Abstract Food fermentation is a complex biological process driven by the entire microbial community. Core functional microorganisms are the key taxa that dominate fermentation processes and determine the final quality of fermented products. This review classifies them into dominant species and low-abundance keystone taxa based on relative abundance and functional contribution, and summarizes their latest identification and functional research in solid-state, semi-solid state and liquid fermentation systems. These microorganisms play a central role in unique flavors, textures, and nutritional values through fermentation metabolism. We systematically reviewed the techniques for functional verification and targeted regulation of core functional microorganisms, and clarified the interaction relationships among them, the community succession patterns, and the functional regulation mechanisms. Finally, the current challenges faced by the research are analyzed. In the future, research on functional microorganisms will integrate metagenomics, synthetic biology, and multi-omics technologies to further optimize microbial strains and processes, aiming to provide theoretical support for the standardized development of the fermented food industry.
Chen et al. (Wed,) studied this question.