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◆ Communications biology2026-08-26

Identifying causal genetic variants for high-altitude adaptation through blood eQTL analysis in plateau populations.

Chenghui Zhao, Jiawei Guan, Junhua Liu, Zhe Zhang, Mingxiang Zhu, Lei Fu, Anlin Dai, Kai Lin, Luo Zhang, Weidong Wang, Kunlun He, Jinlong Shi

原始摘要(英文原文)· Original abstract
A substantial number of genetic variants have been associated with high-altitude adaptation (HAA), yet most of them are located in non-coding genomic regions, leaving their specific functions and underlying mechanisms largely unknown. In this study, we analyze whole-genome and transcriptome sequencing data from a self-established cohort comprising 61 native highlanders (NHs) and 164 acclimatized newcomers (ANs), identifying 6,586 cis- and 34,203 trans-expression quantitative trait loci (eQTLs), along with 130 cell type-specific eQTLs. By further combining these data with a large East Asia (~30% Tibetan) genome-wide association study (GWAS) cohort, we employ colocalization and causal inference analyses to prioritize 85 cis-eQTLs associated with HAA and identify several novel candidate causal genes, including EXOC8, which is experimentally confirmed to regulate erythroid differentiation. Additionally, network analysis of these causal genes uncovers multiple regulatory pathways, mainly involving energy metabolism, autophagy, ubiquitination and inflammation. Our study offers a comprehensive eQTL map and reveals causal chains of "variant-gene-phenotype" for HAA-related traits, which provides new insights into potential regulatory mechanisms and targets for prevention and treatment of altitude sickness.
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Identifying causal genetic variants for high-altitude adaptation through blood eQTL analysis in plateau populations. — 科研速览 Science Skim