Genotype-Based Case-Control Analysis, Violation of Hardy-Weinberg Equilibrium, and Phase Diagrams

Y. Suh, Wentian Li
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引用次数: 9

Abstract

We study in detail a particular statistical method in genetic case-control analysis, labeled “genotypebased association”, in which the two test results from assuming dominant and recessive model are combined in one optimal output. This method differs both from the allele-based association which artificially doubles the sample size, and the direct χ test on 3-by-2 contingency table which may overestimate the degree of freedom. We conclude that the comparative advantage (or disadvantage) of the genotype-based test over the allele-based test mainly depends on two parameters, the allele frequency difference δ and the Hardy-Weinberg disequilibrium coefficient difference δǫ. Six different situations, called “phases”, characterized by the two X test statistics in allele-based and genotypebased test, are well separated in the phase diagram parameterized by δ and δǫ. For two major groups of phases, a single parameter θ = tan(δ/δǫ) is able to achieves an almost perfect phase separation. We also applied the analytic result to several types of disease models. It is shown that for dominant and additive models, genotype-based tests are favored over allele-based tests.
基于基因型的病例-对照分析,违反Hardy-Weinberg平衡和相图
我们详细研究了遗传病例对照分析中的一种特殊的统计方法,即“基于基因型的关联”,该方法将假设显性和隐性模型的两个检验结果结合在一个最优输出中。这种方法既不同于基于等位基因的关联,它人为地使样本量加倍,也不同于3 × 2列联表上的直接χ检验,它可能高估自由度。结果表明,基因型检测相对于等位基因检测的比较优势(或劣势)主要取决于等位基因频率差δ和Hardy-Weinberg不平衡系数差δ δ。在以δ和δ δ为参数的相图中,以等位基因和基因型检测的两个X检验统计量为特征的6种不同的情况被很好地分开,称为“阶段”。对于两大类相,单参数θ = tan(δ/δ δ)就能实现几乎完美的相分离。我们还将分析结果应用于几种类型的疾病模型。结果表明,对于显性和加性模型,基于基因型的测试比基于等位基因的测试更受青睐。
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