首页> 外文期刊>Journal of Genetic Engineering and Biotechnology >A single metabolite production by Escherichia coli BW25113 and its pflA.cra mutant cultivated under microaerobic conditions using glycerol or glucose as a carbon source
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A single metabolite production by Escherichia coli BW25113 and its pflA.cra mutant cultivated under microaerobic conditions using glycerol or glucose as a carbon source

机译:大肠杆菌BW25113及其pflA.cra突变体的单次代谢产物在微需氧条件下使用甘油或葡萄糖作为碳源培养

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Abundant, low prices and a highly reduced nature make glycerol to be an ideal feedstock for the production of reduced biochemicals and biofuels. Escherichia coli has been paid much attention as the platform of microbial cell factories due to its high growth rate (giving higher metabolite production rate) and the capability of utilizing a wide range of carbon sources. However, one of the drawbacks of using E. coli as a platform is its mixed metabolite formation under anaerobic conditions. In the present study, it was shown that ethanol could be exclusively produced from glycerol by the wild type E. coli, while d-lactic acid could be exclusively produced from glucose by pflA.cra mutant, where the glucose uptake rate could be increased by this mutant as compared to the wild type strain. It was also shown that the growth rate is significantly reduced in pflA.cra mutant for the case of using glycerol as a carbon source due to redox imbalance. The metabolic regulation mechanisms behind the fermentation characteristic were clarified to some extent.
机译:丰富的,低廉的价格和高度还原的性质使甘油成为生产还原型生物化学物质和生物燃料的理想原料。大肠杆菌由于其高生长速率(代谢产物产生速率更高)和能够利用多种碳源的能力而作为微生物细胞工厂的平台受到了广泛关注。然而,使用大肠杆菌作为平台的缺点之一是其在厌氧条件下混合代谢产物的形成。在本研究中,研究表明,野生型大肠杆菌可能仅由甘油产生乙醇,而pflA.cra突变体可能仅由葡萄糖产生d-乳酸,其中葡萄糖的吸收速率可以通过增加。与野生型菌株相比,该突变体。还显示出由于氧化还原失衡,在使用甘油作为碳源的情况下,pflA.cra突变体的生长速率显着降低。在一定程度上阐明了发酵特性背后的代谢调节机制。

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