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A powerful association test for qualitative traits incorporating imprinting effects using general pedigree data

机译:使用一般谱系数据对结合刻印效果的定性特征进行强大的关联测试

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摘要

For qualitative traits and diallelic marker loci, the pedigree disequilibrium test (PDT) based on general pedigrees and its extension (Monte Carlo PDT (MCPDT)) for dealing with missing genotypes are simple and powerful tests for association. There is an increasing interest of incorporating imprinting into association analysis. However, PDT and MCPDT do not take account of the information on imprinting effects in the analysis, which may reduce their test powers when the effects are present. On the other hand, the transmission disequilibrium test with imprinting (TDTI*) combines imprinting into the mapping of association variants. However, TDTI* only accommodates two-generation nuclear families and thus is not suitable for extended pedigrees. In this article, we first extend PDT to incorporate imprinting and propose PDTI for complete pedigrees (no missing genotypes). To fully utilize pedigrees with missing genotypes, we further develop the Monte Carlo PDTI (MCPDTI) statistic based on Monte Carlo sampling and estimation. Both PDTI and MCPDTI are derived in a two-stage framework. Simulation study shows that PDTI and MCPDTI control the size well under the null hypothesis of no association and are more powerful than PDT and TDTI* (based on a sample of nuclear families randomly selecting from pedigrees) when imprinting effects exist.
机译:对于定性性状和拨号标记基因座,基于一般谱系及其扩展(蒙特卡洛PDT(MCPDT))的谱系不平衡检验(PDT)是处理关联性的简单而有效的检验。将印记纳入关联分析的兴趣日益浓厚。但是,PDT和MCPDT在分析中未考虑有关压印效果的信息,当存在压印效果时,它们可能会降低其测试能力。另一方面,带有压印的传输不平衡测试(TDTI *)将压印结合到关联变量的映射中。但是,TDTI *仅适用于两代核心家庭,因此不适合扩展谱系。在本文中,我们首先将PDT扩展为包含印记,并为完整的系谱(不缺少基因型)提出PDTI。为了充分利用缺少基因型的血统书,我们在蒙特卡洛抽样和估计的基础上进一步开发了蒙特卡洛PDTI(MCPDTI)统计数据。 PDTI和MCPDTI都是在两个阶段的框架中得出的。仿真研究表明,在存在印迹效应的情况下,PDTI和MCPDTI在没有关联的无效假设下可以很好地控制大小,并且比PDT和TDTI *(基于从系谱中随机选择的核科样本)更强大。

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