TY - JOUR
T1 - Long-read sequencing of 945 Han individuals identifies structural variants associated with phenotypic diversity and disease susceptibility
AU - Chinese Pangenome Consortium (CPC)
AU - Gong, Jiao
AU - Sun, Huiru
AU - Wang, Kaiyuan
AU - Zhao, Yanhui
AU - Huang, Yechao
AU - Chen, Qinsheng
AU - Qiao, Hui
AU - Gao, Yang
AU - Zhao, Jialin
AU - Ling, Yunchao
AU - Cao, Ruifang
AU - Tan, Jingze
AU - Wang, Qi
AU - Ma, Yanyun
AU - Li, Jing
AU - Luo, Jingchun
AU - Wang, Sijia
AU - Wang, Jiucun
AU - Zhang, Guoqing
AU - Xu, Shuhua
AU - Qian, Feng
AU - Zhou, Fang
AU - Tang, Huiru
AU - Li, Dali
AU - Sedlazeck, Fritz J.
AU - Jin, Li
AU - Guan, Yuting
AU - Fan, Shaohua
N1 - Publisher Copyright:
© The Author(s) 2025.
PY - 2025/12
Y1 - 2025/12
N2 - Genomic structural variants (SVs) are a major source of genetic diversity in humans. Here, through long-read sequencing of 945 Han Chinese genomes, we identify 111,288 SVs, including 24.56% unreported variants, many with predicted functional importance. By integrating human population-level phenotypic and multi-omics data as well as two humanized mouse models, we demonstrate the causal roles of two SVs: one SV that emerges at the common ancestor of modern humans, Neanderthals, and Denisovans in GSDMD for bone mineral density and one modern-human-specific SV in WWP2 impacting height, weight, fat, craniofacial phenotypes and immunity. Our results suggest that the GSDMD SV could serve as a rapid and cost-effective biomarker for assessing the risk of cisplatin-induced acute kidney injury. The functional conservation from human to mouse and widespread signals of positive natural selection suggest that both SVs likely influence local adaptation, phenotypic diversity, and disease susceptibility across diverse human populations.
AB - Genomic structural variants (SVs) are a major source of genetic diversity in humans. Here, through long-read sequencing of 945 Han Chinese genomes, we identify 111,288 SVs, including 24.56% unreported variants, many with predicted functional importance. By integrating human population-level phenotypic and multi-omics data as well as two humanized mouse models, we demonstrate the causal roles of two SVs: one SV that emerges at the common ancestor of modern humans, Neanderthals, and Denisovans in GSDMD for bone mineral density and one modern-human-specific SV in WWP2 impacting height, weight, fat, craniofacial phenotypes and immunity. Our results suggest that the GSDMD SV could serve as a rapid and cost-effective biomarker for assessing the risk of cisplatin-induced acute kidney injury. The functional conservation from human to mouse and widespread signals of positive natural selection suggest that both SVs likely influence local adaptation, phenotypic diversity, and disease susceptibility across diverse human populations.
UR - https://www.scopus.com/pages/publications/85218438093
U2 - 10.1038/s41467-025-56661-9
DO - 10.1038/s41467-025-56661-9
M3 - 文章
C2 - 39929826
AN - SCOPUS:85218438093
SN - 2041-1723
VL - 16
JO - Nature Communications
JF - Nature Communications
IS - 1
M1 - 1494
ER -