首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Improved propionic acid production from glycerol with metabolically engineered Propionibacterium jensenii by integrating fed-batch culture with a pH-shift control strategy
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Improved propionic acid production from glycerol with metabolically engineered Propionibacterium jensenii by integrating fed-batch culture with a pH-shift control strategy

机译:通过将分批补料分批培养与pH偏移控制策略相结合,可改善代谢工程改造的詹氏丙酸杆菌中甘油的丙酸生产

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Propionic acid (PA) production with metabolically engineered Propionibacterium jensenii (pZGX04-gldA) was improved by integrating fed-batch culture with a two-stage pH control strategy in a 3-L fermenter. The following two-stage pH control strategy was used: the pH was controlled at 5.9 for 0–36 h and shifted to 6.5 after 36 h. The PA titer was increased to 21.43 g/L. On the basis of pH control, the influence of fed-batch culture on PA production was further investigated and the maximum PA production (34.62 g/L) was obtained when glycerol was fed at a constant rate of 3.33 mL/h from 60 to 132 h with an initial glycerol concentration of 25 g/L. Crude glycerol was then used to produce PA using the optimized strategies, and maximal PA production reached 37.26 g/L. The strategies may be useful for the production of PA by other propionibacteria species.
机译:通过将分批补料分批培养与两阶段pH控制策略整合到3-L发酵罐中,可以改善代谢工程化的詹氏丙酸杆菌(pZGX04-gldA)对丙酸(PA)的生产。使用以下两个阶段的pH控制策略:将pH值控制在5.9的时间为0-36 h,并在36 h后变为6.5。 PA效价增加到21.43g / L。在控制pH值的基础上,进一步研究了分批补料培养对PA产生的影响,当以60到132的3.33 mL / h恒定速率喂入甘油时,最大PA产生量(34.62 g / L) h的初始甘油浓度为25 g / L。然后使用最优化策略将粗甘油用于生产PA,最大PA产量达到37.26 g / L。该策略对于由其他丙酸杆菌属物种产生PA可能是有用的。

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