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High butanol production by regulating carbon, redox and energy in Clostridia
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作者 Jianfa Ou Chao Ma +2 位作者 Ningning Xu yinming du Xiaoguang (Margaret) Liu 《Frontiers of Chemical Science and Engineering》 SCIE EI CAS CSCD 2015年第3期317-323,共7页
Butanol is a promising biofuel with high energy intensity and can be used as gasoline substitute. It can be produced as a sustainable energy by microorganisms (such as Clostridia) from low-value biomass. However, th... Butanol is a promising biofuel with high energy intensity and can be used as gasoline substitute. It can be produced as a sustainable energy by microorganisms (such as Clostridia) from low-value biomass. However, the low productivity, yield and selectivity in butanol fermentation are still big challenges due to the lack of an efficient butanol-producing host strain. In this article, we systematically review the host cell engineering of Clostridia, focusing on (1) various strategies to rebalance metabolic flux to achieve a high butanol production by regulating the metabolism of carbon, redox or energy, (2) the challenges in pathway manipulation, and (3) the application of proteomics technology to understand the intracellular metabolism. In addition, the process engineer- ing is also briefly described. The objective of this review is to summarize the previous research achievements in the metabolic engineering of Clostridium and provide guidance for future novel strain construction to effectively produce butanol. 展开更多
关键词 CLOSTRIDIA BUTANOL BIOFUEL METABOLISM CARBON redox ENERGY
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