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Genome-wide compound heterozygote analysis highlights alleles associated with adult height in Europeans

机译:全基因组复合杂合子分析突出了欧洲人与成年人身高相关的等位基因

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摘要

Adult height is the most widely genetically studied common trait in humans; however, the trait variance explainable by currently known height-associated single nucleotide polymorphisms (SNPs) identified from the previous genome-wide association studies (GWAS) is yet far from complete given the high heritability of this complex trait. To exam if compound heterozygotes (CH) may explain extra height variance, we conducted a genome-wide analysis to screen for CH in association with adult height in 10,631 Dutch Europeans enriched with extremely tall people, using our recently developed method implemented in the software package CollapsABEL. The analysis identified six regions (3q23, 5q35.1, 6p21.31, 6p21.33, 7q21.2, and 9p24.3), where multiple pairs of SNPs as CH showed genome-wide significant association with height (P < 1.67 × 10−10). Of those, 9p24.3 represents a novel region influencing adult height, whereas the others have been highlighted in the previous GWAS on height based on analysis of individual SNPs. A replication analysis in 4080 Australians of European ancestry confirmed the significant CH-like association at 9p24.3 (P < 0.05). Together, the collapsed genotypes at these six loci explained 2.51% of the height variance (after adjusting for sex and age), compared with 3.23% explained by the 14 top-associated SNPs at 14 loci identified by traditional GWAS in the same data set (P < 5 × 10−8). Overall, our study empirically demonstrates that CH plays an important role in adult height and may explain a proportion of its “missing heritability”. Moreover, our findings raise promising expectations for other highly polygenic complex traits to explain missing heritability identifiable through CH-like associations.Electronic supplementary materialThe online version of this article (doi:10.1007/s00439-017-1842-3) contains supplementary material, which is available to authorized users.
机译:成年身高是人类最广泛的基因研究共同特征。然而,鉴于这种复杂性状的高遗传力,通过以前的全基因组关联研究(GWAS)确定的当前已知的高度相关的单核苷酸多态性(SNP)可以解释的性状变异还远远没有完成。为了检查复合杂合子(CH)是否可以解释额外的身高差异,我们使用软件包中实现的最新开发方法,对10,631名富有极高人群的荷兰欧洲人进行了全基因组分析,以筛选与成人身高相关的CH崩溃分析确定了六个区域(3q23、5q35.1、6p21.31、6p21.33、7q21.2和9p24.3),其中多对SNP作为CH表示全基因组范围与身高显着相关(P <1.67× 10 −10 )。其中9p24.3代表一个影响成年身高的新区域,而其他GWAS在以前的GWAS中已基于对单个SNP的分析突出显示了其他区域。在4080名欧洲血统的澳大利亚人中进行的复制分析证实,在9p24.3处存在显着的CH样相关性(P <0.05)。总的来说,这6个基因座的折叠基因型解释了2.51%的高度变异(在调整了性别和年龄之后),而在同一数据集中,传统GWAS在14个基因座上的14个最相关的SNP解释了3.23%的高度变异( P <5×10 -8 )。总体而言,我们的研究从经验上证明了CH在成年身高中起着重要作用,并可能解释了其“缺失遗传力”的一部分。此外,我们的发现对其他高度多基因复杂性状提出了有希望的期望,以解释通过CH样关联可识别的遗传力缺失。电子补充材料本文的在线版本(doi:10.1007 / s00439-017-1842-3)包含补充材料,其中适用于授权用户。

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