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Enhanced succinic acid production and magnesium utilization by overexpression of magnesium transporter mgtA in Escherichia coli mutant

机译:通过在大肠杆菌突变体中过表达镁转运蛋白mgtA来提高琥珀酸的生产和镁的利用

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摘要

In this study, a novel engineered Escherichia coli strain KMG111 was constructed by overexpression of mgtA in E. coli mutant DC1515. By adopting KMG111, nearly a concentration of succinic acid (32.41 g L~(-1)) with a yield of 0.81 g g~(-1) glucose, could be obtained in a batch fermentation by using the low-cost mixture of Mg(OH)_2 and NH_3?H_2O to replace MgCO_3 as the alkaline neutralizer. Moreover, the effect of the inhibitory compounds in lignocellulosic hydrolyzates on cell growth and succinic acid production could be relieved. In a 3-L bioreactor, the overall productivity and yield of succinic acid in the whole anaerobic stage were 2.15 g L~(-1) h~(-1) and 0.86 g g~(-1) total sugar, respectively. This study was the first to report decreased alkaline neutralizer cost via genetic manipulation for succinic acid production, which contributed to the industrialization of this microbial synthesis process.
机译:在这项研究中,通过在大肠杆菌突变体DC1515中过表达mgtA来构建新型工程大肠杆菌菌株KMG111。通过采用KMG111,通过使用低成本的Mg()混合物可以分批发酵获得近浓度的琥珀酸(32.41 g L〜(-1)),葡萄糖的产量为0.81 gg〜(-1)。 OH)_2和NH_3?H_2O代替MgCO_3作为碱性中和剂。而且,木质纤维素水解产物中的抑制化合物对细胞生长和琥珀酸产生的作用可以减轻。在3-L生物反应器中,整个厌氧阶段的琥珀酸总生产率和产量分别为2.15 g L〜(-1)h〜(-1)和0.86 g g〜(-1)总糖。这项研究是第一个报告通过遗传操作生产琥珀酸降低了碱性中和剂成本的方法,这有助于该微生物合成工艺的工业化。

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