Method for automated high performance closed batch cultivation of gas-utilizing methanogens.

IF 3.5 3区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Walter Hofmann, Marco Orthofer, Nicolás Salas Wallach, Aquilla Ruddyard, Markus Ungerank, Christian Paulik, Simon K-M R Rittmann
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引用次数: 0

Abstract

To advance the utilization of microbial cell factories in gas fermentation processes, their physiological and biotechnological characteristics must be understood. Here, we report on the construction and operation of a novel device, the Gas and Pressure Controller (GPC), which is specifically designed for the automated control of the headspace gas pressure of closed cultivation bottles and facilitates automated gassing, sparging, monitoring and regulation of the headspace volume operated in closed batch cultivation mode in real time.As proof of concept, the physiological and biotechnological characteristics of four autotrophic, hydrogenotrophic methanogenic archaea were examined to quantify novel physiological limits through the elimination of gas limitation during growth and methane formation. We determined unprecedented high maximum specific methane productivity (qCH4) values for: Methanothermobacter marburgensis of 169.59 ± 12.52 mmol g- 1 h- 1, Methanotorris igneus of 420.21 ± 89.46 mmol g- 1 h- 1, Methanocaldococcus jannaschii of 364.52 ± 25.50 mmol g- 1 h- 1 and Methanocaldococcus villosus of 356.38 ± 20.79 mmol g- 1 h- 1. Obtained qCH4 of M. marburgensis is more than 10-fold higher compared to conventional closed batch cultivation set-ups and as high as the highest reported qCH4 value of M. marburgensis from fed-batch gas fermentation in stirred tank bioreactors. Furthermore, the GPC demonstrated reliable functionality with Methanococcus maripaludis, operating safely and autonomous during long term cultivation. This novel device enables optimal headspace pressure control, providing flexibility in application for various gas-fermenting biotechnological processes. It facilitates near optimal cultivation conditions in semi-continuous closed batch cultivation mode, the analysis of limiting factors in high-throughput experimental design and allows for automated biomass production of autotrophic, hydrogenotrophic methanogens.

利用气体的产甲烷菌的高效自动化封闭批量培养方法。
为了推进微生物细胞工厂在气体发酵过程中的应用,必须了解它们的生理和生物技术特性。本文介绍了一种新型装置——气体与压力控制器(GPC)的构建与运行,该装置是专门为密闭培养瓶顶空气体压力的自动控制而设计的,可实现密闭分批培养模式下顶空体积的自动充气、吹注、实时监测和调节。为了证明这一概念,研究了四种自养、氢养产甲烷古菌的生理和生物技术特征,通过消除生长和甲烷生成过程中的气体限制,量化了新的生理极限。我们测定了前所未有的最高甲烷产率(qCH4)值:马氏产甲烷热杆菌为169.59±12.52 mmol g- 1 h- 1,火成岩产甲烷为420.21±89.46 mmol g- 1 h- 1, jannaschii产甲烷醛球菌为364.52±25.50 mmol g- 1 h- 1,绒线产甲烷醛球菌为356.38±20.79 mmol g- 1 h- 1。获得的马氏分枝杆菌的qCH4比传统的封闭间歇培养装置高10倍以上,并且与搅拌槽生物反应器中进料间歇气体发酵马氏分枝杆菌的最高qCH4值一样高。此外,GPC对马里帕鲁甲烷球菌具有可靠的功能,在长期培养过程中可以安全自主地运行。这种新颖的装置能够实现最佳顶空压力控制,为各种气体发酵生物技术过程的应用提供了灵活性。它促进了半连续封闭间歇式培养模式中接近最佳的培养条件,分析了高通量实验设计中的限制因素,并允许自养、氢养产甲烷菌的自动化生物质生产。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
AMB Express
AMB Express BIOTECHNOLOGY & APPLIED MICROBIOLOGY-
CiteScore
7.20
自引率
2.70%
发文量
141
审稿时长
13 weeks
期刊介绍: AMB Express is a high quality journal that brings together research in the area of Applied and Industrial Microbiology with a particular interest in ''White Biotechnology'' and ''Red Biotechnology''. The emphasis is on processes employing microorganisms, eukaryotic cell cultures or enzymes for the biosynthesis, transformation and degradation of compounds. This includes fine and bulk chemicals, polymeric compounds and enzymes or other proteins. Downstream processes are also considered. Integrated processes combining biochemical and chemical processes are also published.
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