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Significant deviations from Hardy-Weinberg equilibrium caused by low levels of microsatellite genotyping errors

机译:低水平的微卫星基因分型误差导致与Hardy-Weinberg平衡的显着偏差

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摘要

Microsatellite genotyping from samples with varying quality can result in an uneven distribution of errors. Previous studies reporting error rates have focused on estimating the effects of both randomly distributed and locus-specific errors. Sample-specific errors, however, can also significantly affect results in population studies despite a large sample size. From two studies including six microsatellite markers genotyped from 272 sperm whale DNA samples, and 33 microsatellites genotyped from 213 bowhead whales, we investigated the effects of sample- and locus-specific errors on calculations of Hardy-Weinberg equilibrium. The results of a jackknife analysis in these two studies identified seven individuals that were highly influential on estimates of Hardy-Weinberg equilibrium for six different markers. In each case, the influential individual was homozygous for a rare allele. Our results demonstrate that Hardy-Weinberg P values are very sensitive to homozygosity in rare alleles for single individuals, and that > 50% of these cases involved genotype errors likely due to low sample quality. This raises the possibility that even small, normal levels of laboratory errors can result in an overestimate of the degree to which markers are out of Hardy-Weinberg equilibrium and hence overestimate population structure. To avoid such bias, we recommend routine identification of influential individuals and multiple replications of those samples.
机译:来自质量不同的样品的微卫星基因分型会导致误差分布不均。以前的报告错误率的研究都集中于估计随机分布的错误和特定于地点的错误的影响。但是,尽管样本量很大,但特定于样本的错误也会严重影响总体研究的结果。通过两项研究,包括从272条抹香鲸DNA样本中分型的六个微卫星标记和从213头鲸的基因型分型的33个微卫星,我们调查了样本和特定于地点的误差对Hardy-Weinberg平衡计算的影响。这两项研究的折刀分析结果确定了七个个体,这些个体对六个不同标记的Hardy-Weinberg平衡估计有很大影响。在每种情况下,有影响力的个体都是罕见的等位基因纯合子。我们的结果表明,Hardy-Weinberg P值对单个个体的罕见等位基因中的纯合性非常敏感,并且其中超过50%的病例涉及基因型错误,这可能是由于样品质量低所致。这增加了这样的可能性,即即使是很小的正常水平的实验室误差也可能导致高估标记物超出Hardy-Weinberg平衡的程度,从而高估了种群结构。为避免这种偏见,我们建议对有影响力的个体进行常规鉴定,并对这些样品进行多次重复。

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