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High production of butyric acid by Clostridium tyrobutyricum mutant

机译:酪丁酸梭菌突变体高产丁酸

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The objective of this study was to improve the production of butyric acid by process optimization using the metabolically engineered mutant of Clostridium tyrobutyricum (PAK-Em). First, the free-cell fermentation at pH 6.0 produced butyric acid with concentration of 38.44 g/L and yield of 0.42 g/g. Second, the immobilized-cell fermentations using fibrous-bed bioreactor (FBB) were run at pHs of 5.0, 5.5, 6.0, 6.5 and 7.0 to optimize fermentation process and improve the butyric acid production. It was found that the highest titer of butyric acid, 63.02 g/L, was achieved at pH 6.5. Finally, the metabolic flux balance analysis was performed to investigate the carbon rebalance in C. tyrobutyricum. The results show both gene manipulation and fermentation pH change redistribute carbon between biomass, acetic acid and butyric acid. This study demonstrated that high butyric acid production could be obtained by integrating metabolic engineering and fermentation process optimization.
机译:这项研究的目的是通过使用酪氨酸丁酸梭菌(PAK-Em)的代谢工程突变体通过工艺优化来提高丁酸的产量。首先,在pH 6.0的自由细胞发酵中产生的丁酸浓度为38.44 g / L,产率为0.42 g / g。其次,使用纤维床生物反应器(FBB)进行固定化细胞发酵的pH为5.0、5.5、6.0、6.5和7.0,以优化发酵过程并提高丁酸的产量。发现在pH 6.5时可获得最高滴度的丁酸63.02 g / L。最后,进行了代谢通量平衡分析,以研究酪丁酸梭菌中的碳再平衡。结果表明,基因操作和发酵pH值的改变都会在生物质,乙酸和丁酸之间重新分配碳。这项研究表明,通过整合代谢工程和发酵工艺优化可以获得较高的丁酸产量。

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