Genome−wide diversity of Chinese Sinan and Xiangxi beef cattle populations based on whole−genome resequencing

This study conducted analysis of genetic diversity, population structure, and selection signatures in Sinan cattle (SNC) and Xiangxi cattle (XXC) using whole-genome resequencing data. SNC and XXC cattle are indigenous beef populations in southwestern China, with ongoing conservation and breeding programs managed by their respective original breeding farms. Whole-genome sequencing of 28 SNC and 23 XXC individuals achieved an average depth of 12.3× (SD = 1.4) and 12.8× (SD = 1.6), respectively. Using genome-wide SNP data (mean MAF 0.1034–0.1080, PIC 0.1257–0.1312), we found that XXC exhibited significantly higher observed heterozygosity than SNC (Ho = 0.1275 vs. 0.1195, t-test p < 0.01) and faster LD decay, indicating greater genetic diversity. ADMIXTURE cross-validation showed K = 1 as optimal (highest likelihood, lowest CV error), indicating no significant stratification; K = 7 revealed subtle differentiation (ΔK = 42.3), suggesting incipient divergence. Selection signature analysis employed pairwise Fst and θπ ratio (top 5% as threshold). We identified 1,315 significant genomic regions, comprising 1,993 candidate genes in SNC and 1,407 in XXC. Only 218 genes (12.9%) were shared between the two populations, indicating divergent selection pressures. KEGG enrichment analysis revealed that PI3K-Akt ( P = 0.003) and MAPK ( P = 0.008) pathways were significantly enriched in SNC, while tuberculosis ( P = 0.015) and AMPK ( P = 0.021) pathways were significantly enriched in XXC. GO enrichment analysis, after Benjamini‑Hochberg correction (FDR < 0.05), showed that SNC genes were significantly enriched in actin cytoskeleton (GO:0015629, P = 0.009) and mitochondrial membrane (GO:0031966, P = 0.013), whereas XXC genes were significantly enriched in synaptic structure (GO:0098794, P = 0.024) and dendritic development (GO:0097447, P = 0.031). These functional divergences likely reflect population‑specific adaptations. This work establishes a genomic foundation for future association studies and marker-assisted selection in these two important indigenous populations.

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Publication Details

Journal
BMC Veterinary Research
Published
2026-09-05
DOI
https://doi.org/10.1186/s12917-026-05889-8
Primary Topic
Genetic and phenotypic traits in livestock
Type
article
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article

Genome−wide diversity of Chinese Sinan and Xiangxi beef cattle populations based on whole−genome resequencing

Longxin Xu, Bo Yu, Hua Wang, Jing Liu et al.
BMC Veterinary Research
Genetic and phenotypic traits in livestock
article

Genome−wide diversity of Chinese Sinan and Xiangxi beef cattle populations based on whole−genome resequencing

Longxin Xu, Bo Yu, Hua Wang, Jing Liu, Zhongling Jian, Wenzhang Zhou, Kaikai Zhang, Xin Wang, Junda Wu
article en

Abstract

This study conducted analysis of genetic diversity, population structure, and selection signatures in Sinan cattle (SNC) and Xiangxi cattle (XXC) using whole-genome resequencing data. SNC and XXC cattle are indigenous beef populations in southwestern China, with ongoing conservation and breeding programs managed by their respective original breeding farms. Whole-genome sequencing of 28 SNC and 23 XXC individuals achieved an average depth of 12.3× (SD = 1.4) and 12.8× (SD = 1.6), respectively. Using genome-wide SNP data (mean MAF 0.1034–0.1080, PIC 0.1257–0.1312), we found that XXC exhibited significantly higher observed heterozygosity than SNC (Ho = 0.1275 vs. 0.1195, t-test p < 0.01) and faster LD decay, indicating greater genetic diversity. ADMIXTURE cross-validation showed K = 1 as optimal (highest likelihood, lowest CV error), indicating no significant stratification; K = 7 revealed subtle differentiation (ΔK = 42.3), suggesting incipient divergence. Selection signature analysis employed pairwise Fst and θπ ratio (top 5% as threshold). We identified 1,315 significant genomic regions, comprising 1,993 candidate genes in SNC and 1,407 in XXC. Only 218 genes (12.9%) were shared between the two populations, indicating divergent selection pressures. KEGG enrichment analysis revealed that PI3K-Akt ( P = 0.003) and MAPK ( P = 0.008) pathways were significantly enriched in SNC, while tuberculosis ( P = 0.015) and AMPK ( P = 0.021) pathways were significantly enriched in XXC. GO enrichment analysis, after Benjamini‑Hochberg correction (FDR < 0.05), showed that SNC genes were significantly enriched in actin cytoskeleton (GO:0015629, P = 0.009) and mitochondrial membrane (GO:0031966, P = 0.013), whereas XXC genes were significantly enriched in synaptic structure (GO:0098794, P = 0.024) and dendritic development (GO:0097447, P = 0.031). These functional divergences likely reflect population‑specific adaptations. This work establishes a genomic foundation for future association studies and marker-assisted selection in these two important indigenous populations.

BMC Veterinary Research
Guizhou University (CN), Guizhou Academy of Agricultural Sciences (CN), Guizhou Institute of Technology (CN)
Life in Land
Openalex Percentile: Top 10%
Genetic and phenotypic traits in livestock
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