Anaerobic degradation of propane and butane by sulfate-reducing bacteria enriched from marine hydrocarbon cold seeps
Анаэробная деградация пропана и бутана сульфатредуцирующими бактериями, обогащёнными из морских холодных углеводородных сипов
2012-12-20
SCID: 54.1/jmxm8782
Discuss with AI
anaerobic propane degradationbutane degradationmarine hydrocarbon cold seepsnanoSIMSsulfate-reducing bacteria
Figures from the paper
Abstract (AI)
The short-chain, non-methane hydrocarbons propane and butane can contribute significantly to the carbon and sulfur cycles in marine environments affected by oil or natural gas seepage. In the present study, we enriched and identified novel propane and butane-degrading sulfate reducers from marine oil and gas cold seeps in the Gulf of Mexico and Hydrate Ridge. The enrichment cultures obtained were able to degrade simultaneously propane and butane, but not other gaseous alkanes. They were cold-adapted, showing highest sulfate-reduction rates between 16 and 20 °C. Analysis of 16S rRNA gene libraries, followed by whole-cell hybridizations with sequence-specific oligonucleotide probes showed that each enrichment culture was dominated by a unique phylotype affiliated with the Desulfosarcina-Desulfococcus cluster within the Deltaproteobacteria. These phylotypes formed a distinct phylogenetic cluster of propane and butane degraders, including sequences from environments associated with hydrocarbon seeps. Incubations with (13)C-labeled substrates, hybridizations with sequence-specific probes and nanoSIMS analyses showed that cells of the dominant phylotypes were the first to become enriched in (13)C, demonstrating that they were directly involved in hydrocarbon degradation. Furthermore, using the nanoSIMS data, carbon assimilation rates were calculated for the dominant cells in each enrichment culture.
Key Findings
1
13C labeling, probe hybridization, and nanoSIMS demonstrated direct hydrocarbon degradation by the dominant phylotypes and enabled calculation of their carbon assimilation rates.
2
Each enrichment was dominated by a unique Desulfosarcina-Desulfococcus-affiliated Deltaproteobacteria phylotype forming a distinct cluster of propane and butane degraders.
3
Novel sulfate-reducing bacterial enrichments from Gulf of Mexico and Hydrate Ridge cold seeps degraded propane and butane anaerobically.
4
The cultures were cold-adapted, with maximum sulfate-reduction rates occurring between 16 and 20 °C.
5
The enrichment cultures simultaneously degraded propane and butane but did not degrade other gaseous alkanes.
Research Object
Propane- and butane-degrading sulfate-reducing bacteria enriched from marine oil and gas cold seeps
Research Subject
Anaerobic propane and butane degradation, sulfate-reduction activity, phylogenetic affiliation, and carbon assimilation by the enriched bacteria under cold conditions
Publication Details
Publication Date
2012-12-20
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest