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首页> 外文期刊>Annals of Human Genetics >EMK: a novel program for family-based allelic and genotypic association tests on quantitative traits.
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EMK: a novel program for family-based allelic and genotypic association tests on quantitative traits.

机译:EMK:一种用于定量特征的基于家庭的等位基因和基因型关联测试的新颖程序。

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The QTDT program is a widely-used program for analyzing quantitative trait data, but the methods mainly test allelic association. Since the genotype of a marker is a direct observation for an individual, it is of interest to assess association at the genotypic level. In this study, we extended the allele-based association method developed by Monks and Kaplan (MK method) to genotype-based association tests for quantitative traits. We implemented a novel extended MK (EMK) program that can perform both allele- and genotype- based association tests in any pedigree structure. To evaluate the performance of EMK, we utilized simulated pedigree data and real data from our previous report of GSTO1 and GSTO2 genes in Alzheimer disease (AD). Both allele- and genotype-based EMK methods (allele-EMK and geno-EMK) showed correct type I error for various pedigree structures and admixture populations. The geno-EMK method showed comparable power to the allele-EMK test. By treating age-at-onset (AAO) as a quantitative trait, the EMK program was able to detect significant associations for rs4925 in GSTO1 (P= 0.006 for allele-EMK and P= 0.009 for geno-EMK), and rs2297235 in GSTO2 (P= 0.005 for allele-EMK and P= 0.009 for geno-EMK), which are consistent with our previous findings.
机译:QTDT程序是用于分析数量性状数据的广泛使用的程序,但是这些方法主要测试等位基因关联。由于标记的基因型是对个体的直接观察,因此有兴趣在基因型水平上评估关联。在这项研究中,我们将Monks和Kaplan开发的基于等位基因的关联方法(MK方法)扩展到基于基因型的定量性状关联测试。我们实施了一种新颖的扩展MK(EMK)程序,该程序可以在任何谱系结构中执行基于等位基因和基因型的关联测试。为了评估EMK的性能,我们利用了以前的GSTO1和GSTO2基因在阿尔茨海默病(AD)中的报告中的模拟谱系数据和真实数据。基于等位基因和基因型的EMK方法(等位基因EMK和基因型EMK)均显示出正确的I型错误,适用于各种谱系结构和混合群体。基因-EMK方法显示出与等位基因-EMK测试相当的功效。通过将发病年龄(AAO)作为定量特征,EMK程序能够检测GSTO1中rs4925的显着关联(对于等位基因-EMK,P = 0.006;对于基因型-EMK,P = 0.009);以及在GSTO2中,rs2297235 (等位基因-EMK为P = 0.005,基因组-EMK为P = 0.009),与我们之前的发现一致。

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