首页> 外文OA文献 >Reply to the comment by Beacham and Withler on “Gene flow increases temporal stability of Chinook salmon (Oncorhynchus tshawytscha) populations in the Upper Fraser River, British Columbia, Canada”Appears in Can. J. Fish. Aquat. Sci. 66: 167–176.
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Reply to the comment by Beacham and Withler on “Gene flow increases temporal stability of Chinook salmon (Oncorhynchus tshawytscha) populations in the Upper Fraser River, British Columbia, Canada”Appears in Can. J. Fish. Aquat. Sci. 66: 167–176.

机译:对Beacham和Withler关于 u22Gene流量的评论的回复增加了加拿大不列颠哥伦比亚省Upper Fraser河的Chinook鲑鱼(Oncorhynchus tshawytscha)种群的时间稳定性 u22

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摘要

Beacham and Withler (2010. Can. J. Fish. Aquat. Sci. 67: 202-205) raise concerns about the experimental design and interpretation of data in the analysis of temporal genetic variation of Chinook salmon (Oncorhynchus tshawytscha) from the Upper Fraser River, Canada (Walter et al. 2009. Can. J. Fish. Aquat. Sci. 66: 167-176). They note that for the sampled populations, spatial genetic variance should far exceed temporal variance components based on previously published work and suggest that limited sample sizes biased our results by confounding sampling error with temporal variation. Here, we perform a rarefaction analysis by randomly removing up to 50% of the individuals from sample sites, yet the pattern of temporal versus spatial variation is similar to that reported in our original paper. We reiterate that caution should be applied to the interpretation of migration rates estimated from assignment tests, yet the absolute magnitude of our migration estimates was not central to the goals of the original paper. Although Beacham and Withler raise important points on the validation of genetic stock identification analyses, our analyses of temporal variation in genetic population structure in the Upper Fraser River population likely differ due to demographic differences between the timing of sampling of their earlier work versus our analyses.
机译:比彻姆和Withler(2010制罐J.鱼Aquat科学67:。202-205)约在大鳞大麻哈鱼(大麻哈鱼tshawytscha)的时间的遗传变异的来自上弗雷泽分析实验设计和解释数据的引起关注河,加拿大(Walter等人2009年制罐J.鱼Aquat科学66:。167-176)。他们指出,在抽样的人口,空间遗传变异应远远超过基于先前公布的工作时间方差分量和建议有限的样本大小与时间变化混杂抽样误差偏向我们的结果。在这里,我们通过随机移除了从样品点个人的50%执行稀疏的分析,但随时间与空间变化的模式是类似于我们的原始论文报道。我们重申,应谨慎应用到从分配的测试估计迁移率的解释,但我们的迁移估计的绝对幅度不是中央对原纸的目标。虽然比彻姆和Withler遗传股票识别分析的有效性提出了重要的点,我们在上菲沙河种群遗传人口结构随时间变化的分析可能有所不同,由于其早期的工作与我们的分析取样的时间之间的人口差异。

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