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Cultivation of Rhodobacter sphaeroides in the Stirred Bioreactor with Different Feeding Strategies for CoQ10 Production

机译:辅酶Q10生产中不同投料策略在搅拌生物反应器中球形红细菌的培养

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The logistic growth model combined with the Luedeking-Piret equation was adopted in this study to model the batch production of CoQ10 in the cultivation of Rhodobacter sphaeroides. The simulation results indicated that CoQ10 production was a primary metabolite. As being a primary metabolite, a longer cell growing stage would tend to accumulate more biomass and lead to a higher CoQ10 concentration being produced. In this context, a fed-batch operation by molasses feeding was performed to increase the biomass and subsequent CoQ10 production. Three different molasses feeding strategies were operated in this study. Results suggested that the fed-batch operation with molasses controlled at 10±1 g/l could increase the cell mass and CoQ10 concentration to reach their maximum values of 18.6 g/l and 83.8 mg/l, respectively, nearly 2.2 times and 1.9 times their respective values obtained in the batch cultivation.
机译:本研究采用Logistic生长模型结合Luedeking-Piret方程,对球形红球菌培养中辅酶Q10的分批生产进行建模。模拟结果表明辅酶Q10的产生是主要代谢产物。作为主要的代谢产物,较长的细胞生长阶段将倾向于积累更多的生物质,并导致产生更高的CoQ10浓度。在这种情况下,通过糖蜜进料进行分批补料操作以增加生物量和随后的辅酶Q10产量。这项研究采用了三种不同的糖蜜喂养策略。结果表明,将糖蜜控制在10±1 g / l的分批补料操作可以增加细胞质量和CoQ10浓度,分别达到其最大值18.6 g / l和83.8 mg / l,接近2.2倍和1.9倍在分批培养中获得它们各自的值。

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