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多变量表型数据中的基因关联:五种模型的效能

Genetic association in multivariate phenotypic data: power in five models.

作者信息

Minica Camelia C, Boomsma Dorret I, van der Sluis Sophie, Dolan Conor V

机构信息

Department of Psychology, FMG, University of Amsterdam, The Netherlands.

出版信息

Twin Res Hum Genet. 2010 Dec;13(6):525-43. doi: 10.1375/twin.13.6.525.

Abstract

This article concerns the power of various data analytic strategies to detect the effect of a single genetic variant (GV) in multivariate data. We simulated exactly fitting monozygotic and dizygotic phenotypic data according to single and two common factor models, and simplex models. We calculated the power to detect the GV in twin 1 data in an ANOVA of phenotypic sum scores, in a MANOVA, and in exploratory factor analysis (EFA), in which the common factors are regressed on the genetic variant. We also report power in the full twin model, and power of the single phenotype ANOVA. The results indicate that (1) if the GV affects all phenotypes, the sum score ANOVA and the EFA are most powerful, while the MANOVA is less powerful. Increasing phenotypic correlations further decreases the power of the MANOVA; and (2) if the GV affects only a subset of the phenotypes, the EFA or the MANOVA are most powerful, while sum score ANOVA is less powerful. In this case, an increase in phenotypic correlations may enhance the power of MANOVA and EFA. If the effect of the GV is modeled directly on the phenotypes in the EFA, the power of the EFA is approximately equal to the power of the MANOVA.

摘要

本文关注各种数据分析策略在多变量数据中检测单个基因变异(GV)效应的能力。我们根据单因素和双因素模型以及单纯形模型,精确模拟了完全拟合的同卵和异卵表型数据。我们计算了在表型总分的方差分析(ANOVA)、多变量方差分析(MANOVA)以及探索性因子分析(EFA)中,在双生子1数据中检测GV的能力,其中共同因子是基于基因变异进行回归的。我们还报告了全双生子模型中的检验效能以及单表型方差分析的检验效能。结果表明:(1)如果GV影响所有表型,总分方差分析和探索性因子分析的检验效能最高,而多变量方差分析的检验效能较低。表型相关性增加会进一步降低多变量方差分析的检验效能;(2)如果GV仅影响部分表型,探索性因子分析或多变量方差分析的检验效能最高,而总分方差分析的检验效能较低。在这种情况下,表型相关性增加可能会提高多变量方差分析和探索性因子分析的检验效能。如果在探索性因子分析中直接对表型建立GV的效应模型,探索性因子分析的检验效能大约等于多变量方差分析的检验效能。

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