枯草芽孢杆菌
脂肽
莎梵婷
代谢工程
拉伤
苏氨酸
化学
杆菌科
生物化学
基因
生物
微生物学
细菌
酶
遗传学
解剖
丝氨酸
作者
Geng-Rong Gao,Zheng-Jie Hou,Ming‐Zhu Ding,Song Bai,Siyu Wei,Bin Qiao,Qiu-Man Xu,Jing‐Sheng Cheng,Ying‐Jin Yuan
标识
DOI:10.1021/acssynbio.2c00380
摘要
Fengycin is a lipopeptide with broad-spectrum antifungal activity. However, its low yield limits its commercial application. Therefore, we iteratively edited multiple target genes associated with fengycin synthesis by combinatorial metabolic engineering. The ability of Bacillus subtilis 168 to manufacture lipopeptides was restored, and the fengycin titer was 1.81 mg/L. Fengycin production was further increased to 174.63 mg/L after knocking out pathways associated with surfactin and bacillaene synthesis and replacing the native promoter (PppsA) with the Pveg promoter. Subsequently, fengycin levels were elevated to 258.52 mg/L by upregulating the expression of relevant genes involved in the fatty acid pathway. After blocking spore and biofilm formation, fengycin production reached 302.51 mg/L. Finally, fengycin production was increased to approximately 885.37 mg/L after adding threonine in the optimized culture medium, which was 488-fold higher compared with that of the initial strain. Integrated strain engineering provides a strategy to construct a system for improving fengycin production.
科研通智能强力驱动
Strongly Powered by AbleSci AI