Complete oxidation of toluene under strictly anoxic conditions by a new sulfate-reducing bacterium
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Summary
Results do not support a degradation of toluene via one of the cresols or methylbenzoates, benzyl alcohol, or phenylacetate as free intermediate, and Sequencing of 16S rRNA revealed a relationship to the metabolically dissimilar genus Desulfobacter and on a deeper level to the genus Des sulfurobacterium.
- Type
- article
- Published
- 1993-05-01
- Cited by
- 311
- References
- 28
- Access
- Open access
- OpenAlex
- https://openalex.org/W1513329133
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:13073322
Keywords
Toluene, Anoxic waters, Benzyl alcohol, Alcohol dehydrogenase, Chemistry
References
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Cited by
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- Metabolism of sulfate-reducing prokaryotes
- Molecular Characterization of a Toluene-Degrading Methanogenic Consortium
- Anaerobic biodegradation of saturated and aromatic hydrocarbons.
- Anaerobic degradation of monoaromatic hydrocarbons
- Degradation of o-xylene and m-xylene by a novel sulfate-reducer belonging to the genus Desulfotomaculum
- Anaerobic degradation of pristane in nitrate-reducing microcosms and enrichment cultures
- Functional and phylogenetic diversity of anaerobic BTEX-degrading microorganisms in contaminated aquifers
- First stoichiometric model of oil biodegradation in natural petroleum systems: Part I – The BioClass 0D approach
- Effect of different transport observations on inverse modeling results: case study of a long-term groundwater tracer test monitored at high resolution
- Formate metabolism in sulfate reducing bacteria
- Biochemistry, physiology and biotechnology of sulfate-reducing bacteria.
- Assessment of Bacterial Degradation of Aromatic Hydrocarbons in the Environment by Analysis of Stable Carbon Isotope Fractionation
- Schwefelkreislauf in marinen Sedimenten und Messung von in situ Sulfatreduktionsraten
- Benzene and Beyond: Mechanisms of Novel Anaerobic Aromatic Degradation Pathways in Geobacter daltonii
- Geobiotechnology II: Energy Resources, Subsurface Technologies, Organic Pollutants and Mining Legal Principles
- Applied Microbial Systematics
- Optimization of biostimulant for bioremediation of contaminated coastal sediment by response surface methodology (RSM) and evaluation of microbial diversity by pyrosequencing.
- Bioreactor applications utilizing mesophilic sulfate-reducing bacteria for treatment of mine wastewaters at 9-35 oC
- Mikrobieller Abbau und Redoxzonierung im Abstrom einer teerölkontaminierten Altablagerung
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