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首页> 外文期刊>Engineering in Life Sciences >Online monitoring of the respiratory quotient reveals metabolic phases during microaerobic 2,3-butanediol production with Bacillus licheniformis
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Online monitoring of the respiratory quotient reveals metabolic phases during microaerobic 2,3-butanediol production with Bacillus licheniformis

机译:在线监测呼吸道值揭示微生物2,3-丁二醇生产中的代谢阶段用芽孢杆菌植物芽孢杆菌

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Microaerobic cultivation conditions are often beneficial for the biotechnological production of reduced metabolites like 2,3-butanediol. However, due to oxygen limitation, process monitoring based on oxygen transfer rate, or dissolved oxygen measurement provides only limited information. In this study, online monitoring of the respiratory quotient is used to investigate the metabolic activity of Bacillus licheniformis DSM 8785 during mixed acid-2,3-butanediol production under microaerobic conditions. Thereby, the respiratory quotient provides valuable information about different metabolic phases. Based on partial reaction stoichiometries, the metabolic activity in each phase of the cultivation was revealed, explaining the course of the respiratory quotient. This provides profound information on the formation or consumption of glucose, 2,3-butanediol, ethanol and lactate, both, in shake flasks and stirred tank reactor cultivations. Furthermore, the average respiratory quotient correlates with the oxygen availability during the cultivation. Carbon mass balancing revealed that this reflects the increased formation of reduced metabolites with increasing oxygen limitation. The results clearly demonstrate that the respiratory quotient is a valuable online signal to reveal and understand the metabolic activity during microaerobic cultivations. The approach of combining respiratory quotient monitoring with stoichiometric considerations can be applied to other organisms and processes to define suitable cultivation conditions to produce the desired product spectrum.
机译:微生物培养条件通常有利于生物技术生产降低代谢产物,如2,3-丁二醇。然而,由于氧气限制,基于氧传输速率的过程监测,或溶解氧测量仅提供有限的信息。在该研究中,在在微生物条件下,使用对呼吸器呼吸道商的在线监测探讨混合酸-2,3-丁二醇产量期间的芽孢杆菌的代谢活性。由此,呼吸型商提供了有关不同代谢阶段的有价值的信息。基于部分反应化学物质,揭示了培养的每种阶段的代谢活性,解释了呼吸道商的过程。这提供了有关葡萄糖,2,3-丁二醇,乙醇和乳酸的形成或消耗的深刻信息,包括摇瓶和搅拌釜反应器培养。此外,平均呼吸道商与培养过程中的氧可用性相关。碳质量平衡揭示了这反映了随着氧气限制增加降低代谢物的形成。结果清楚地表明,呼吸商是一种有价值的在线信号,以揭示和理解微生物培养过程中的代谢活动。将呼吸器商监测与化学计量考虑相结合的方法可以应用于其他生物和方法,以确定合适的培养条件以产生所需的产品光谱。

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