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Use of a glycerol-limited, long-term chemostat for isolation of Escherichia coli mutants with improved physiological properties

机译:使用甘油限制,长期化学稳定剂,用于分离大肠杆菌突变体,具有改善的生理特性

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The evolution of Escherichia coli MG1655 mutants was followed over 126 d in a glycerol-limited chemostat at a dilution rate of 0.05 h-1. This corresponds to a total of 217 generations at a doubling time of 13.9 h. After this time, nearly 90% of the chemostat population consisted of evolved mutant strains as determined by their altered colony morphologies on plates. Two mutants were isolated that exhibited generally improved growth phenotypes in batch cultivations on glycerol, glucose or the gluconeogenic substrate acetate. Higher specific growth rates and increased biomass yields were found for both mutants. For one mutant, this behaviour was combined with significantly reduced secretion of overflow metabolites when either glycerol or glucose was the carbon source. Additionally, during all growth phases of a batch cultivation, this mutant exhibited increased resistance to a variety of adverse conditions including heat shock, osmotic stress and nutrient deprivation. It also displayed significantly shorter lag phases.
机译:在稀释率为0.05H-1的稀释率下,在甘油限制的化学稳定剂中遵循大肠杆菌Mg1655突变体的进化。这对应于13.9小时的倍增时间的总共217代。此后,近90%的化疗群由由其改变的菌落形态确定的突变体菌株组成。分离出两个突变体,其在甘油,葡萄糖或糖原基材乙酸甘油上的分批培养中展现出通常改善的生长表型。对于两个突变体,发现了较高的特异性生长速率和增加的生物量产量。对于一个突变体,当甘油或葡萄糖是碳源时,这种行为与溢流代谢物的分泌显着降低。另外,在分批培养的所有生长阶段,该突变体表现出对多种不利条件的抗性增加,包括热休克,渗透胁迫和营养剥夺。它也显示出明显较短的滞后阶段。

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