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人类数量性状的多因素遗传模型。

Multifactorial genetic models for quantitative traits in humans.

作者信息

Boyle C R, Elston R C

出版信息

Biometrics. 1979 Mar;35(1):55-68.

PMID:497338
Abstract

Quantitative traits measured in human families can be analyzed to partition the total population variance into genetic and environmental components, or to elucidate the genetic mechanism involved. We review the estimation of variance components directly from human pedigree data, or in the form of path coefficients from correlations between pairs of relatives. To elucidate genetic mechanisms, a mixed model that allows for segregation at a major locus, a polygenic effect and a sibling environmental correlation is described for nuclear families. In each case appropriate likelihoods are derived as a basis, using numerical maximum likelihood methods, for parameter estimation and hypothesis testing. A general model is then described that allows for several familial sources of environmental variation, assortative mating, and both major gene and polygenic effects; and an algorithm for calculating the likelihood of a pedigree under this model is indicated. Finally, some of the remaining problems in this area of biometric analysis are pointed out.

摘要

对人类家族中测量的数量性状进行分析,可以将总群体方差划分为遗传和环境成分,或者阐明其中涉及的遗传机制。我们回顾了直接从人类系谱数据或以亲属对之间相关性的路径系数形式对方差成分的估计。为了阐明遗传机制,针对核心家庭描述了一个混合模型,该模型考虑了主要基因座的分离、多基因效应和同胞环境相关性。在每种情况下,都以适当的似然性为基础,使用数值最大似然法进行参数估计和假设检验。然后描述了一个通用模型,该模型考虑了环境变异的几个家族来源、选型交配以及主要基因和多基因效应;并指出了在此模型下计算系谱似然性的算法。最后,指出了生物统计学分析这一领域中一些仍然存在的问题。

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