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Rebalancing Redox to Improve Biobutanol Production by Clostridium tyrobutyricum

机译:重新平衡氧化还原以提高酪丁酸梭菌生产生物丁醇的能力

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Biobutanol is a sustainable green biofuel that can substitute for gasoline. Carbon flux has been redistributed in Clostridium tyrobutyricum via metabolic cell engineering to produce biobutanol. However, the lack of reducing power hampered the further improvement of butanol production. The objective of this study was to improve butanol production by rebalancing redox. Firstly, a metabolically-engineered mutant CTC-fdh-adhE2 was constructed by introducing heterologous formate dehydrogenase (fdh) and bifunctional aldehyde/alcohol dehydrogenase (adhE2) simultaneously into wild-type C. tyrobutyricum. The mutant evaluation indicated that the fdh-catalyzed NADH-producing pathway improved butanol titer by 2.15-fold in the serum bottle and 2.72-fold in the bioreactor. Secondly, the medium supplements that could shift metabolic flux to improve the production of butyrate or butanol were identified, including vanadate, acetamide, sodium formate, vitamin B12 and methyl viologen hydrate. Finally, the free-cell fermentation produced 12.34 g/L of butanol from glucose using the mutant CTC-fdh-adhE2, which was 3.88-fold higher than that produced by the control mutant CTC-adhE2. This study demonstrated that the redox engineering in C. tyrobutyricum could greatly increase butanol production.
机译:生物丁醇是一种可持续的绿色生物燃料,可以替代汽油。碳通量已通过代谢细胞工程在酪丁酸梭菌中重新分布,以生产生物丁醇。但是,缺乏降低的功率阻碍了丁醇产量的进一步提高。这项研究的目的是通过平衡氧化还原来提高丁醇产量。首先,通过将异源甲酸脱氢酶(fdh)和双功能醛/醇脱氢酶(adhE2)同时引入野生型酪丁酸杆菌中,构建了一个代谢工程突变体CTC-fdh-adhE2。突变体评估表明,在dhh催化的NADH产生途径中,丁醇滴度在血清瓶中提高了2.15倍,在生物反应器中提高了2.72倍。其次,确定了可以改变代谢通量以提高丁酸酯或丁醇产量的培养基补充剂,包括钒酸盐,乙酰胺,甲酸钠,维生素B12和甲基紫精水合物。最后,使用突变体CTC-fdh-adhE2,游离细胞发酵从葡萄糖中产生了12.34 g / L的丁醇,这比对照突变体CTC-adhE2产生的高3.88倍。这项研究表明酪丁酸梭菌的氧化还原工程可以大大增加丁醇的产量。

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