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Analytical and numerical comparisons of two methods of estimation of additive x additive interaction of QTL effects

机译:两种估算加性x QTL效应加性相互作用的方法的分析和数值比较

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摘要

Epistasis (additive x additive interaction) plays an important role in the genetic architecture of complex traits. This study presents analytical and numerical comparisons of two methods of estimation of additive x additive interaction of QTL effects. In the first method, we observed only the plant phenotype, while in the second method we have additional information from the molecular markers observations. In this study, two data sets were analyzed: i) 150 barley (Hordeum vulgare L.) doubled-haploid lines derived from the cross Steptoe x Morex and ii) 145 doubled-haploid lines of barley obtained from the cross Harrington x TR306. In total, 153 sets of observations were analyzed. The additive x additive interaction effect calculated on the basis of the marker observations is smaller than the total additive x additive interaction effect obtained from phenotypic observations only.
机译:上位性(加性x加性相互作用)在复杂性状的遗传结构中起着重要作用。这项研究提出了两种估算QTL效应的添加剂x添加剂相互作用的方法的分析和数值比较。在第一种方法中,我们仅观察到植物表型,而在第二种方法中,我们从分子标记观察中获得了更多信息。在这项研究中,分析了两个数据集:i)150个大麦(Hordeum vulgare L.)大麦双倍单倍体系,来自杂交种Steptoe x Morex,以及ii)145个大麦双倍单倍体系,从杂交Harrington x TR306获得。总共分析了153套观测值。根据标记观察值计算得出的加性x加性相互作用效应小于仅从表型观察中获得的总加性x加性相互作用效应。

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