Electricity-driven metabolic shift through direct electron uptake by electroactive heterotroph Clostridium pasteurianum.
about
Extracellular electron transfer from cathode to microbes: application for biofuel productionThe mechanism of neutral red-mediated microbial electrosynthesis in Escherichia coli: menaquinone reduction.Neutral red-mediated microbial electrosynthesis by Escherichia coli, Klebsiella pneumoniae, and Zymomonas mobilis.Metabolic Investigation in Gluconacetobacter xylinus and Its Bacterial Cellulose Production under a Direct Current Electric Field.Effective isopropanol-butanol (IB) fermentation with high butanol content using a newly isolated Clostridium sp. A1424.Redox dependent metabolic shift in Clostridium autoethanogenum by extracellular electron supply.Cooperative growth of Geobacter sulfurreducens and Clostridium pasteurianum with subsequent metabolic shift in glycerol fermentation.Revealing extracellular electron transfer mediated parasitism: energetic considerations.Metabolic and proteomic analyses of product selectivity and redox regulation in Clostridium pasteurianum grown on glycerol under varied iron availability.Editorial: Current Challenges and Future Perspectives on Emerging Bioelectrochemical Technologies.Disruption of the Reductive 1,3-Propanediol Pathway Triggers Production of 1,2-Propanediol for Sustained Glycerol Fermentation by Clostridium pasteurianumCatalytic upgrading of butyric acid towards fine chemicals and biofuels.Genome-directed analysis of prophage excision, host defence systems, and central fermentative metabolism in Clostridium pasteurianum.Anodic electro-fermentation of 3-hydroxypropionic acid from glycerol by recombinant Klebsiella pneumoniae L17 in a bioelectrochemical system.In silico analysis of Clostridium acetobutylicum ATCC 824 metabolic response to an external electron supply.Electro-fermentation triggering population selection in mixed-culture glycerol fermentation.Microbial Electrosynthesis I: Pure and Defined Mixed Culture Engineering.Formate and Nitrate Utilization in Enterobacter aerogenes for Semi-Anaerobic Production of Isobutanol.Electrochemically Driven Fermentation of Organic Substrates with Undefined Mixed Microbial Cultures.Bio-electrochemical synthesis of commodity chemicals by autotrophic acetogens utilizing CO2 for environmental remediation.High-value biomass from microalgae production platforms: strategies and progress based on carbon metabolism and energy conversion
P2860
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P2860
Electricity-driven metabolic shift through direct electron uptake by electroactive heterotroph Clostridium pasteurianum.
description
2014 nî lūn-bûn
@nan
2014 թուականի Նոյեմբերին հրատարակուած գիտական յօդուած
@hyw
2014 թվականի նոյեմբերին հրատարակված գիտական հոդված
@hy
2014年の論文
@ja
2014年論文
@yue
2014年論文
@zh-hant
2014年論文
@zh-hk
2014年論文
@zh-mo
2014年論文
@zh-tw
2014年论文
@wuu
name
Electricity-driven metabolic s ...... roph Clostridium pasteurianum.
@ast
Electricity-driven metabolic s ...... roph Clostridium pasteurianum.
@en
Electricity-driven metabolic s ...... roph Clostridium pasteurianum.
@nl
type
label
Electricity-driven metabolic s ...... roph Clostridium pasteurianum.
@ast
Electricity-driven metabolic s ...... roph Clostridium pasteurianum.
@en
Electricity-driven metabolic s ...... roph Clostridium pasteurianum.
@nl
prefLabel
Electricity-driven metabolic s ...... roph Clostridium pasteurianum.
@ast
Electricity-driven metabolic s ...... roph Clostridium pasteurianum.
@en
Electricity-driven metabolic s ...... roph Clostridium pasteurianum.
@nl
P2093
P2860
P356
P1433
P1476
Electricity-driven metabolic s ...... troph Clostridium pasteurianum
@en
P2093
Okkyoung Choi
Taeyeon Kim
Youngsoon Um
P2860
P2888
P356
10.1038/SREP06961
P407
P50
P577
2014-11-07T00:00:00Z
P5875
P6179
1029322244