代谢工程
原材料
可再生能源
微生物代谢
可再生资源
微生物
生化工程
生物量(生态学)
合成生物学
环境污染
化学
发酵
环境科学
生物降解
细菌
酵母
代谢途径
生物过程
生物
生产(经济)
生物技术
食品科学
工程类
生物化学
环境保护
生态学
计算生物学
有机化学
酶
遗传学
经济
宏观经济学
作者
Yang Zhang,Jing Yu,Yilu Wu,Mingda Li,Yuxuan Zhao,Hongli Zhu,Changjing Chen,Meng Wang,Biqiang Chen,Tianwei Tan
标识
DOI:10.1016/j.cjche.2020.12.014
摘要
The use of traditional chemical catalysis to produce chemicals has a series of drawbacks, such as high dependence on fossil resources, high energy consumption, and environmental pollution. With the development of synthetic biology and metabolic engineering, the use of renewable biomass raw materials for chemicals synthesis by constructing efficient microbial cell factories is a green way to replace traditional chemical catalysis and traditional microbial fermentation. This review mainly summarizes several types of bulk chemicals and high value-added chemicals using metabolic engineering and synthetic biology strategies to achieve efficient microbial production. In addition, this review also summarizes several strategies for effectively regulating microbial cell metabolism. These strategies can achieve the coupling balance of material and energy by regulating intracellular material metabolism or energy metabolism, and promote the efficient production of target chemicals by microorganisms.
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