枯草芽孢杆菌
雅罗维亚
代谢工程
谷氨酸棒杆菌
工业微生物学
生物反应器
生物化学
化学
公认安全
微生物学
微生物联合体
生物
食品科学
发酵
细菌
微生物
酵母
酶
遗传学
有机化学
基因
作者
Siyu Wei,Geng-Rong Gao,Ming‐Zhu Ding,Chun-Yang Cao,Zheng-Jie Hou,Jing‐Sheng Cheng,Ying‐Jin Yuan
标识
DOI:10.1021/acs.jnatprod.3c00705
摘要
Fengycin has great potential for applications in biological control because of its biosafety and degradability. In this study, the addition of exogenous precursors increased fengycin production by Bacillus subtilis. Corynebacterium glutamicum was engineered to produce high levels of precursors (Thr, Pro, Val, and Ile) to promote the biosynthesis of fengycin. Furthermore, recombinant C. glutamicum and Yarrowia lipolytica providing amino acid and fatty acid precursors were co-cultured to improve fengycin production by B. subtilis in a three-strain artificial consortium, in which fengycin production was 2100 mg·L–1. In addition, fengycin production by the consortium in a 5 L bioreactor reached 3290 mg·L–1. Fengycin had a significant antifungal effect on Rhizoctonia solani, which illustrates its potential as a food preservative. Taken together, this work provides a new strategy for improving fengycin production by a microbial consortium and metabolic engineering.
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