首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Power to detect higher-order epistatic interactions in a metabolic pathway using a new mapping strategy.
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Power to detect higher-order epistatic interactions in a metabolic pathway using a new mapping strategy.

机译:使用新的映射策略,可以检测代谢途径中的上位上位相互作用。

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摘要

Epistatic interactions among quantitative trait loci (QTL) contribute substantially to the variation in complex traits. The main objectives of this study were to (i) compare three- vs. four-step genome scans to identify three-way epistatic interactions among QTL belonging to a metabolic pathway, (ii) investigate by computer simulations the power and proportion of false positives (PFP) for detecting three-way interactions among QTL in recombinant inbred line (RIL) populations derived from a nested mating design, and (iii) compare these estimates to those obtained for detecting three-way interactions among QTL in RIL populations derived from diallel and different partial diallel mating designs. The single-nucleotide polymorphism haplotype data of B73 and 25 diverse maize inbreds were used to simulate the production of various RIL populations. Compared to the three-step genome scan, the power to detect three-way interactions was higher with the four-step genome scan. Higher power to detect three-way interactions was observed for RILs derived from optimally allocated distance-based designs than from nested designs or diallel designs. The power and PFP to detect three-way interactions using a nested design with 5000 RILs were for both the 4-QTL and the 12-QTL scenario of a magnitude that seems promising for their identification.
机译:数量性状基因座(QTL)之间的上位性相互作用在很大程度上导致了复杂性状的变异。这项研究的主要目的是(i)比较三步法和四步法基因组扫描以鉴定属于代谢途径的QTL之间的三向上位相互作用,(ii)通过计算机模拟研究假阳性的能力和比例(PFP)用于检测源自嵌套交配设计的重组近交系(RIL)群体中QTL之间的三向相互作用,并且(iii)将这些估计值与用于检测源自Dialelel的RIL群体中QTL之间的三向相互作用进行比较以及不同的局部拨号匹配设计。 B73和25个不同玉米自交系的单核苷酸多态性单倍型数据用于模拟各种RIL群体的生产。与三步基因组扫描相比,四步基因组扫描具有更高的检测三向相互作用的能力。对于基于最优分配的基于距离的设计得出的RIL,与从嵌套设计或Diallel设计得出的结果相比,发现了更高的检测三向交互作用的能力。使用具有5000个RIL的嵌套设计来检测三向交互的功能和PFP都适用于4-QTL和12-QTL场景,其大小似乎有望对其进行识别。

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