2013
DOI: 10.1080/01490451.2012.665150
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Detection of Metabolic Key Enzymes of Methane Turnover Processes in Cold Seep Microbial Biofilms

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Cited by 13 publications
(19 citation statements)
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“…On the surface, exposed to the sea water, a black layer consists mainly of aggregates between methane-oxidizing archaea of the ANME-2 group and sulfate reducing bacteria (SRB). SRB of this mat type often exhibit intracytoplasmic magnetosome-like chains of greigite precipitations [8, 13, 14]. Our results imply that greigite magnetosomes are one sink for (otherwise toxic) sulfides.…”
Section: Introductionmentioning
confidence: 75%
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“…On the surface, exposed to the sea water, a black layer consists mainly of aggregates between methane-oxidizing archaea of the ANME-2 group and sulfate reducing bacteria (SRB). SRB of this mat type often exhibit intracytoplasmic magnetosome-like chains of greigite precipitations [8, 13, 14]. Our results imply that greigite magnetosomes are one sink for (otherwise toxic) sulfides.…”
Section: Introductionmentioning
confidence: 75%
“…These samples have already been subjected to extended geochemical and structural analyses [9, 14]. Specific antibodies, directed against methyl-coenzyme M reductase (MCR), the key enzyme of (reverse) methanogenesis, were generated after purification of MCR as essentially described according to [15] by immunization of rabbits following established protocols (e. g., [16] and, the references therein).…”
Section: Methodsmentioning
confidence: 99%
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“…The anaerobic oxidation of methane is thought to be mediated by syntrophic consortia of methanotrophic Archaea and dissimilatory sulfate-reducing bacteria (140). Vibrioid, dissimilatory, sulfate-reducing MTB have been implicated as symbiotic partners in consortia responsible for the anaerobic oxidation of methane in black microbial mats associated with cold methane seep concretionary carbonate buildups in the anoxic sediment of the Black Sea (141,142). Immunogold labeling of these cells using an antibody specific to the dissimilatory adenosine-5=-phosphosulfate reductase (a key enzyme in dissimilatory sulfate reduction) ␤-subunit resulted in a strong positive signal (142).…”
Section: Magneticus)mentioning
confidence: 99%
“…Vibrioid, dissimilatory, sulfate-reducing MTB have been implicated as symbiotic partners in consortia responsible for the anaerobic oxidation of methane in black microbial mats associated with cold methane seep concretionary carbonate buildups in the anoxic sediment of the Black Sea (141,142). Immunogold labeling of these cells using an antibody specific to the dissimilatory adenosine-5=-phosphosulfate reductase (a key enzyme in dissimilatory sulfate reduction) ␤-subunit resulted in a strong positive signal (142). The magnetosome crystals, arranged in a chain within the cells, were shown to consist of an iron sulfide (141).…”
Section: Magneticus)mentioning
confidence: 99%