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Characterizing the Anoxic Phenotype of Pseudomonas putida Using a Bioelectrochemical System

机译:使用生物电化学系统表征假单胞菌帕迪达的缺氧表型

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Industrial fermentation in aerobic processes is plagued by high costs due to gas transfer limitations and substrate oxidation to CO2. It has been a longstanding challenge to engineer an obligate aerobe organism, such as Pseudomonas putida, into an anaerobe to facilitate its industrial application. However, the progress in this field is limited, due to the poor understanding of the constraints restricting its anoxic phenotype. In this paper, we provide a methodological description of a novel cultivation technology for P. putida under anaerobic conditions, using the so-called microbial electrochemical technology within a bioelectrochemical system. By using an electrode as the terminal electron acceptor (mediated via redox chemicals), glucose catabolism could be activated without oxygen present. This (i) provides an anoxic-producing platform for sugar acid production at high yield and (ii) more importantly, enables systematic and quantitative characterizations of the phenotype of P. putida in the absence of molecular oxygen. This unique electrode-based cultivation approach offers a tool to understand and in turn engineer the anoxic phenotype of P. putida and possibly also other obligate aerobes.
机译:由于气体转移限制和基材氧化至CO 2,在有氧过程中的工业发酵通过高成本困扰。为工程师提供了一种长期的挑战,使PSEUDOUDONAS PITIDA(如PSEUDOUDOUNAS PITIDA)进入Anaerobe,以促进其工业应用。然而,由于对限制其缺氧表型的约束的理解差,该领域的进展是有限的。在本文中,我们在生物电化学系统中使用所谓的微生物电化学技术,提供了一种在厌氧条件下P. Piviida进行新栽培技术的方法描述。通过使用电极作为末端电子受体(通过氧化还原化学品介导),可以在没有氧气的情况下激活葡萄糖分解代谢。该(i)提供了高产率高的糖酸生产的缺氧产物,更重要的是,在不存在分子氧的情况下,能够对P. Piida的表型进行系统和定量表征。这种独特的电极培养方法提供了一种理解和转向工程师的工具,普蒂达的缺氧表型以及可能的其他费用。

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