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Metabolic Characteristics of a Glucose-Utilizing Shewanella oneidensis Strain Grown under Electrode-Respiring Conditions

In bioelectrochemical systems, the electrode potential is an important parameter affecting the electron flow between electrodes and microbes and microbial metabolic activities. Here, we investigated the metabolic characteristics of a glucose-utilizing strain of engineered Shewanella oneidensis under...

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Autores principales: Nakagawa, Gen, Kouzuma, Atsushi, Hirose, Atsumi, Kasai, Takuya, Yoshida, Gen, Watanabe, Kazuya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4579138/
https://www.ncbi.nlm.nih.gov/pubmed/26394222
http://dx.doi.org/10.1371/journal.pone.0138813
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author Nakagawa, Gen
Kouzuma, Atsushi
Hirose, Atsumi
Kasai, Takuya
Yoshida, Gen
Watanabe, Kazuya
author_facet Nakagawa, Gen
Kouzuma, Atsushi
Hirose, Atsumi
Kasai, Takuya
Yoshida, Gen
Watanabe, Kazuya
author_sort Nakagawa, Gen
collection PubMed
description In bioelectrochemical systems, the electrode potential is an important parameter affecting the electron flow between electrodes and microbes and microbial metabolic activities. Here, we investigated the metabolic characteristics of a glucose-utilizing strain of engineered Shewanella oneidensis under electrode-respiring conditions in electrochemical reactors for gaining insight into how metabolic pathways in electrochemically active bacteria are affected by the electrode potential. When an electrochemical reactor was operated with its working electrode poised at +0.4 V (vs. an Ag/AgCl reference electrode), the engineered S. oneidensis strain, carrying a plasmid encoding a sugar permease and glucose kinase of Escherichia coli, generated current by oxidizing glucose to acetate and produced D-lactate as an intermediate metabolite. However, D-lactate accumulation was not observed when the engineered strain was grown with a working electrode poised at 0 V. We also found that transcription of genes involved in pyruvate and D-lactate metabolisms was upregulated at a high electrode potential compared with their transcription at a low electrode potential. These results suggest that the carbon catabolic pathway of S. oneidensis can be modified by controlling the potential of a working electrode in an electrochemical bioreactor.
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spelling pubmed-45791382015-10-01 Metabolic Characteristics of a Glucose-Utilizing Shewanella oneidensis Strain Grown under Electrode-Respiring Conditions Nakagawa, Gen Kouzuma, Atsushi Hirose, Atsumi Kasai, Takuya Yoshida, Gen Watanabe, Kazuya PLoS One Research Article In bioelectrochemical systems, the electrode potential is an important parameter affecting the electron flow between electrodes and microbes and microbial metabolic activities. Here, we investigated the metabolic characteristics of a glucose-utilizing strain of engineered Shewanella oneidensis under electrode-respiring conditions in electrochemical reactors for gaining insight into how metabolic pathways in electrochemically active bacteria are affected by the electrode potential. When an electrochemical reactor was operated with its working electrode poised at +0.4 V (vs. an Ag/AgCl reference electrode), the engineered S. oneidensis strain, carrying a plasmid encoding a sugar permease and glucose kinase of Escherichia coli, generated current by oxidizing glucose to acetate and produced D-lactate as an intermediate metabolite. However, D-lactate accumulation was not observed when the engineered strain was grown with a working electrode poised at 0 V. We also found that transcription of genes involved in pyruvate and D-lactate metabolisms was upregulated at a high electrode potential compared with their transcription at a low electrode potential. These results suggest that the carbon catabolic pathway of S. oneidensis can be modified by controlling the potential of a working electrode in an electrochemical bioreactor. Public Library of Science 2015-09-22 /pmc/articles/PMC4579138/ /pubmed/26394222 http://dx.doi.org/10.1371/journal.pone.0138813 Text en © 2015 Nakagawa et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Nakagawa, Gen
Kouzuma, Atsushi
Hirose, Atsumi
Kasai, Takuya
Yoshida, Gen
Watanabe, Kazuya
Metabolic Characteristics of a Glucose-Utilizing Shewanella oneidensis Strain Grown under Electrode-Respiring Conditions
title Metabolic Characteristics of a Glucose-Utilizing Shewanella oneidensis Strain Grown under Electrode-Respiring Conditions
title_full Metabolic Characteristics of a Glucose-Utilizing Shewanella oneidensis Strain Grown under Electrode-Respiring Conditions
title_fullStr Metabolic Characteristics of a Glucose-Utilizing Shewanella oneidensis Strain Grown under Electrode-Respiring Conditions
title_full_unstemmed Metabolic Characteristics of a Glucose-Utilizing Shewanella oneidensis Strain Grown under Electrode-Respiring Conditions
title_short Metabolic Characteristics of a Glucose-Utilizing Shewanella oneidensis Strain Grown under Electrode-Respiring Conditions
title_sort metabolic characteristics of a glucose-utilizing shewanella oneidensis strain grown under electrode-respiring conditions
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4579138/
https://www.ncbi.nlm.nih.gov/pubmed/26394222
http://dx.doi.org/10.1371/journal.pone.0138813
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