Liu Ying, Tritchler David, Bull Shelley B
Department of Public Health Sciences, University of Toronto, Toronto, Ontario, Canada.
Genet Epidemiol. 2002 Jan;22(1):26-40. doi: 10.1002/gepi.1041.
This paper presents a unified framework for transmission-disequilibrium tests for discrete and continuous traits. A conditional score test is derived that maximizes power to detect small effects for any exponential family distribution, which includes binary and normal distributions, and distributions that are skewed or have non-normal kurtosis. The specific distributional form need not be specified, and the method applies to sibships of arbitrary size. Formulas for the distribution of the test statistic are given for models including complex genetic effects (additive, dominant, and recessive gene action), covariates, multiple gene models including gene-gene interactions or heterogeneity, and gene-environment interactions. We develop refinements of our method for trait-based sampling designs and multiple siblings that can have dramatic effects on power.
本文提出了一个用于离散性状和连续性状的传递不平衡检验的统一框架。推导了一种条件得分检验,该检验对于任何指数族分布(包括二元分布和正态分布,以及有偏或具有非正态峰度的分布)检测小效应的功效最大化。无需指定具体的分布形式,该方法适用于任意大小的同胞组。给出了检验统计量分布的公式,适用于包括复杂遗传效应(加性、显性和隐性基因作用)、协变量、包括基因 - 基因相互作用或异质性的多基因模型以及基因 - 环境相互作用的模型。我们针对基于性状的抽样设计和多个兄弟姐妹开发了方法的改进,这可能对功效产生显著影响。