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Mapping quantitative trait loci for complex binary traits in outbred populations

机译:近亲群体复杂二元性状的数量性状基因座定位

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摘要

Complex binary traits have a dichotomous phenotypic expression but do not show a simple Mendelian segregation ratio. These traits are considered to be jointly controlled by the actions of several genes and a random environmental effect. The binary phenotype and the underlying factor are assumed to be linked through a threshold model. The underlying factor, referred to as the liability, is treated as a regular but unobservable quantitative character. Mapping quantitative trait loci (QTL) can be performed directly on the liability. Methods of QTL mapping for the liability of a complex binary trait have been well developed in line-crossing experiments. However, such a method is not available in outbred populations which usually consist of many independent pedigrees (families). In this study, we develop a method to analyse jointly multiple families of an outbred population. The method is developed based on a fixed-model approach, i.e. the QTL effects, rather than the variance, are estimated and tested. After the test, the estimated effects are then converted into a single estimate of the QTL variance by taking into consideration errors in the estimated effects. The QTL effects and variance-covariance matrix of the estimates are obtained by a fast Fisher-scoring method. Monte Carlo simulations show that the method is not only powerful but also generates very accurate estimates of QTL variances.
机译:复杂的二元性状具有二分型表型表达,但没有显示简单的孟德尔偏析率。这些性状被认为是由几个基因的作用和随机环境效应共同控制的。假定二元表型和潜在因素通过阈值模型链接。称为负债的基本因素被视为常规但无法观察的定量特征。可以直接对负债执行定量特征位点(QTL)的映射。 QTL映射复杂二元性状的责任的方法已经在交叉实验中得到了很好的发展。但是,这种方法在通常由许多独立谱系(家庭)组成的近交人群中不可用。在这项研究中,我们开发了一种方法来共同分析异族人口的多个家庭。该方法是基于固定模型方法开发的,即,估计并测试了QTL效果而不是方差。在测试之后,然后通过考虑估计效应中的误差,将估计效应转换为QTL方差的单个估计。估计的QTL效果和方差-协方差矩阵是通过快速Fisher评分方法获得的。蒙特卡洛模拟表明,该方法不仅功能强大,而且可以生成非常准确的QTL方差估算值。

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