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首页> 外文期刊>The Journal of Heredity >An epistatic genetic basis for physical activity traits in mice.
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An epistatic genetic basis for physical activity traits in mice.

机译:小鼠体育活动性状的上位遗传基础。

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摘要

We recently identified several (4-8) quantitative trait loci (QTL) for 3 physical activity traits (daily distance, duration, and speed voluntarily run) in an F(2) population of mice derived from an original intercross of 2 strains that exhibited large differences in activity. These QTL cumulatively explained from 11% to 34% of the variation in these traits, but this was considerably less than their total genetic variability estimated from differences among inbred strains. We therefore decided to test whether epistatic interactions might account for additional genetic variation in these traits in this same population of mice. We conducted a full genome epistasis scan for all possible interactions of QTL between each pair of 20 chromosomes. The results of this scan revealed an abundance of epistasis, with QTL throughout the genome being involved in significant interactions. Overall, epistatic effects contributed an average of 26% of the total variation among the 3 activity traits. These results suggest that epistatic interactions of genes may play as important a role in the genetic architecture of physical activity traits as single-locus effects and need to be considered in future candidate gene identification studies.
机译:我们最近确定了F(2)小鼠群体中3种身体活动性状(每天的距离,持续时间和速度自动运行)的几个(4-8)数量性状基因座(QTL),该小鼠群体来自表现出2种菌株的原始交叉活动差异很大。这些QTL累积解释了这些性状变异的11%至34%,但这远低于根据自交系之间差异估算的总遗传变异性。因此,我们决定测试上位性相互作用是否可以解释这些相同种群小鼠中这些性状的其他遗传变异。我们对每对20条染色体之间的QTL的所有可能相互作用进行了全基因组上位扫描。扫描的结果显示出大量的上位性,整个基因组中的QTL参与了显着的相互作用。总体而言,上位性效应在这三个活动性状中平均贡献了总变异的26%。这些结果表明,基因的上位性相互作用可能在体育活动性状的遗传结构中起与单基因位效应同样重要的作用,因此在未来的候选基因鉴定研究中需要加以考虑。

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