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Efficient production of arachidonic acid by Mortierella alpina through integrating fed-batch culture with a two-stage pH control strategy

机译:通过分批补料培养与两阶段pH控制策略相结合,高山被孢霉有效生产花生四烯酸

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Arachidonic acid (ARA) yield and productivity of Mortierella alpina mutant D20 were enhanced by integrating a fed-batch culture combined with a two-stage pH control strategy. Following a kinetic analysis of the whole fermentation process, a two-stage pH control strategy was developed in which the pH was maintained at 5.5 for the first 48 h and then shifted to 6.5 till the end of fermentation. Using this strategy, a maximum ARA production of 8.12 g/L was achieved. On the basis of pH control, the effects of fed-batch cultures on ARA productivity were further investigated. A maximum ARA productivity of 1.40 g/L/d was obtained with a two-stage constant-speed glucose feeding strategy, starting with a glucose concentration of 50 g/L. This strategy was simple and economical to operate, and it may be possible to apply this approach for large-scale industrial production of ARA. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过合并分批补料培养和两阶段pH控制策略,提高了高山被孢霉突变体D20的花生四烯酸(ARA)产量和生产力。在对整个发酵过程进行动力学分析之后,制定了一个两阶段的pH控制策略,其中在开始的48小时内将pH维持在5.5,然后转移到6.5,直到发酵结束。使用该策略,最大ARA产量达到8.12 g / L。在控制pH值的基础上,进一步研究了分批补料培养对ARA生产力的影响。从50 g / L的葡萄糖浓度开始,采用两阶段恒速葡萄糖进料策略可获得的最大ARA产量为1.40 g / L / d。该策略操作简单且经济,可以将这种方法应用于ARA的大规模工业生产。 (C)2015 Elsevier Ltd.保留所有权利。

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