Multi‐omics characterization of flavor profile differences in the Longissimus thoracis between Angus and Hereford cattle

Abstract BACKGROUND Angus and Hereford cattle are premier breeds widely used in genetic improvement and crossbreeding programs to enhance meat quality, yet the flavor differences between them remain poorly understood. RESULTS In this study, we performed an integrated analysis using headspace solid‐phase microextraction coupled with gas chromatography–mass spectrometry (HS‐SPME‐GC–MS)‐based volatile metabolomics, lipidomics, and untargeted metabolomics to characterize the flavor profiles of the Longissimus thoracis (LT) muscle from both breeds and to identify potential precursor substances underlying flavor formation. In total, we identified 76 differential volatile organic compounds (VOCs) among the 493 candidate VOCs. By combing relative odor activity value (ROAV) and sensory attribute annotation, 2,3‐butanedione which may contribute to the creamy aroma was revealed as the core differential VOC between the two breeds. This finding was robustly validated across SHAP (Shapley additive explanations) analysis, KEGG (Kyoto Encyclopedia of Genes and Genomes) pathway enrichment, and flavor annotation. Lipidomic analysis revealed 689 differential lipids primarily belonging to classes such as phosphatidylcholine, triglycerides, and phosphatidylethanolamine. Correlation analysis further linked these lipid profiles to flavor, showing that fatty acids (FAs) including FA(19:0), FA(18:2 + O), FA(14:1), FA(16:1), and FA(14:0) were significantly correlated with 2,3‐butanedione. Notably, the unsaturated fatty acids (UFAs) in the Longissimus thoracis (LT) of Hereford cattle exhibited higher double bond content compared to Angus cattle, suggesting a greater potential for rich flavor development. Untargeted metabolomics revealed that nine of the 9474 metabolites were significantly correlated with both 2,3‐butanedione and FAs, including norepinephrine, l ‐ beta ‐aspartyl‐ l‐ leucine, and artemetin. CONCLUSIONS Overall, our research has identified differential flavor compounds and potential precursor substances between Angus cattle and Hereford cattle, providing targeted guidance for breed improvement. © 2026 Society of Chemical Industry.

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Journal
Journal of the Science of Food and Agriculture
Published
2026-09-16
DOI
https://doi.org/10.1002/jsfa.71067
Primary Topic
Meat and Animal Product Quality
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article
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article

Multi‐omics characterization of flavor profile differences in the Longissimus thoracis between Angus and Hereford cattle

Lingwei Peng, He Ding, Wenfa Lv, Lei Huang et al.
Journal of the Science of Food and Agriculture
Meat and Animal Product Quality
article

Multi‐omics characterization of flavor profile differences in the Longissimus thoracis between Angus and Hereford cattle

Lingwei Peng, He Ding, Wenfa Lv, Lei Huang, Xuelei Dai, Jing Zhao, Yang Zhou, Xinai Huang, Xiaorui Yang, Yang Lyu, Yichong Li, Wengang Zhang, Zhiqiang Li, Hongyu Liu
article en

Abstract

Abstract BACKGROUND Angus and Hereford cattle are premier breeds widely used in genetic improvement and crossbreeding programs to enhance meat quality, yet the flavor differences between them remain poorly understood. RESULTS In this study, we performed an integrated analysis using headspace solid‐phase microextraction coupled with gas chromatography–mass spectrometry (HS‐SPME‐GC–MS)‐based volatile metabolomics, lipidomics, and untargeted metabolomics to characterize the flavor profiles of the Longissimus thoracis (LT) muscle from both breeds and to identify potential precursor substances underlying flavor formation. In total, we identified 76 differential volatile organic compounds (VOCs) among the 493 candidate VOCs. By combing relative odor activity value (ROAV) and sensory attribute annotation, 2,3‐butanedione which may contribute to the creamy aroma was revealed as the core differential VOC between the two breeds. This finding was robustly validated across SHAP (Shapley additive explanations) analysis, KEGG (Kyoto Encyclopedia of Genes and Genomes) pathway enrichment, and flavor annotation. Lipidomic analysis revealed 689 differential lipids primarily belonging to classes such as phosphatidylcholine, triglycerides, and phosphatidylethanolamine. Correlation analysis further linked these lipid profiles to flavor, showing that fatty acids (FAs) including FA(19:0), FA(18:2 + O), FA(14:1), FA(16:1), and FA(14:0) were significantly correlated with 2,3‐butanedione. Notably, the unsaturated fatty acids (UFAs) in the Longissimus thoracis (LT) of Hereford cattle exhibited higher double bond content compared to Angus cattle, suggesting a greater potential for rich flavor development. Untargeted metabolomics revealed that nine of the 9474 metabolites were significantly correlated with both 2,3‐butanedione and FAs, including norepinephrine, l ‐ beta ‐aspartyl‐ l‐ leucine, and artemetin. CONCLUSIONS Overall, our research has identified differential flavor compounds and potential precursor substances between Angus cattle and Hereford cattle, providing targeted guidance for breed improvement. © 2026 Society of Chemical Industry.

Journal of the Science of Food and Agriculture
Jilin University (CN), Huazhong Agricultural University (CN), Ministry of Agriculture (LV), Jilin Agricultural University (CN)
Openalex Percentile: Top 14%
Meat and Animal Product Quality
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