Extracellular Electron Transfer of Weak Electricigens in the Presence of a Competing Electron Acceptor

电子转移 电子受体 化学 电极 细胞外 接受者 电子传输链 电子 光化学 分析化学(期刊) 有机化学 生物化学 物理化学 物理 量子力学 凝聚态物理
作者
Kartik S. Aiyer,Lucinda Elizabeth Doyle
出处
期刊:Journal of The Electrochemical Society [Institute of Physics]
卷期号:170 (5): 055501-055501 被引量:2
标识
DOI:10.1149/1945-7111/accf3e
摘要

To maximise microbial electroactivity in bioelectrochemical systems, soluble electron acceptors are typically omitted as they compete with the electrode. While practical, this approach provides engineered conditions that do not reflect the natural environment of electroactive microorganisms, which may contain both soluble and insoluble electron acceptors. This study investigates the behaviour of weak electricigens, a relatively understudied category of microorganisms whose members switch between non-electroactive and electroactive states. Enrichments were performed in microbial fuel cells containing both an electrode and the soluble alternative fumarate to probe extracellular electron transfer of weak electricigens. Using fluorescence spectroscopy, chromatography and voltammetry, the electron shuttle riboflavin was not found in these conditions but was found in controls in which only the electrode was available to reduce. Despite this dichotomy in ability to perform riboflavin-based mediated electron transfer, communities of weak electricigens were similarly electroactive in each condition (19.36 ± 0.9 mW m −2 vs 20.25 ± 2.0 mW m −2 ). 16S rRNA gene sequencing revealed similar communities enriched in each condition, but with differing abundance. Understanding extracellular electron transfer in natural environments is of both fundamental and applied interest, as it can inform the design of real-world bioelectrochemical systems whose influents are likely to contain competing electron acceptors.
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