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Mapping determinants of human gene expression by regional and genome-wide association.通过区域和全基因组关联研究绘制人类基因表达的决定因素。
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Integrating QTL and high-density SNP analyses in mice to identify Insig2 as a susceptibility gene for plasma cholesterol levels.整合小鼠的数量性状基因座(QTL)和高密度单核苷酸多态性(SNP)分析,以确定Insig2作为血浆胆固醇水平的易感基因。
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不同近交系小鼠的全基因组关联分析:效能与群体结构

Genomewide association analysis in diverse inbred mice: power and population structure.

作者信息

McClurg Phillip, Janes Jeff, Wu Chunlei, Delano David L, Walker John R, Batalov Serge, Takahashi Joseph S, Shimomura Kazuhiro, Kohsaka Akira, Bass Joseph, Wiltshire Tim, Su Andrew I

机构信息

Genomics Institute of the Novartis Research Foundation, San Diego, California 92121, USA.

出版信息

Genetics. 2007 May;176(1):675-83. doi: 10.1534/genetics.106.066241. Epub 2007 Apr 3.

DOI:10.1534/genetics.106.066241
PMID:17409088
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1893038/
Abstract

The discovery of quantitative trait loci (QTL) in model organisms has relied heavily on the ability to perform controlled breeding to generate genotypic and phenotypic diversity. Recently, we and others have demonstrated the use of an existing set of diverse inbred mice (referred to here as the mouse diversity panel, MDP) as a QTL mapping population. The use of the MDP population has many advantages relative to traditional F(2) mapping populations, including increased phenotypic diversity, a higher recombination frequency, and the ability to collect genotype and phenotype data in community databases. However, these methods are complicated by population structure inherent in the MDP and the lack of an analytical framework to assess statistical power. To address these issues, we measured gene expression levels in hypothalamus across the MDP. We then mapped these phenotypes as quantitative traits with our association algorithm, resulting in a large set of expression QTL (eQTL). We utilized these eQTL, and specifically cis-eQTL, to develop a novel nonparametric method for association analysis in structured populations like the MDP. These eQTL data confirmed that the MDP is a suitable mapping population for QTL discovery and that eQTL results can serve as a gold standard for relative measures of statistical power.

摘要

在模式生物中发现数量性状基因座(QTL)在很大程度上依赖于进行可控育种以产生基因型和表型多样性的能力。最近,我们和其他研究人员已经证明,使用一组现有的多样化近交系小鼠(在这里称为小鼠多样性面板,MDP)作为QTL定位群体。与传统的F2定位群体相比,使用MDP群体有许多优势,包括增加表型多样性、更高的重组频率,以及在社区数据库中收集基因型和表型数据的能力。然而,这些方法因MDP中固有的群体结构以及缺乏评估统计功效的分析框架而变得复杂。为了解决这些问题,我们测量了MDP中下丘脑的基因表达水平。然后,我们使用关联算法将这些表型映射为数量性状,从而得到大量的表达QTL(eQTL)。我们利用这些eQTL,特别是顺式eQTL,开发了一种新的非参数方法,用于在像MDP这样的结构化群体中进行关联分析。这些eQTL数据证实,MDP是用于发现QTL的合适定位群体,并且eQTL结果可以作为统计功效相对测量的金标准。