生物生产
固碳
代谢工程
固碳
生物制造
生化工程
化学
二氧化碳
环境科学
制浆造纸工业
生物技术
生物化学
生物
工程类
有机化学
酶
作者
Guipeng Hu,Zehong Li,Danlei Ma,Chao Ye,Linpei Zhang,Cong Gao,Li Liu,Xiulai Chen
出处
期刊:Nature Catalysis
[Springer Nature]
日期:2021-04-29
卷期号:4 (5): 395-406
被引量:100
标识
DOI:10.1038/s41929-021-00606-0
摘要
CO2 sequestration engineering is an attractive strategy for achieving carbon- and energy-efficient bioproduction. However, the efficiency of heterotrophic CO2 sequestration is limited by bioproduct dependence and energy deficiency. Here, modular CO2 sequestration engineering was developed to produce target chemicals by integrating synthetic CO2 fixation and CO2 mitigation modules. A synthetic CO2 fixation pathway was designed, and then enhanced by light-driven reducing power using self-assembled cadmium sulfide nanoparticles. Next, a CO2 mitigation switch was designed, and then optimized by light-driven energy via proteorhodopsin. Finally, by integrating CO2 fixation and CO2 mitigation modules, the efficiency of CO2 sequestration was notably enhanced in Escherichia coli and the yields of l-malate and butyrate were increased to 1.48 and 0.79 mol/mol glucose, respectively, reaching theoretical yields. This CO2 sequestration system provides an efficient platform for channelling CO2 into value-added chemicals.
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