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应用厌氧呼吸监测系统的在线监测揭示了YTF培养基中存在铁(II)限制。

Online monitoring applying the anaerobic respiratory monitoring system reveals iron(II) limitation in YTF medium for .

作者信息

Mann Marcel, Wittke Darina, Büchs Jochen

机构信息

AVT - Biochemical Engineering RWTH Aachen University Aachen Germany.

出版信息

Eng Life Sci. 2020 Nov 5;21(1-2):19-28. doi: 10.1002/elsc.202000054. eCollection 2021 Jan.

Abstract

Online monitoring of microbial cultures is an effective approach for studying both aerobic and anaerobic microorganisms. Especially in small-scale cultivations, several parallel online monitored experiments can generate a detailed understanding of the cultivation, compared to a situation where a few data points are generated from time course sampling and offline analysis. However, the availability of small-scale online monitoring devices for acetogenic organisms is limited. In this study, the previously reported anaerobic Respiration Activity MOnitoring System (anaRAMOS) device was adapted for online monitoring of () cultures with fructose as the carbon source. The anaRAMOS was applied to identify conversion of different carbon sources present in commonly used YTF medium. An iron(II) deficiency was discovered in this medium for . Addition of iron(II) to the YTF medium reduced the cultivation time and increased biomass yield of cultures by 50% and 40%, respectively. The measurement of the carbon dioxide transfer rate was used to calculated the iron(II) contained in complex components. By demonstrating the application of the anaRAMOS device for medium optimization, it is proven that the described online monitoring device has potential for use in process development.

摘要

微生物培养的在线监测是研究需氧和厌氧微生物的有效方法。特别是在小规模培养中,与通过时间进程采样和离线分析仅生成少量数据点的情况相比,几个并行的在线监测实验能够对培养过程产生详细的了解。然而,用于产乙酸生物的小规模在线监测设备有限。在本研究中,对先前报道的厌氧呼吸活性监测系统(anaRAMOS)设备进行了改进,用于以果糖为碳源的()培养物的在线监测。将anaRAMOS应用于鉴定常用YTF培养基中存在的不同碳源的转化情况。发现该培养基中()存在铁(II)缺乏。向YTF培养基中添加铁(II)可分别将()培养物的培养时间缩短50%,生物量产量提高40%。利用二氧化碳转移速率的测量来计算复杂成分中所含的铁(II)。通过展示anaRAMOS设备在培养基优化中的应用,证明了所描述的在线监测设备在工艺开发中具有应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9707/7837299/3d7cd3bc4e00/ELSC-21-19-g007.jpg

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