ArticleBMC biology2025
Latitude-driven adaptive evolution of body length in diverse pig breeds across China.
Article in BMC biology, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 6 papers.
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Who cites it
6 citing papers in PubMed.
- Genome-Wide Association Study of Rib Number and Total Thoracolumbar Vertebrae Number in a Jishen Black Pig Population.Veterinary sciences · 2026Article
- Pre-divergence hybridization and adaptive introgression shaped the genetic architecture of East Asian domestic pigs.Science China. Life sciences · 2026Article
- RFLNA mitigates heat stress-impaired chondrocyte proliferation and vertebral development through cytoskeletal regulation in pigs.Journal of animal science and biotechnology · 2026Article
- Review
- Genome-Wide Association Study Identifies Candidate Genes for Body Size Traits in Wanyue Black Pigs.Animals : an open access journal from MDPI · 2025Article
- The Role of theLife (Basel, Switzerland) · 2025Article
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Authors and funding
12 authors.
Funding
Abstract
backgroundThe geographical divergence of Chinese pigs led to various phenotypes through adaptive evolution. In particular, pigs from relatively low altitudes exhibit a positive correlation between body length and latitude. However, the molecular mechanisms underlying this relationship remain unclear. Identifying candidate genes associated with this body length variation is crucial for further understanding the genetic basis of adaptive traits in these Chinese pig breeds.
resultsWe assembled a high-quality genome of the Neijiang pig as benchmark and analyse 297 Chinese domestic pigs and six Chinese wild boars distributed across different latitudes. Our study provides a comprehensive assessment of genetic diversity and population structure, revealing distinct genetic backgrounds of Chinese indigenous pigs from different regions. Most importantly, we observed a strong correlation between latitude and body length, and screened out the AFF4 gene through four calculation methods. Meanwhile, gene introgression and haplotype divergence of AFF4 among low-altitude pig breeds also proved that AFF4 may be one of the driver genes affecting the adaptive evolution of pig body length. Overexpression and knockdown experiments were performed in our study and confirmed the significantly impact of AFF4 on the osteogenic differentiation process.
conclusionsThese results enrich the pig genome pool, offer a comprehensive understanding of genetic architecture for Chinese pig breeds, and shed light on the correlation between latitude and body length of adaptive evolution of Chinese pigs.
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