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January 6, 2026Foods3 citationsOpen Access

Grain Feeding Improves Yak Meat Tenderness and Lipid Deposition: Meat Quality, Amino Acid and Fatty Acid Profiles, Metabolomics, and Transcriptomics

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BZBo ZouYYYH YangYZYuqing Zhou

Key Points

  • To investigate the effects of grain feeding on meat quality and lipid metabolism in yaks.
  • Utilized metabolomics and transcriptomics to analyze the impact of grain feeding.
  • Measured shear force, intramuscular fat content, and fatty acid profiles in yak meat.
  • Identified differential metabolites and expressed genes linked to lipid metabolism pathways.
  • Grain feeding reduced meat shear force from 18.98 to 11.05 and increased intramuscular fat from 0.75 g/100 g to 1.48 g/100 g.
  • Elevated levels of monounsaturated and saturated fatty acids were detected, with a higher n-6/n-3 ratio of 5.13.
  • Identified 83 differential metabolites and 1047 differentially expressed genes associated with lipid metabolism.

Abstract

Grain feeding is used to alleviate grazing pressure on the Tibetan Plateau. This study employed metabolomics and transcriptomics to elucidate the regulatory mechanisms of grain feeding on yak (Bos grunniens) meat quality, intramuscular fat, and amino acids. The results demonstrate that grain feeding significantly reduces meat shear force (11.05 vs. 18.98) and increases intramuscular fat content (1.48 g/100 g vs. 0.75 g/100 g). This is accompanied by elevated levels of monounsaturated and saturated fatty acids, alongside a decreased proportion of n-3 PUFAs, leading to a higher n-6/n-3 ratio of 5.13. Mechanistically, metabolomic analysis identified 83 differential metabolites, including flavor-related nucleosides, amino acids, and key lipids, such as palmitoleic and oleic acid, which collectively contribute to improved flavor and tenderness. Concurrently, transcriptomics revealed 1047 differentially expressed genes enriched in lipid metabolism pathways, including PPAR signaling, steroid biosynthesis, and glycerolipid metabolism. The PPAR signaling pathway plays a central role in coordinating lipid synthesis, and critical genes, such as PNPLA2, PPARA, SREBF1, and PRKAA1, were highlighted. In conclusion, grain feeding improves yak meat tenderness and fat deposition by modulating lipid metabolism at both the transcriptional and metabolic levels. This improvement, however, is balanced against a less favorable n-6/n-3 PUFA ratio.

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Cite This Study

Zou et al. (2026) studied this question.

synapsesocial.com/papers/695d8e5f3483e917927a57adhttps://doi.org/10.3390/foods15010172
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