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January 14, 2026Animals0 citationsOpen Access

Multi-Omics Integration Reveals Key Genes, Metabolites and Pathways Underlying Meat Quality and Intramuscular Fat Deposition Differences Between Tibetan Pigs and Duroc × Tibetan Crossbred Pigs

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JWJunda WuQHQiuyan HuangBLB. Li

Key Points

  • This research aims to explore the genetic and metabolic factors that influence meat quality in Tibetan and crossbred pigs.
  • Conducted transcriptome analysis to identify key genes related to meat quality.
  • Performed metabolomic analysis to highlight important metabolites affecting meat quality.
  • Utilized joint analysis to establish relationships between gene expression and fat deposition.
  • Identified IL6, GPX1, GPX3 as significant genes linked to meat quality.
  • Found that higher intramuscular fat content is associated with TPs.
  • Highlighted betaine, carnosine, and L-carnitine as important metabolites affecting meat quality.

Abstract

The sensory quality of pork constitutes a complex phenotype that arises from the interplay between genetic factors and environmental conditions. As a local pig breed in China, Tibetan pigs (TPs) are known for their high-quality meat. However, their slow growth rate and low production efficiency limit their large-scale breeding. We have used Duroc as a hybrid sire to improve TP. Our study found that TPs have higher intramuscular fat content and higher levels of monounsaturated fatty acids. Duroc × Tibetan crossbred pigs (DZs) not only retain the paternal high productivity but also inherit the superior meat quality of the maternal parent. Transcriptome analysis identified IL6, GPX1, GPX3, AOX1, ALDH7A1, PTGS2, NFKBIA, ADIPOQ and PPARG as being involved in affecting meat quality. Metabolomic analysis found that betaine, carnosine, L-carnitine, and lysophosphatidylcholine were important components that affect meat quality. Joint analysis further reveals that the expression of ATF4, DGKB, GNMT, and ADSL genes is closely related to arachidonic acid, lysophosphatidylcholine, betaines, and hypoxanthine, ultimately affecting the quality of the meat. By comprehensively analyzing the carcass and meat qual

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Cite This Study

Wu et al. (2026) studied this question.

synapsesocial.com/papers/6966f30613bf7a6f02c00930https://doi.org/10.3390/ani16020214
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