ArticleScience China. Life sciences2025
Pilot work of the 10K Chinese People Genomic Diversity Project along the Silk Road suggests a complex east-west admixture landscape and biological adaptations.
Article in Science China. Life sciences, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 26 papers.
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26 citing papers in PubMed.
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- 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
- 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
- Disentangling complex language contact and admixture in the broad Gansu-Qinghai region.Fundamental research · 2026Article
- Circulating ceramides and sphingomyelins: key biomarkers and targets in cardiovascular prevention.Science China. Life sciences · 2026Review
- Genetic and linguistic landscapes of Gansu-Qinghai populations.Fundamental research · 2026Article
- Complex peopling history and expansion events inferred from large-scale modern and ancient Y chromosome sequences.Science advances · 2026Article
- Modern and Ancient Genomes Reveal Neolithic Paternal Expansions of Millet and Rice Farmers and Demic Diffusion from China into Mainland Southeast Asia.Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 2026Article
- Multiple southward migrations of Neolithic Chinese farmers into Southeast Asia revealed from large-scale Y-chromosome sequences.Science advances · 2026Article
- Northeast india: genetic inconsistency across ethnicity and geography.Molecular genetics and genomics : MGG · 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
- High-quality Population-specific Haplotype-resolved Reference Panel in the Genomic and Pangenomic Eras.Genomics, proteomics & bioinformatics · 2025Review
- YanHuang Paternal Genomic Resource Suggests A Weakly-differentiated Multi-source Admixture in the Formation of Han Founding Ancestral Lineages.Genomics, proteomics & bioinformatics · 2025Article
- Ancient genomes give insight into 160,000 years of East Asian population dynamics and biological adaptation.Genome biology · 2025Review
- Differentiating the demographic histories and local adaptations of middle-altitude Qiang and Tibetan people.Human genetics · 2025Article
- Patrilineages of ethnolinguistically diverse populations reveal multifactorial influences on Chinese paternal population stratification.BMC biology · 2025Article
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Abstract
Genomic sources from China are underrepresented in the population-specific reference database. We performed whole-genome sequencing or genome-wide genotyping on 1,207 individuals from four linguistically diverse groups (1,081 Sinitic, 56 Mongolic, 40 Turkic, and 30 Tibeto-Burman people) living in North China included in the 10K Chinese People Genomic Diversity Project (10K_CPGDP) to characterize the genetic architecture and adaptative history of ethnic groups in the Silk Road Region of China. We observed a population split between Northwest Chinese minorities (NWCMs) and Han Chinese since the Upper Paleolithic and later Neolithic genetic differentiation within NWCMs. The observed population substructures among ethnically/linguistically diverse NWCMs suggested that differentiated admixture events contributed to the differences in their genomic and phenotypic diversity. We estimated that the Dongxiang, Tibetan, and Yugur people inherited more than 10% of the Western Eurasian ancestry, which is much greater than that of the Salar and Tu people (<7%), while Han neighbors showed less West Eurasian ancestry (∼1%-3%). Male-biased admixture introduced Western Eurasian ancestry in the Dongxiang, Tibetan, and Yugur populations. We found that the eastern-western admixture in NWCMs occurred ∼800-1,100 years ago, coinciding with intensive economic and cultural exchanges during the Tang and Song dynasties. Additionally, we identified the signatures of natural selection associated with cardiovascular system diseases or lipid metabolism and developmental/neurogenetic disorders. Moreover, the EPAS1 gene showed relatively high population branch statistic values in NWCMs. The well-fitted demographical models presented the vast landscape of complex admixture processes of the Silk Road people, and the newly reported functionally important variations suggested the importance of including ethnolinguistically diverse populations in Chinese genetic studies for uncovering the genetic basis of complex traits/diseases.
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