The Genetic Architecture of Gene Expression in Peripheral Blood

表达数量性状基因座 国际人类基因组单体型图计划 遗传力 遗传建筑学 生物 全基因组关联研究 遗传学 单核苷酸多态性 数量性状位点 遗传力缺失问题 遗传关联 遗传变异 基因 基因型
作者
Luke R. Lloyd‐Jones,Alexander Holloway,Allan F. McRae,Jian Yang,Kerrin S. Small,Jing Hua Zhao,Biao Zeng,Andrew Bakshi,Andres Metspalu,Manolis Dermitzakis,Greg Gibson,Tim D. Spector,Grant W. Montgomery,Tõnu Esko,Peter M. Visscher,Joseph E. Powell
出处
期刊:American Journal of Human Genetics [Elsevier]
卷期号:100 (2): 228-237 被引量:171
标识
DOI:10.1016/j.ajhg.2016.12.008
摘要

We analyzed the mRNA levels for 36,778 transcript expression traits (probes) from 2,765 individuals to comprehensively investigate the genetic architecture and degree of missing heritability for gene expression in peripheral blood. We identified 11,204 cis and 3,791 trans independent expression quantitative trait loci (eQTL) by using linear mixed models to perform genome-wide association analyses. Furthermore, using information on both closely and distantly related individuals, heritability was estimated for all expression traits. Of the set of expressed probes (15,966), 10,580 (66%) had an estimated narrow-sense heritability (h2) greater than zero with a mean (median) value of 0.192 (0.142). Across these probes, on average the proportion of genetic variance explained by all eQTL (hCOJO2) was 31% (0.060/0.192), meaning that 69% is missing, with the sentinel SNP of the largest eQTL explaining 87% (0.052/0.060) of the variance attributed to all identified cis- and trans-eQTL. For the same set of probes, the genetic variance attributed to genome-wide common (MAF > 0.01) HapMap 3 SNPs (hg2) accounted for on average 48% (0.093/0.192) of h2. Taken together, the evidence suggests that approximately half the genetic variance for gene expression is not tagged by common SNPs, and of the variance that is tagged by common SNPs, a large proportion can be attributed to identifiable eQTL of large effect, typically in cis. Finally, we present evidence that, compared with a meta-analysis, using individual-level data results in an increase of approximately 50% in power to detect eQTL.
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