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Diverse sulfate-reducing bacteria of the Desulfosarcina/Desulfococcus clade are the key alkane degraders at marine seeps
by
von Netzer, Frederick
, Musat, Florin
, Stagars, Marion
, Seifert, Jana
, Knittel, Katrin
, Kleindienst, Sara
, von Bergen, Martin
, Herbst, Florian-Alexander
, Peplies, Jörg
, Amann, Rudolf
, Lueders, Tillmann
in
631/158/47
/ 631/326/41/2535
/ Alkanes
/ Alkanes - metabolism
/ Anthropogenic factors
/ Bacteria
/ Bacteria - classification
/ Bacteria - isolation & purification
/ Biodegradation
/ Biodiversity
/ Biogeochemistry
/ Biomedical and Life Sciences
/ Butane
/ Butanes - metabolism
/ Carbon cycle
/ Cultivation
/ Degradation
/ Deltaproteobacteria - classification
/ Deltaproteobacteria - isolation & purification
/ Deltaproteobacteria - metabolism
/ Deoxyribonucleic acid
/ Desulfobacteraceae
/ Desulfococcus
/ Desulfosarcina
/ DNA
/ Dodecane
/ Ecology
/ Evolutionary Biology
/ Geologic Sediments - microbiology
/ Hydrocarbon-degrading bacteria
/ Hydrocarbons
/ Hydrocarbons - metabolism
/ Life Sciences
/ Methane
/ Microbial Ecology
/ Microbial Genetics and Genomics
/ Microbiology
/ Microbiota
/ Microorganisms
/ Oil spills
/ Original
/ original-article
/ Oxidation
/ Oxidation-Reduction
/ Oxidizing agents
/ Phylogeny
/ rRNA
/ Seawater
/ Sediments
/ Seepage
/ Stable isotopes
/ Substrates
/ Sulfate reduction
/ Sulfate-reducing bacteria
/ Sulfates
/ Sulfates - metabolism
/ Sulfides - metabolism
/ Sulfur
/ Volcanoes
2014
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Diverse sulfate-reducing bacteria of the Desulfosarcina/Desulfococcus clade are the key alkane degraders at marine seeps
by
von Netzer, Frederick
, Musat, Florin
, Stagars, Marion
, Seifert, Jana
, Knittel, Katrin
, Kleindienst, Sara
, von Bergen, Martin
, Herbst, Florian-Alexander
, Peplies, Jörg
, Amann, Rudolf
, Lueders, Tillmann
in
631/158/47
/ 631/326/41/2535
/ Alkanes
/ Alkanes - metabolism
/ Anthropogenic factors
/ Bacteria
/ Bacteria - classification
/ Bacteria - isolation & purification
/ Biodegradation
/ Biodiversity
/ Biogeochemistry
/ Biomedical and Life Sciences
/ Butane
/ Butanes - metabolism
/ Carbon cycle
/ Cultivation
/ Degradation
/ Deltaproteobacteria - classification
/ Deltaproteobacteria - isolation & purification
/ Deltaproteobacteria - metabolism
/ Deoxyribonucleic acid
/ Desulfobacteraceae
/ Desulfococcus
/ Desulfosarcina
/ DNA
/ Dodecane
/ Ecology
/ Evolutionary Biology
/ Geologic Sediments - microbiology
/ Hydrocarbon-degrading bacteria
/ Hydrocarbons
/ Hydrocarbons - metabolism
/ Life Sciences
/ Methane
/ Microbial Ecology
/ Microbial Genetics and Genomics
/ Microbiology
/ Microbiota
/ Microorganisms
/ Oil spills
/ Original
/ original-article
/ Oxidation
/ Oxidation-Reduction
/ Oxidizing agents
/ Phylogeny
/ rRNA
/ Seawater
/ Sediments
/ Seepage
/ Stable isotopes
/ Substrates
/ Sulfate reduction
/ Sulfate-reducing bacteria
/ Sulfates
/ Sulfates - metabolism
/ Sulfides - metabolism
/ Sulfur
/ Volcanoes
2014
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Diverse sulfate-reducing bacteria of the Desulfosarcina/Desulfococcus clade are the key alkane degraders at marine seeps
by
von Netzer, Frederick
, Musat, Florin
, Stagars, Marion
, Seifert, Jana
, Knittel, Katrin
, Kleindienst, Sara
, von Bergen, Martin
, Herbst, Florian-Alexander
, Peplies, Jörg
, Amann, Rudolf
, Lueders, Tillmann
in
631/158/47
/ 631/326/41/2535
/ Alkanes
/ Alkanes - metabolism
/ Anthropogenic factors
/ Bacteria
/ Bacteria - classification
/ Bacteria - isolation & purification
/ Biodegradation
/ Biodiversity
/ Biogeochemistry
/ Biomedical and Life Sciences
/ Butane
