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计算单倍型所表达的基因印记。

Computing genetic imprinting expressed by haplotypes.

作者信息

Cheng Yun, Berg Arthur, Wu Song, Li Yao, Wu Rongling

机构信息

Department of Statistics, University of Florida, Gainesville, FL, USA.

出版信息

Methods Mol Biol. 2009;573:189-212. doi: 10.1007/978-1-60761-247-6_11.

Abstract

Different expression of maternally and paternally inherited alleles at certain genes is called genetic imprinting. Despite its great importance in trait formation, development, and evolution, it remains unclear how genetic imprinting operates in a complex network of interactive genes located throughout the genome. Genetic mapping has proven to be a powerful tool that can estimate the distribution and effects of imprinted genes. While traditional mapping models attempt to detect imprinted quantitative trait loci based on a linkage map constructed from molecular markers, we have developed a statistical model for estimating the imprinting effects of haplotypes composed of multiple sequenced single-nucleotide polymorphisms. The new model provides a characterization of the difference in the effect of maternally and paternally derived haplotypes, which can be used as a tool for genetic association studies at the candidate gene or genome-wide level. The model was used to map imprinted haplotype effects on body mass index in a random sample from a natural human population, leading to the detection of significant imprinted effects at the haplotype level. The new model will be useful for characterizing the genetic architecture of complex quantitative traits at the nucleotide level.

摘要

某些基因上母系和父系遗传等位基因的不同表达被称为基因印记。尽管基因印记在性状形成、发育和进化中极为重要,但在整个基因组中位于相互作用基因的复杂网络里,基因印记是如何运作的仍不清楚。遗传图谱已被证明是一种强大的工具,能够估计印记基因的分布和效应。传统的图谱模型试图基于由分子标记构建的连锁图谱来检测印记数量性状位点,而我们已经开发出一种统计模型,用于估计由多个测序单核苷酸多态性组成的单倍型的印记效应。新模型能够表征母系和父系来源单倍型效应的差异,可作为候选基因或全基因组水平遗传关联研究的工具。该模型被用于绘制来自自然人群的随机样本中印记单倍型对体重指数的影响,从而在单倍型水平上检测到显著的印记效应。新模型将有助于在核苷酸水平上表征复杂数量性状的遗传结构。

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