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Minimal Escherichia coli Cell for the Most Efficient Production of Ethanol from Hexoses and Pentoses

机译:从己糖和戊糖中最高效生产乙醇的最小大肠杆菌细胞

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To obtain an efficient ethanologenic Escherichia coli strain, we reduced the functional space of the central metabolic network, with eight gene knockout mutations, from over 15,000 pathway possibilities to 6 pathway options that support cell function. The remaining pathways, identified by elementary mode analysis, consist of four pathways with non-growth-associated conversion of pentoses and hexoses into ethanol at theoretical yields and two pathways with tight coupling of anaerobic cell growth with ethanol formation at high yields. Elimination of three additional genes resulted in a strain that selectively grows only on pentoses, even in the presence of glucose, with a high ethanol yield. We showed that the ethanol yields of strains with minimized metabolic functionality closely matched the theoretical predictions. Remarkably, catabolite repression was completely absent during anaerobic growth, resulting in the simultaneous utilization of pentoses and hexoses for ethanol production.
机译:为了获得有效的产乙醇大肠杆菌菌株,我们通过8个基因敲除突变减少了中央代谢网络的功能空间,将其从15,000种途径的可能性变为支持细胞功能的6种途径的选择。通过基本模式分析确定的其余途径包括四个途径,即戊糖和己糖以理论产率非生长相关地转化为乙醇,而两个途径则以高产率将厌氧细胞的生长与乙醇的形成紧密耦合。消除另外三个基因导致菌株仅在戊糖上选择性生长,即使存在葡萄糖,乙醇产量也很高。我们表明具有最小的代谢功能的菌株的乙醇产量与理论预测非常接近。值得注意的是,厌氧菌生长过程中完全不存在分解代谢物阻遏作用,导致戊糖和己糖同时用于乙醇生产。

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