遗传力
生物
连锁不平衡
遗传学
次等位基因频率
单核苷酸多态性
遗传力缺失问题
遗传关联
全基因组关联研究
特质
数量性状位点
基因型
基因
程序设计语言
计算机科学
作者
Pierrick Wainschtein,Deepti Jain,Zhili Zheng,Stella Aslibekyan,Diane M. Becker,Wenjian Bi,Jennifer A. Brody,Jenna C. Carlson,Adolfo Correa,Margaret Mengmeng Du,Lindsay Fernández‐Rhodes,Kendra Ferrier,Misa Graff,Xiuqing Guo,Jiang He,Nancy L. Heard‐Costa,Heather M. Highland,Joel N. Hirschhorn,Candace M Howard-Claudio,Carmen R. Isasi
出处
期刊:Nature Genetics
[Nature Portfolio]
日期:2022-03-01
卷期号:54 (3): 263-273
被引量:249
标识
DOI:10.1038/s41588-021-00997-7
摘要
Analyses of data from genome-wide association studies on unrelated individuals have shown that, for human traits and diseases, approximately one-third to two-thirds of heritability is captured by common SNPs. However, it is not known whether the remaining heritability is due to the imperfect tagging of causal variants by common SNPs, in particular whether the causal variants are rare, or whether it is overestimated due to bias in inference from pedigree data. Here we estimated heritability for height and body mass index (BMI) from whole-genome sequence data on 25,465 unrelated individuals of European ancestry. The estimated heritability was 0.68 (standard error 0.10) for height and 0.30 (standard error 0.10) for body mass index. Low minor allele frequency variants in low linkage disequilibrium (LD) with neighboring variants were enriched for heritability, to a greater extent for protein-altering variants, consistent with negative selection. Our results imply that rare variants, in particular those in regions of low linkage disequilibrium, are a major source of the still missing heritability of complex traits and disease.
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