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July 30, 2025Foods36 citationsOpen Access

Microbial Interactions in Food Fermentation: Interactions, Analysis Strategies, and Quality Enhancement

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WLWenjing LiuYTYunxuan TangJZJiayan Zhang

Key Points

  • Microbial interactions, including mutualism and competition, drive the fermentation process in foods.
  • Strategies like metabolomics and high-throughput sequencing help analyze complex microbial systems effectively.
  • Using synthetic microbial communities can simplify interactions and improve food quality through precise regulation.
  • Understanding these interactions has significant implications for enhancing the safety and nutritional profile of fermented foods.

Abstract

Food fermentation is driven by microbial interactions. This article reviews the types of microbial interactions during food fermentation, the research strategies employed, and their impacts on the quality of fermented foods. Microbial interactions primarily include mutualism, commensalism, amensalism, and competition. Based on these interaction patterns, the safety, nutritional composition, and flavor quality of food can be effectively improved. Achieving precise control of fermented foods’ qualities via microbial interaction remains a critical challenge. Emerging technologies such as high-throughput sequencing, cell sorting, and metabolomics enable the systematic analysis of core microbial interaction mechanisms in complex systems. Using synthetic microbial communities and genome-scale metabolic network models, complicated microbial communities can be effectively simplified. In addition, regulatory targets of food quality can be precisely identified. These strategies lay a solid foundation for the precise improvement of fermented food quality and functionality.

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Cite This Study

Liu et al. (2025) studied this question.

synapsesocial.com/papers/689a0945e6551bb0af8ceec1https://doi.org/10.3390/foods14142515
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