BiologyAgricultural and Food SciencesMedicine

Xin Yang, Xuewen Chai, Jishang Gong, Wen Luo, Jiguo Xu

2026.1.1Food Chemistry: Molecular Sciences

DOI: 10.1016/j.fochms.2026.100361

tlooto Summary

It is suggested that carbohydrate metabolism and its phosphorylation cascades may contribute to meat flavor, providing a molecular basis for genetic improvement in poultry.

Abstract

The flavor of chicken meat is a major determinant of consumer preference, yet its genetic basis remains poorly understood. Here, we integrated volatile metabolomics, RNA-seq, proteomics, and phosphoproteomics of breast muscle from Qingyuan partridge chicken (QPC) and Cobb broiler (CB). 318 volatile compounds were detected, among which eight (2-pentylfuran, isophorone, 2-undecanone, benzaldehyde, pentanal, 2-heptanone, ethyl acrylate, and 1-octanol) were key differentiators between breeds. Multi-omics analysis revealed carbohydrate metabolism genes (GPI, PGM1, FBP2, LDHA, PGAM1, PGK2, LDHB, PFKM, PKLR, ALDOA, LOC107050559) significantly correlated with key volatile compounds, with GPI and LDHA correlated with all key compounds across expression and phosphorylation levels. Importantly, we identified a PPP1R3A-PPP1CA-GYS1 phosphorylation axis that regulates glycogen metabolism and thereby influences precursor content for Maillard reactions. These findings suggest that carbohydrate metabolism and its phosphorylation cascades may contribute to meat flavor, providing a molecular basis for genetic improvement in poultry.

Citation format

YANG, Xin, et al. Carbohydrate metabolism and phosphorylation cascades regulate flavor formation in chicken meat. Food Chemistry: Molecular Sciences, 2026, 12: 100361.