The National and Local Joint Engineering Research Center for Biomanufacturing of Chiral Chemicals, Zhejiang University of Technology, Hangzhou, China.
Key Laboratory of Bioorganic Synthesis of Zhejiang Province, College of Biotechnology and Bioengineering, Zhejiang University of Technology, Hangzhou, China.
Biotechnol J. 2024 Jul;19(7):e2400180. doi: 10.1002/biot.202400180.
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.
传统中药疗法常常为现代药物的研发提供灵感,从中汲取经验将带来广阔的前景。红曲菌是一种在中国传统食品工业中使用了数百年的真菌,能够产生多种代谢产物,包括天然色素、降脂物质和其他生物活性成分。近年来,红曲菌的研究主要集中在代谢产物生物合成机制、菌株改造和发酵过程优化方面,这使得红曲菌在实验室规模上的发展取得了显著进展。然而,红曲菌的先进制造技术仍然欠缺,限制了其规模化生产。本文总结了丝状真菌的合成生物学技术及其工程改造面临的挑战,特别是针对红曲菌。通过进一步深入讨论自动固态发酵制造以及合成生物学与过程强化相结合的前景,借助于红曲菌改良和智能发酵控制,红曲菌的工业规模生产将取得成功,这将促进红曲菌在食品、化妆品、农业、医药和环境保护等行业的应用。