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Adaptive Evolution of Escherichia coli Inactivated in the Phosphotransferase System Operon Improves Co-utilization of Xylose and Glucose Under Anaerobic Conditions

机译:磷酸转移酶系统中失活的大肠杆菌的适应性进化Operon改善了厌氧条件下木糖和葡萄糖的共同利用

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Modification of the phosphoenolpyruvate/sugar phosphotransferase system (PTS) has shown improvement in sugar coassimilation in Escherichia coli production strains. However, in preliminary experiments under anaerobic conditions, E. coli strains with an inactive PTS and carrying pLOI1594, which encodes pyruvate decarboxylase and alcohol dehydrogenase from Zymomonas mobilis, were unable to grow. These PTS− strains were previously evolved under aerobic conditions to grow rapidly in glucose (PTS- Glucose+ phenotype). Thus, in this work, applying a continuous culture strategy under anaerobic conditions, we generate a new set of evolved PTS− Glucose+ mutants, VH30N1 to VH30N6. Contrary to aerobically evolved mutants, strains VH30N2 and VH30N4 carrying pLOI1594 grew in anaerobiosis; also, their growth capacity was restored in a 100%, showing specific growth rates (μ ~ 0.12 h−1) similar to the PTS+ parental strain (μ = 0.11 h−1). In cultures of VH30N2/pLOI1594 and VH30N4/pLOI1594 using a glucose–xylose mixture, xylose was totally consumed and consumption of sugars occurred in a simultaneous manner indicating that catabolic repression is alleviated in these strains. Also, the efficient sugar coassimilation by the evolved strains caused an increment in the ethanol yields.
机译:磷酸烯醇丙酮酸/糖磷酸转移酶系统(PTS)的修饰已显示出大肠杆菌生产菌株中糖共同化作用的改善。然而,在厌氧条件下的初步实验中,带有无活性PTS并携带pLOI1594的大肠杆菌菌株无法生长,该菌株编码来自运动发酵单胞菌的丙酮酸脱羧酶和乙醇脱氢酶。这些PTS -菌株先前在有氧条件下进化,可以在葡萄糖中快速生长(PTS -葡萄糖 + 表型)。因此,在这项工作中,在厌氧条件下应用连续培养策略,我们生成了一组新的进化的PTS -葡萄糖 + 突变体,从VH30N1到VH30N6。与需氧进化突变体相反,携带pLOI1594的VH30N2和VH30N4菌株在厌氧菌中生长。同样,它们的生长能力恢复了100%,显示出类似于PTS + 亲本菌株(μ= 0.11 h)的特定生长速率(μ〜0.12 h -1 ) -1 )。在使用葡萄糖-木糖混合物的VH30N2 / pLOI1594和VH30N4 / pLOI1594的培养物中,木糖被完全消耗,糖的消耗同时发生,这表明这些菌株的分解代谢阻遏得到缓解。同样,进化菌株对糖的有效同化作用导致乙醇产量的增加。

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