赤霉素
代谢途径
生物技术
角鲨烯
生物合成
生物化学
调节器
代谢工程
转录组
生物
化学
植物
新陈代谢
基因
基因表达
发芽
作者
Tian‐Qiong Shi,Yi-hang Shen,Yawen Li,Zi-Yi Huang,Zhi-Kui Nie,Chao Ye,Yuetong Wang,Qi Guo
标识
DOI:10.1016/j.biortech.2024.130299
摘要
Gibberellic acid (GA3), produced industrially by Fusarium fujikuroi, stands as a crucial plant growth regulator extensively employed in the agriculture filed while limited understanding of the global metabolic network hinders researchers from conducting rapid targeted modifications. In this study, a small-molecule compounds-based targeting technology was developed to increase GA3 production. Firstly, various small molecules were used to target key nodes of different pathways and the result displayed that supplement of terbinafine improved significantly GA3 accumulation, which reached to 1.08 g/L. Subsequently, lipid and squalene biosynthesis pathway were identified as the key pathways influencing GA3 biosynthesis by transcriptomic analysis. Thus, the strategies including in vivo metabolic engineering modification and in vitro supplementation of lipid substrates were adopted, both contributed to an enhanced GA3 yield. Finally, the engineered strain demonstrated the ability to achieve a GA3 yield of 3.24 g/L in 5 L bioreactor when utilizing WCO as carbon source and feed.
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