Microbial Transformations of Selenium Species of Relevance to Bioremediation
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- Type
- review
- Published
- 2016-06-03
- Cited by
- 191
- References
- 136
- Access
- Open access
- OpenAlex
- https://openalex.org/W2415721751
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:4715376
Keywords
Selenium, Selenate, Bioremediation, Environmental chemistry, Chemistry
References
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- Selenium biotransformations in an engineered aquatic ecosystem for bioremediation of agricultural wastewater via brine shrimp production.
- Development of a constructed wetland water treatment system for selenium removal: incorporation of an algal treatment component.
- Nitrate shaped the selenate-reducing microbial community in a hydrogen-based biofilm reactor.
- Ecology and Biotechnology of Selenium-Respiring Bacteria
- Selenium metabolism in Escherichia coli
- Biosynthesis and function of selenocysteine-containing enzymes.
- Biotreatment of Selenium Refinery Wastewater Using Pilot-Scale Granular Sludge and Swim-Bed Bioreactors Augmented with a Selenium-Reducing Bacterium Pseudomonas stutzeri NT-I
- Selenium metabolism in micro-organisms.
- Reduction of selenate to selenide by sulfate-respiring bacteria: experiments with cell suspensions and estuarine sediments.
- Structural and Functional Relationships in Prokaryotes
- Methylation of Inorganic Selenium Compounds by Freshwater Green Algae, Ankistrodesmus sp., Chlorella vulgaris and Selenastrum sp.
- The bacterial response to the chalcogen metalloids Se and Te.
- Reduction of Selenate and Selenite to Elemental Selenium by a Pseudomonas stutzeri Isolate
- Selenate Reduction to Elemental Selenium by Anaerobic Bacteria in Sediments and Culture: Biogeochemical Significance of a Novel, Sulfate-Independent Respiration
- Reduction of Selenite and Detoxification of Elemental Selenium by the Phototrophic BacteriumRhodospirillum rubrum
- Isolation and identification of selenite reducing archaea from Tuz (salt) Lake In Turkey
- Volatilization of Selenium by Alternaria alternata
- Evolution of dimethylselenide from soils.
Cited by
- FTIR spectroscopic studies of selenite reduction by cells of the rhizobacterium Azospirillum brasilense Sp7 and the formation of selenium nanoparticles
- Role of organic acids on the bioavailability of selenium in soil: A review.
- Proteins in microbial synthesis of selenium nanoparticles.
- Microbial transformations of selenite by methane-oxidizing bacteria
- FTIR and Raman spectroscopic studies of selenium nanoparticles synthesised by the bacterium Azospirillum thiophilum.
- Selenite reduction and ammoniacal nitrogen removal in an aerobic granular sludge sequencing batch reactor.
- Environmental impact and bioremediation of seleniferous soils and sediments
- Characterization of a Novel Porin-Like Protein, ExtI, from Geobacter sulfurreducens and Its Implication in the Reduction of Selenite and Tellurite
- The transformation and migration of selenium in soil under different Eh conditions
- Use of plant growth promoting rhizobacteria (PGPRs) with multiple plant growth promoting traits in stress agriculture: Action mechanisms and future prospects.
- Short-term microbial effects of a large-scale mine-tailing storage facility collapse on the local natural environment
- Biosynthesis of selenium nanoparticles and effects of selenite, selenate, and selenomethionine on cell growth and morphology in Rahnella aquatilis HX2
- Transcriptome analysis of silver, palladium, and selenium stresses in Pantoea sp. IMH.
- Proteins enriched in charged amino acids control the formation and stabilization of selenium nanoparticles in Comamonas testosteroni S44
- Selenium at the Redox Interface of the Genome, Metabolome and Exposome
- Selenium analysis in waters. Part 1: Regulations and standard methods.
- Bacillus cereus, selenite-reducing bacterium from contaminated lake of an industrial area: a renewable nanofactory for the synthesis of selenium nanoparticles
- Novel mechanisms of selenate and selenite reduction in the obligate aerobic bacterium Comamonas testosteroni S44.
- A comprehensive review on environmental transformation of selenium: recent advances and research perspectives
- Complete Genome Sequence of Bacillus cereus CC-1, A Novel Marine Selenate/Selenite Reducing Bacterium Producing Metallic Selenides Nanomaterials
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