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Parent‐of‐origin‐environment interactions in case‐parent triads with or without independent controls

机译:有或没有独立控制的案例父母三元组中的父-母-环境相互作用

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摘要

With case–parent triad data, one can frequently deduce parent of origin of the child's alleles. This allows a parent‐of‐origin (PoO) effect to be estimated as the ratio of relative risks associated with the alleles inherited from the mother and the father, respectively. A possible cause of PoO effects is DNA methylation, leading to genomic imprinting. Because environmental exposures may influence methylation patterns, gene–environment interaction studies should be extended to allow for interactions between PoO effects and environmental exposures (i.e., PoOxE). One should thus search for loci where the environmental exposure modifies the PoO effect.We have developed an extensive framework to analyze PoOxE effects in genome‐wide association studies (GWAS), based on complete or incomplete case–parent triads with or without independent control triads. The interaction approach is based on analyzing triads in each exposure stratum using maximum likelihood estimation in a log‐linear model. Interactions are then tested applying a Wald‐based posttest of parameters across strata. Our framework includes a complete setup for power calculations. We have implemented the models in the R software package Haplin.To illustrate our PoOxE test, we applied the new methodology to top hits from our previous GWAS, assessing whether smoking during the periconceptional period modifies PoO effects on cleft palate only.
机译:利用个案双亲三联体数据,可以经常推断出孩子等位基因的起源父母。这样就可以将产地来源(PoO)效应估计为与分别从母亲和父亲遗传的等位基因相关的相对风险比率。 PoO效应的可能原因是DNA甲基化,导致基因组印迹。由于环境暴露可能会影响甲基化模式,因此应扩展基因与环境的相互作用研究,以允许PoO效应与环境暴露之间的相互作用(即PoOxE)。因此,应该在环境暴露会改变PoO效应的地方寻找基因座。我们基于有或没有独立对照三联体的完整或不完整病例-父母三联体,开发了一个广泛的框架来分析全基因组关联研究(GWAS)中的PoOxE效应。 。交互方法基于对数线性模型中使用最大似然估计来分析每个曝光层中的三合会。然后使用基于Wald的跨层参数后测来测试交互。我们的框架包括用于功率计算的完整设置。我们已经在R软件包Haplin中实现了这些模型。为了说明我们的PoOxE测试,我们将新方法应用于我们之前的GWAS的热门歌曲中,评估在围孕期吸烟是否仅能改善PoO对left裂的影响。

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