生物
进化生物学
进化动力学
结构变异
多样性(政治)
遗传变异
遗传学
遗传多样性
人口
同源重组
多元化(营销策略)
同源染色体
变化(天文学)
基因
人类遗传变异
群体遗传学
重组
系统发育学
功能多样性
基因组
桥接(联网)
基因组学
遗传变异
选择性扫描
遗传谱系
人口结构
作者
Haiyi Lou,Yimin Wang,Yu Chai,Zhilin Ning,Ruiqing Fu,Yan Lu,Bo Xie,Sen Ma,Yuwen Pan,Yang Gao,Dongsheng Lu,Xin-Yue Bai,Yajun Yang,Dolikun Mamatyusupu,Shuhua Xu
摘要
Abstract Population admixture is a potent evolutionary force shaping genomic diversity, yet its influence on the dynamics and functional consequences of structural variation (SV) remains poorly understood. Here, we present a comprehensive whole-genome sequencing analysis of SVs in the Uyghurs, a model admixed Eurasian population with distinct Western and Eastern ancestral contributions. We identified 9,965 high-confidence SVs, revealing that Uyghurs exhibit 32% novel SVs and 1.9-fold greater SV diversity compared to their ancestral source populations. Crucially, SV diversity follows a non-linear parabolic relationship with ancestry proportions (r=0.94), peaking when Western/Eastern ancestry contributions are balanced. Admixture-induced recombination at ancestry junctions creates SV hotspots via non-allelic homologous recombination (NAHR), with 60% of post-admixture SVs flanked by homologous repeats. Ancestry-divergent SVs disproportionately regulate gene expression, while admixed variant combinations (e.g., HLA-B and FOXO6 loci) disrupt immune/metabolic pathways via additive regulatory effects. Strikingly, while Uyghurs harbor elevated SV diversity, the burden of pathogenic variants remains comparable to ancestral populations, suggesting buffering mechanisms against genetic load. Evolutionarily, younger SVs tend to be larger in size, exert stronger regulatory impacts, and exhibit higher predicted pathogenicity. These findings establish admixture as a dual force of genomic diversification and functional equilibrium, bridging evolutionary dynamics with biomedical insights. Our work underscores the necessity of SV-aware approaches in genetic medicine and highlights how admixed populations broaden genomic diversity beyond ancestral boundaries through novel variant combinations.
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