and the genetic architecture of salmonid life history variation.Digital Object Identifier http://dx.doi.org/10.1080/00028487.2011.588094
机译:现在,新的遗传资源使直接评估自然选择对鲑鱼基因组特定区域的影响成为可能。在特定遗传基因座上的自然选择也会通过“搭便车”效应影响相连侧翼区域的变异,从而导致种群之间的分化比纯中性过程所预期的更大。在这里,我们确定了人为引入沿海加利福尼亚溪流上方屏障瀑布之后的上个世纪分离的两个紧密相关的虹鳟-虹鳟的两个紧密相关种群的差异自然选择影响的候选基因组区域。选择一组110个表达的序列标签(EST)-连锁的和188个匿名的微卫星基因座,其中大多数已作图,以提供对o中所有连锁基团的分布式覆盖。 mykiss 基因组。然后进行基因组筛选以鉴定在不同选择下的基因组区域。使用多种互补的统计方法来检测异常基因座,并且通过一种以上方法鉴定的基因座被认为是受最近自然选择和基因组对瀑布上方环境的影响所影响的基因组区域的强大候选者。我们确定了六个受强烈支持的离群基因座,包括一个与EST相关的基因座和两个位于基因组区域的基因组区域,其中包含与卵发育,产卵时间和其他生活史变异相关的数量性状基因座。在基因组中可能被选择的区域的鉴定提供了有关在新的生境中选择的遗传基础和鲑鱼生活史变异的遗传结构的有价值的信息。数字对象标识符http://dx.doi.org/10.1080/00028487.2011。 588094

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