代谢工程
赤霉素
发酵
藤仓赤霉素
代谢途径
生物化学
生物合成
还原酶
生物
化学
赤霉素
新陈代谢
植物
酶
发芽
作者
Haonan Wang,Xia Ke,Rui Jia,Lianggang Huang,Zhiqiang Liu,Yu‐Guo Zheng
标识
DOI:10.1016/j.biortech.2022.128033
摘要
Gibberellic acid (GA3) is one of natural phytohormones, widely used in agriculture and downstream fields. Qualified for the nature productivity, Fusarium fujikuroi was currently employed for the industrial biotransformation from agriculture residues into GA3. Herein, Multivariate modular metabolic engineering (MMME) was assigned to reconstitute the metabolic balance in F. fujikuroi for enhancing GA3 production. Three modules including precursor pool, cluster-specific channel and P450-mediated oxidation in GA3 biosynthetic pathway were defined and optimized separately. The enhancement of both precursor pool and cluster-specific channel pushed metabolic flux transfer into the GA3-specific pathway. Moreover, both introduction of Vitreoscilla hemoglobin and reinforcement of NADPH-dependent cytochrome P450 reductase facilitated oxidation cofactor transfer and subsequently boosted mycelium growth and GA3 biosynthesis. Integration of three modules in the engineered strain accumulated 2.89 g/L GA3 in shake flask via submerged fermentation, presenting a promising modular metabolic engineering model for efficient microbial transformation in agro-industrial application.
科研通智能强力驱动
Strongly Powered by AbleSci AI