4.7 Article

Linking Microbial Functional Gene Abundance and Daqu Extracellular Enzyme Activity: Implications for Carbon Metabolism during Fermentation

Journal

FOODS
Volume 11, Issue 22, Pages -

Publisher

MDPI
DOI: 10.3390/foods11223623

Keywords

Daqu; extracellular enzymes; carbohydrates; metagenomics

Funding

  1. Sichuan Science and Technology Project [2019YFS0518]
  2. Innovation Fund of Postgraduate, Sichuan University of Science and Engineering [y2021040]

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This study investigated the changes in microbial functions and the relationship between carbohydrate metabolism-related functional genes and extracellular enzyme activity during Daqu fermentation. The results revealed that the pathways related to metabolites varied at different fermentation stages and that certain functional genes showed higher activity in the early and late stages. Amino sugar and nucleoside sugar metabolism dominated in the middle stage of fermentation. In addition, amylase activity positively correlated with carbon metabolism-related pathways, while liquefaction activity negatively correlated with these pathways.
Daqu is the starter of Baijiu, it provides the microbes and enzymes necessary for fermentation. Studies have already established carbohydrate metabolism as the primary functional module in Daqu fermentation. The present study investigated the changes in microbial functions and the relationship between carbohydrate metabolism-related functional genes and extracellular enzyme activity during the Daqu fermentation. Amplicon sequencing identified 38 bacterial and 10 fungal phyla in Daqu samples, while shotgun metagenomic sequencing classified and annotated 40.66% of the individual features, of which 40.48% were prokaryotes. KEGG annotation showed that the pathways related to metabolites were less in the early fermentation stage, but higher in the middle and late stages. The functional genes related to pyruvate metabolism, glyoxylate and dicarboxylate metabolism, and propanoate metabolism were relatively high in the early and late stages of fermentation, while that for start and cross metabolism was relatively low. The study also found that amino sugar and nucleoside sugar metabolism were dominant in the middle stage of fermentation. Finally, the correlation network analysis showed that amylase activity positively correlated with many carbon metabolism-related pathways, while liquefaction activity negatively correlated with these pathways. In conclusion, the present study provides a theoretical basis for improving and stabilizing the quality of Daqu.

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