Zhao Wei, Hou Wei, Littell Ramon C, Wu Rongling
University of Florida, USA.
Stat Appl Genet Mol Biol. 2005;4:Article33. doi: 10.2202/1544-6115.1136. Epub 2005 Nov 16.
In this article, we present a statistical model for mapping quantitative trait loci (QTL) that determine growth trajectories of two correlated traits during ontogenetic development. This model is derived within the maximum likelihood context, incorporated by mathematical aspects of growth processes to model the mean vector and by structured antedependence (SAD) models to approximate time-dependent covariance matrices for longitudinal traits. It provides a quantitative framework for testing the relative importance of two mechanisms, pleiotropy and linkage, in contributing to genetic correlations during ontogeny. This model has been employed to map QTL affecting stem height and diameter growth trajectories in an interspecific hybrid progeny of Populus, leading to the successful discovery of three pleiotropic QTL on different linkage groups. The implications of this model for genetic mapping within a broader context are discussed.
在本文中,我们提出了一种统计模型,用于绘制数量性状基因座(QTL),这些基因座决定了个体发育过程中两个相关性状的生长轨迹。该模型是在最大似然框架内推导出来的,它结合了生长过程的数学方面来对均值向量进行建模,并通过结构化前相依(SAD)模型来近似纵向性状的时间相依协方差矩阵。它提供了一个定量框架,用于检验在个体发育过程中,多效性和连锁这两种机制对遗传相关性的相对重要性。该模型已被用于绘制影响杨树种间杂交后代茎高和直径生长轨迹的QTL,从而成功地在不同连锁群上发现了三个多效性QTL。本文还讨论了该模型在更广泛背景下对基因定位的意义。