Shewanella oneidensis MR-1-Induced Fe(III) Reduction Facilitates Roxarsone Transformation
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Summary
The results showed that the MR-1 strain was able to anaerobically use roxarsone as a terminal electron acceptor and to convert it to a single product, 3-amino-4-hydroxybenzene arsonic acid (AHBAA).
- Type
- article
- Published
- 2016-04-21
- Cited by
- 18
- References
- 41
- Access
- Open access
- OpenAlex
- https://openalex.org/W27100323
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:9778881
Keywords
Philosophy
References
- Novel Mode of Microbial Energy Metabolism: Organic Carbon Oxidation Coupled to Dissimilatory Reduction of Iron or Manganese
- Promoted reduction of tellurite and formation of extracellular tellurium nanorods by concerted reaction between iron and Shewanella oneidensis MR-1.
- Organic Acid-Dependent Iron Mineral Formation by a Newly Isolated Iron-Reducing Bacterium, Shewanella sp. HN-41
- Surface adsorption of organoarsenic roxarsone and arsanilic acid on iron and aluminum oxides.
- Arsenic speciation in turnip as affected by application of chicken manure bearing roxarsone and its metabolites
- Anaerobic Fe(II)-oxidizing bacteria show as resistance and immobilize as during Fe(III) mineral precipitation.
- Sorptive Uptake Studies of an Aryl-Arsenical with Iron Oxide Composites on an Activated Carbon Support
- Anaerobic biotransformation of roxarsone and related N-substituted phenylarsonic acids.
- A biosensor for organoarsenical herbicides and growth promoters
- Arsenic volatilization in model anaerobic biogas digesters
- Iron promoted reduction of chromate by dissimilatory iron-reducing bacteria.
- Biological phosphorus removal inhibition by roxarsone in batch culture systems.
- Effects of roxarsone on the functional diversity of soil microbial community
- Fate of arsenic during microbial reduction of biogenic versus Abiogenic As-Fe(III)-mineral coprecipitates.
- Degradation of roxarsone in a silt loam soil and its toxicity assessment.
- Contrasting effects of dissimilatory iron (III) and arsenic (V) reduction on arsenic retention and transport.
- Confounding impacts of iron reduction on arsenic retention.
- Towards Electrosynthesis in Shewanella: Energetics of Reversing the Mtr Pathway for Reductive Metabolism
- Biotransformation of 3-nitro-4-hydroxybenzene arsonic acid (roxarsone) and release of inorganic arsenic by Clostridium species.
- Environmental fate of roxarsone in poultry litter. I. Degradation of roxarsone during composting.
Cited by
- Aromatic organoarsenic compounds (AOCs) occurrence and remediation methods.
- Roxarsone exposure jeopardizes nitrogen removal and regulates bacterial community in biological sequential batch reactors.
- Limited carbon source retards inorganic arsenic release during roxarsone degradation in Shewanella oneidensis microbial fuel cells
- Biotransformation of arsenic-containing roxarsone by an aerobic soil bacterium Enterobacter sp. CZ-1.
- Facile synthesis of Pd supported on Shewanella as an efficient catalyst for oxygen reduction reaction
- N-Hydroxyarylamine O-Acetyltransferases Catalyze Acetylation of 3-Amino-4-Hydroxyphenylarsonic Acid in the 4-Hydroxy-3-Nitrobenzenearsonic Acid Transformation Pathway of Enterobacter sp. Strain CZ-1
- Identification of an anaerobic bacterial consortium that degrades roxarsone
- Molecular density regulating electron transfer efficiency of S. oneidensis MR-1 mediated roxarsone biotransformation.
- Organoarsenic feed additives in biological wastewater treatment processes: Removal, biotransformation, and associated impacts.
- Biochar-Mediated Degradation of Roxarsone by Shewanella oneidensis MR-1
- Significance of Shewanella Species for the Phytoavailability and Toxicity of Arsenic—A Review
- Degradation of palm pressed fibers via microbial Fenton reaction
- Environmental Behavior and Remediation Methods of Roxarsone
- Effects of dissolved organic matter derived from chicken manure on the biotransformation of roxarsone in soil.
- Summary and Prospect of Microbial Degradation of Roxarsone
- Influence of dissolved organic matter on the anaerobic biotransformation of roxarsone accompanying microbial response.
- Stimulation of Wheat Straw Biochar on the Roxarsone Biodegradation by Shewanella Oneidensis MR-1
- Transformation of roxarsone by Enterobacter sp. CZ-1 isolated from an arsenic-contaminated paddy soil
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