Deciphering the Microbe–Metabolite Network in Irradiated Chicken Breast Meat: Multi-Omics Characterization of Differential Quality Response Mechanisms to Stepwise Irradiation Doses
Jincheng Han, Rong Bai, Jing Xi, Aitmagambetova Madina, Wu Ding

TL;DR
This study explores how irradiation affects the microbial and metabolic makeup of chicken breast meat, revealing how different doses impact meat quality and microbial communities.
Contribution
The study introduces a multi-omics approach to uncover how stepwise irradiation doses alter microbial and metabolite networks in chicken meat.
Findings
Irradiation significantly altered the diversity of chicken meat microbiota.
Low irradiation doses (≤4 kGy) had a stronger effect on microbial diversity and metabolite levels.
Metabolites were more strongly linked to meat quality attributes than microbial diversity.
Abstract
In this study, chicken breast samples were exposed to electron beam irradiation at doses of 0, 2, 4, 6, 8, and 10 kGy and analyzed using 16S rRNA sequencing and untargeted metabolomics (LC-MS/MS). The results demonstrated that irradiation significantly altered the diversity of the chicken meat microbiota. Psychrobacter and Chryseobacterium exhibited dose-dependent decreases, whereas Stenotrophomonas and Acinetobacter were identified as irradiation-associated characteristic genera. Functional prediction of these tolerant microbes indicated that growth-related pathways remained active. The irradiation disrupted the metabolic network, resulting in a disordered structure, and the core microbial communities were strongly correlated with amino acid, carbohydrate, alcohol, and lipid metabolism. Partial least squares structural equation modeling indicated that, at low doses (≤4 kGy),…
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Taxonomy
TopicsRadiation Effects and Dosimetry · Effects of Radiation Exposure · Meat and Animal Product Quality
