四氢嘧啶
发酵
大肠杆菌
工业与生产工程
工业发酵
盐单胞菌属
食品科学
生物
生物化学
化学
生物反应器
渗透调节剂
植物
16S核糖体RNA
工程类
氨基酸
基因
电气工程
脯氨酸
作者
Yingsheng Dong,Hao Zhang,Xinyi Wang,Junjie Ma,Peng Lei,Hong Xu,Sha Li
标识
DOI:10.1007/s00449-021-02541-7
摘要
In this study, the recombinant ectoine-producing Escherichia coli ET01 was constructed by introducing the ectABC operon from Halomonas venusta ZH. To further improve ectoine production, the regulation of the fermentation process was systematically investigated. First, the effects of the initial glucose concentrations and glucose feeding mode on ectoine production were analyzed. Using a combination of pH-feedback feeding and glucose-controlled feeding, the ectoine titer reached 25.5 g/L, representing an 8.8-fold increase over standard batch culture. Then, the effects of dissolved oxygen (DO) levels (50, 40, 30, or 20%) on ectoine production were studied, and a DO control strategy was developed based on the fermentation kinetics. When the final optimized two-stage fermentation strategy was used, the ectoine titer reached 47.8 g/L, which was the highest level of ectoine produced by E. coli fermentation. The fermentation regulation strategy developed in this study might be useful for scaling up the commercial production of ectoine.
科研通智能强力驱动
Strongly Powered by AbleSci AI