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Proteomics analysis of enzyme systems and pathway changes during the moromi fermentation of soy sauce mash
Wen-Bin He1,2, Sha Hou3, Long-Ying Zeng1,2
1College of Food Science, South China Agricultural University, Guangzhou, China.
Background:
During the brewing of soy sauce, the conversion of multiple substances is driven by various microorganisms and their secreted enzyme systems. Soy sauce mash is an important source of enzyme systems during moromi fermentation, but the changes of enzyme systems in soy sauce mash during moromi fermentation are poorly understood. In order to explore the predominant enzyme systems existing during moromi fermentation and to explain the characteristics of the enzyme system changes, an enzymatic activities assay and 4D-label-free proteomics analysis were conducted on soy sauce mash at different stages of fermentation.
Results:
The activities of hydrolytic enzymes in soy sauce mash decreased continuously throughout the fermentation process, while most of the characteristic physicochemical substances in soy sauce mash supernatant had already accumulated at the early stage of fermentation. Four hydrolytic enzymes were found to be positively correlated with important physicochemical indexes by principal component analysis and Pearson correlation analysis. The proteomics analysis revealed three highly upregulated enzymes and two enzymes that were present in important metabolic pathways throughout the fermentation process. Furthermore, it was found that Aspergillus oryzae was able to accumulate various nutrients in the soy sauce mash by downregulating most of its metabolic pathways.
Conclusion:
Enzymes present with excellent properties during the moromi fermentation period could be obtained from these results. Meanwhile, the characterization of the metabolic pathways of microorganisms during the moromi fermentation period was revealed. The results provide a basis for more scientific and purposeful improvement of moromi fermentation in the future. © 2024 Society of Chemical Industry.
Insights
Enzyme activity in soy sauce mash decreases during fermentation, but key enzymes correlate with desirable physicochemical properties. This study characterizes microbial metabolic pathways for improved soy sauce production.
Area of Science:
- Food Science
- Microbiology
- Biochemistry
Background:
- Soy sauce brewing relies on microbial enzymes.
- Enzyme system dynamics in soy sauce mash during moromi fermentation are not well understood.
- Understanding these enzymes is crucial for optimizing fermentation.
Purpose of the Study:
- To identify predominant enzyme systems during moromi fermentation.
- To characterize changes in enzyme systems during fermentation.
- To correlate enzyme activity with physicochemical properties of soy sauce.
Main Methods:
- Enzymatic activity assays were performed on soy sauce mash at different fermentation stages.
- 4D label-free proteomics analysis was used to identify enzymes.
- Principal component analysis and Pearson correlation analysis were employed.
Main Results:
- Hydrolytic enzyme activity decreased throughout fermentation.
- Key physicochemical substances accumulated early in fermentation.
- Four enzymes correlated positively with physicochemical indexes; three enzymes were upregulated, and two were consistently present in metabolic pathways.
Conclusions:
- Specific enzymes with beneficial properties for moromi fermentation were identified.
- Microbial metabolic pathways during fermentation were characterized.
- Findings provide a foundation for targeted improvements in soy sauce fermentation.
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