ATP合酶
化学
柠檬烯
产量(工程)
萜烯
可持续生产
生物化学
翻译(生物学)
底盘
生物合成
实验室烧瓶
酶
甘油
基因工程
食品科学
原材料
生物
细胞生物学
作者
Qin Hong,Di Liu,Linbo Gou,Shengfang Wu,Xiu-wen Zhou,Tai‐Ping Fan,Long Wang,Yujie Cai,Qin Hong,Di Liu,Linbo Gou,Shengfang Wu,Xiu-wen Zhou,Tai‐Ping Fan,Long Wang,Yujie Cai
标识
DOI:10.1021/acs.jafc.5c07724
摘要
Limonene is a vital monoterpenoid with wide applications in food, medicine, cosmetics, and other fields. Microbial limonene production is a green and sustainable strategy, but its yield is limited by product toxicity and the low terpene synthase activity. In this study, using Serratia. marcescens HBQA7 ΔslaAB-pyc as the chassis strain, we first screened the most active (S)-limonene synthase from Mentha spicata among five plant-derived ones. Then, to further improve its activity, we rationally engineered its active site and enhanced its expression via a bicistronic structure. Finally, 4.5 g/L (S)-limonene was achieved in shake flasks with glycerol as the carbon source after 72 h. In a 5 L bioreactor, production reached 22.8 g/L within 100 h, representing the highest microbial (S)-limonene yield reported to date.
科研通智能强力驱动
Strongly Powered by AbleSci AI