Synthetic biology for Monascus: From strain breeding to industrial production

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Abstract

Traditional Chinese food therapies often motivate the development of modern medicines, and learning from them will bring bright prospects. Monascus, a conventional Chinese fungus with centuries of use in the food industry, produces various metabolites, including natural pigments, lipid-lowering substances, and other bioactive ingredients. Recent Monascus studies focused on the metabolite biosynthesis mechanisms, strain modifications, and fermentation process optimizations, significantly advancing Monascus development on a lab scale. However, the advanced manufacture for Monascus is lacking, restricting its scale production. Here, the synthetic biology techniques and their challenges for engineering filamentous fungi were summarized, especially for Monascus. With further in-depth discussions of automatic solid-state fermentation manufacturing and prospects for combining synthetic biology and process intensification, the industrial scale production of Monascus will succeed with the help of Monascus improvement and intelligent fermentation control, promoting Monascus applications in food, cosmetic, agriculture, medicine, and environmental protection industries.

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Zhou, J., Pan, Q., Xue, Y., Dong, Y., Chen, Y., Huang, L., … Zheng, Y. (2024, July 1). Synthetic biology for Monascus: From strain breeding to industrial production. Biotechnology Journal. John Wiley and Sons Inc. https://doi.org/10.1002/biot.202400180

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