ArticleMolecular biology and evolution2025
Largest-Scale Genomic Resource Reconstructing the Genetic Origin, Population Structure, and Biological Adaptations of the Hui People.
Article in Molecular biology and evolution, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 11 papers.
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Who cites it
11 citing papers in PubMed.
- Trans-Eurasian steppe herder and barley farmer migrations shaped paternal genomic dynamics in Northwest China and Hui evolution.Science advances · 2026Article
- Large-scale human genomic resources drive innovations toward forensic intelligent source attribution and precision identification.International journal of legal medicine · 2026Review
- Large-scale mitogenome analysis reveals complex maternal genetic connections between Sino-Tibetan- and Altaic-speaking populations.Human genetics · 2026Article
- Contrasting ancestry patterns inferred from Y chromosome and mitochondrial DNA in Nanjing people from southwestern China.Human genetics · 2026Article
- Tracing the genetic legacy of Altaic-speaking populations suggested long-distance migration and multi-source admixture shape the genomic diversity of Xibe and Daur.Human genetics · 2026Article
- Adaptive admixture at ACKR1, the Duffy blood group locus, may have shaped Plasmodium vivax prevalence in Oman.American journal of human genetics · 2026Article
- Article
- Genetic diversity and differentiated adaptive strategies for underrepresented populations at the crossroad of Southeast and East Asia.BMC genomics · 2026Article
- Divergent Eurasian ancestry and local adaptation shape the genetic landscapes of the Yugur and Uyghur.Briefings in bioinformatics · 2026Article
- Ancient genomes give insight into 160,000 years of East Asian population dynamics and biological adaptation.Genome biology · 2025Review
- Patrilineages of ethnolinguistically diverse populations reveal multifactorial influences on Chinese paternal population stratification.BMC biology · 2025Article
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16 authors.
Funding
Abstract
Historical and archaeological records indicate that the Maritime and Land Silk Roads played a pivotal role in facilitating Trans-Eurasian migrations and cultural exchanges. However, the extent to which population movements or the spread of ideas shape Chinese Hui populations remains debated. We present the largest genomic resource to date, including 2,280 Hui individuals sequenced or genotyped from 30 diverse regions, to examine the genetic origins, population structure, and biological adaptations of this underrepresented group in global human genome research. We identified a detailed population structure characterized by five distinct genetic lineages of the Hui, influenced by geography and varying gene flow. The admixture history and demographic events suggest that the northwestern and northern Hui lineages emerged from demic diffusion during the Tang and Yuan Dynasties via the Land Silk Road. In contrast, the southern and island Hui lineages reflect cultural diffusion along the Maritime Silk Road, while the mixed southern-northern lineage likely developed through a combination of demic and cultural diffusion. Our findings support a hybrid model for Hui formation, indicating that both demographic processes and sociocultural transmissions contributed to their population history. We identified east-west highly differentiated variants and pre- and post-admixture adaptations in Hui genomes, demonstrating that admixture-driven adaptive or neutral variants impacted susceptibility to cardiovascular diseases and immune- and diet-related traits. These adaptive signatures include post-admixture signals of SLC24A5 and ECHDC1 in the Hui, as well as pre-admixture signals of the HLA region, BCL2A1, and KCNH8 in the East Asian source. Overall, our study suggests that Han-related genetic components helped the Hui population rapidly adapt to new local environments. Additionally, the frequency spectrum of clinically essential variants differed significantly between Hui and Han individuals, emphasizing the importance of including underrepresented populations in genomic research to promote health equity.
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