/ Butanes - metabolism
/ Carbon cycle
/ Cultivation
/ Degradation
/ Deltaproteobacteria - classification
/ Deltaproteobacteria - isolation & purification
/ Deltaproteobacteria - metabolism
/ Deoxyribonucleic acid
/ Desulfobacteraceae
/ Desulfococcus
/ Desulfosarcina
/ DNA
/ Dodecane
/ Ecology
/ Evolutionary Biology
/ Geologic Sediments - microbiology
/ Hydrocarbon-degrading bacteria
/ Hydrocarbons
/ Hydrocarbons - metabolism
/ Life Sciences
/ Methane
/ Microbial Ecology
/ Microbial Genetics and Genomics
/ Microbiology
/ Microbiota
/ Microorganisms
/ Oil spills
/ Original
/ original-article
/ Oxidation
/ Oxidation-Reduction
/ Oxidizing agents
/ Phylogeny
/ rRNA
/ Seawater
/ Sediments
/ Seepage
/ Stable isotopes
/ Substrates
/ Sulfate reduction
/ Sulfate-reducing bacteria
/ Sulfates
/ Sulfates - metabolism
/ Sulfides - metabolism
/ Sulfur
/ Volcanoes
2014
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Diverse sulfate-reducing bacteria of the Desulfosarcina/Desulfococcus clade are the key alkane degraders at marine seeps
Journal Article
Diverse sulfate-reducing bacteria of the Desulfosarcina/Desulfococcus clade are the key alkane degraders at marine seeps
2014
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Overview
Biogeochemical and microbiological data indicate that the anaerobic oxidation of non-methane hydrocarbons by sulfate-reducing bacteria (SRB) has an important role in carbon and sulfur cycling at marine seeps. Yet, little is known about the bacterial hydrocarbon degraders active
in situ
. Here, we provide the link between previous biogeochemical measurements and the cultivation of degraders by direct identification of SRB responsible for butane and dodecane degradation in complex on-site microbiota. Two contrasting seep sediments from Mediterranean Amon mud volcano and Guaymas Basin (Gulf of California) were incubated with
13
C-labeled butane or dodecane under sulfate-reducing conditions and analyzed via complementary stable isotope probing (SIP) techniques. Using DNA- and rRNA-SIP, we identified four specialized clades of alkane oxidizers within
Desulfobacteraceae
to be distinctively active in oxidation of short- and long-chain alkanes. All clades belong to the
Desulfosarcina/Desulfococcus
(DSS) clade, substantiating the crucial role of these bacteria in anaerobic hydrocarbon degradation at marine seeps. The identification of key enzymes of anaerobic alkane degradation, subsequent β-oxidation and the reverse Wood–Ljungdahl pathway for complete substrate oxidation by protein-SIP further corroborated the importance of the DSS clade and indicated that biochemical pathways, analog to those discovered in the laboratory, are of great relevance for natural settings. The high diversity within identified subclades together with their capability to initiate alkane degradation and growth within days to weeks after substrate amendment suggest an overlooked potential of marine benthic microbiota to react to natural changes in seepage, as well as to massive hydrocarbon input, for example, as encountered during anthropogenic oil spills.
Publisher
Nature Publishing Group UK,Oxford University Press,Nature Publishing Group
Subject
/ Alkanes
/ Bacteria
/ Bacteria - isolation & purification
/ Biomedical and Life Sciences
/ Butane
/ Deltaproteobacteria - classification
/ Deltaproteobacteria - isolation & purification
/ Deltaproteobacteria - metabolism
/ DNA
/ Dodecane
/ Ecology
/ Geologic Sediments - microbiology
/ Hydrocarbon-degrading bacteria
/ Methane
/ Microbial Genetics and Genomics
/ Original
/ rRNA
/ Seawater
/ Seepage
/ Sulfates
/ Sulfur
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