Hayashi Takeshi, Awata Takashi
Division of Animal Sciences, National Institute of Agrobiological Sciences, Kannondai, Tsukuba, Ibaraki 305-8602, Japan.
Genetics. 2008 Jan;178(1):527-38. doi: 10.1534/genetics.107.081521.
Genomic imprinting is interpreted as a phenomenon, in which some genes inherited from one parent are not completely expressed due to modification of the genome caused during gametogenesis. Subsequently, the expression level of an allele at the imprinted gene is changed dependent on the parental origin, which is referred to as the parent-of-origin effect. In livestock, some QTL for reproductive performance and meat productivity have been reported to be imprinted. So far, methods detecting imprinted QTL have been proposed on the basis of interval mapping, where only a single QTL was tested at a time. In this study, we developed a Bayesian method for simultaneously mapping multiple QTL, allowing the inference about expression modes of QTL in an outbred F2 family. The inference about whether a QTL is Mendelian or imprinted was made using Markov chain Monte Carlo estimation by comparing the goodness-of-fits between models, assuming the presence and the absence of parent-of-origin effect at a QTL. We showed by the analyses of simulated data sets that the Bayesian method can effectively detect both Mendelian QTL and imprinted QTL.
基因组印记被解释为一种现象,即由于配子发生过程中引起的基因组修饰,从一方亲本遗传而来的某些基因不能完全表达。随后,印记基因上等位基因的表达水平根据亲本来源而改变,这被称为亲本来源效应。在牲畜中,一些与繁殖性能和肉生产率相关的数量性状位点(QTL)已被报道为印记基因。到目前为止,基于区间作图法已经提出了检测印记QTL的方法,该方法一次只检测一个QTL。在本研究中,我们开发了一种贝叶斯方法,用于同时定位多个QTL,从而能够推断远交F2家系中QTL的表达模式。通过比较模型之间的拟合优度,利用马尔可夫链蒙特卡罗估计法,在假设QTL存在和不存在亲本来源效应的情况下,推断一个QTL是孟德尔式的还是印记的。我们通过对模拟数据集的分析表明,贝叶斯方法能够有效地检测孟德尔QTL和印记QTL。