Search results for "Methane monooxygenase"

showing 7 items of 7 documents

Methane oxidation in industrial biogas plants-Insights in a novel methanotrophic environment evidenced by pmoA gene analyses and stable isotope label…

2018

Abstract A broad methanotrophic community consisting of 16 different operational taxonomic units (OTUs) was detected by particulate methane monooxygenase A (pmoA) gene analyses of reactor sludge samples obtained from an industrial biogas plant. Using a cloning-sequencing approach, 75% of the OTUs were affiliated to the group of type I methanotrophs (γ-Proteobacteria) and 25% to type II methanotrophs (α-Proteobacteria) with a distinct predominance of the genus Methylobacter. By database matching, half of the total OTUs may constitute entirely novel species. For evaluation of process conditions that support growth of methanotrophic bacteria, qPCR analyses of pmoA gene copy numbers were perfor…

0301 basic medicineMethane monooxygenase030106 microbiologyBioengineeringApplied Microbiology and Biotechnology03 medical and health sciencesBioreactorsBiogasBacterial ProteinsLabellingPhylogenySoil MicrobiologybiologyBacteriaStable isotope ratioChemistryGeneral Medicinebiology.organism_classificationAnaerobic digestion030104 developmental biologyIsotopes of carbonBatch Cell Culture TechniquesEnvironmental chemistryBiofuelsIsotope LabelingAnaerobic oxidation of methanebiology.proteinOxygenasesMethaneOxidation-ReductionBacteriaBiotechnologyJournal of biotechnology
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Draft genome of a novel methanotrophic Methylobacter sp. from the volcanic soils of Pantelleria Island

2021

AbstractThe genus Methylobacter is considered an important and often dominant group of aerobic methane-oxidizing bacteria in many oxic ecosystems, where members of this genus contribute to the reduction of CH4 emissions. Metagenomic studies of the upper oxic layers of geothermal soils of the Favara Grande, Pantelleria, Italy, revealed the presence of various methane-oxidizing bacteria, and resulted in a near complete metagenome assembled genome (MAG) of an aerobic methanotroph, which was classified as a Methylobacter species. In this study, the Methylobacter sp. B2 MAG was used to investigate its metabolic potential and phylogenetic affiliation. The MAG has a size of 4,086,539 bp, consists …

DNA BacterialMethanotrophMethane monooxygenaseSettore BIO/19 - Microbiologia GeneraleMicrobiologyVolcanic soilSoil03 medical and health scienceschemistry.chemical_compoundRNA Ribosomal 16SBotanyMolecular BiologyEcosystemPhylogenyFormaldehyde dehydrogenase030304 developmental biologyOriginal Paper0303 health sciencesbiologyMethanol dehydrogenase030306 microbiologyChemistryCarbon fixationTetrahydromethanopterinGeneral Medicinebiology.organism_classificationMethanotrophMetabolic potentialMetagenomicsEcological MicrobiologyMethylococcaceaebiology.proteinMethaneBacteriaAntonie van Leeuwenhoek
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Isolation of methanotrophic bacteria from termite gut.

2015

The guts of termites feature suitable conditions for methane oxidizing bacteria (MOB) with their permanent production of CH4 and constant supply of O2 via tracheae. In this study, we have isolated MOB from the gut contents of the termites Incisitermes marginipennis, Mastotermes darwiniensis, and Neotermes castaneus for the first time. The existence of MOB was indicated by detecting pmoA, the gene for the particulate methane monooxygenase, in the DNA of gut contents. Fluorescence in situ hybridization and quantitative real-time polymerase chain reaction supported those findings. The MOB cell titer was determined to be 10(2)-10(3) per gut. Analyses of the 16S rDNA from isolates indicated clos…

DNA Bacterialfood.ingredientMethane monooxygenaseColony Count MicrobialIsopteraReal-Time Polymerase Chain ReactionMicrobiologyMethylococcaceaeDNA RibosomalMicrobiologyfoodMastotermes darwiniensisRNA Ribosomal 16SAnimalsIn Situ Hybridization FluorescenceMethylocystis bryophilabiologyBacteriaSequence Analysis DNAbiology.organism_classificationGastrointestinal TractMicroscopy FluorescenceMethylocystaceaeMethylocystisMethylococcaceaebiology.proteinOxygenasesMethylocystis parvusMethaneMethylocystaceaeBacteriaMicrobiological research
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Genome Sequence of the Methanotrophic Poly-β-Hydroxybutyrate Producer Methylocystis parvus OBBP

2012

-- PAGS 2 5709-5710

DNA Bacterialfood.ingredientOperonMethane monooxygenasePolyestersMolecular Sequence DataMethylocystisHydroxybutyratesmonooxigenasaMicrobiologyfoodmethylotrophOperonBotanyMolecular BiologyGeneGeneticsWhole genome sequencingbiologySequence Analysis DNAbiology.organism_classificationGenome AnnouncementsType speciesMethylocystisOxygenasesbiology.proteinMethylotrophMethylocystis parvusMethaneMethylocystaceaeGenome BacterialMetabolic Networks and PathwaysJournal of Bacteriology
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Methanotrophic activity and diversity of methanotrophs in volcanic geothermal soils at Pantelleria (Italy)

2014

Volcanic and geothermal systems emit endogenous gases by widespread degassing from soils, including CH4, a greenhouse gas twenty-five times as potent as CO2. Recently, it has been demonstrated that volcanic or geothermal soils are not only a source of methane, but are also sites of methanotrophic activity. Methanotrophs are able to consume 10–40 Tg of CH4 a−1 and to trap more than 50% of the methane degassing through the soils. We report on methane microbial oxidation in the geothermally most active site of Pantelleria (Italy), Favara Grande, whose total methane emission was previously estimated at about 2.5 Mg a−1 (t a−1). Laboratory incubation experiments with three top-soil samples from …

Methane oxidationMethane monooxygenaselcsh:LifeSettore BIO/19 - Microbiologia GeneraleMethanechemistry.chemical_compoundlcsh:QH540-549.5Soil pHEcology Evolution Behavior and SystematicsEarth-Surface ProcessesbiologyEcologylcsh:QE1-996.5bacterial diversityAlphaproteobacteriaVerrucomicrobiabiology.organism_classificationMethanotrophSettore GEO/08 - Geochimica E Vulcanologialcsh:Geologylcsh:QH501-531chemistryEnvironmental chemistryMethane emissionAnaerobic oxidation of methaneSoil waterbiology.proteinSoil horizonlcsh:EcologyBiogeosciences
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Methylacidimicrobium thermophilum AP8, a Novel Methane- and Hydrogen-Oxidizing Bacterium Isolated From Volcanic Soil on Pantelleria Island, Italy

2021

The Favara Grande is a geothermal area located on Pantelleria Island, Italy. The area is characterized high temperatures in the top layer of the soil (60°C), low pH (3–5) and hydrothermal gas emissions mainly composed of carbon dioxide (CO2), methane (CH4), and hydrogen (H2). These geothermal features may provide a suitable niche for the growth of chemolithotrophic thermoacidophiles, including the lanthanide-dependent methanotrophs of the phylum Verrucomicrobia. In this study, we started enrichment cultures inoculated with soil of the Favara Grande at 50 and 60°C with CH4 as energy source and medium containing sufficient lanthanides at pH 3 and 5. From these cultures, a verrucomicrobial met…

Microbiology (medical)HydrogenaseMethanotrophMethane monooxygenaselcsh:QR1-502Methylacidimicrobium thermophilum AP8Settore BIO/19 - Microbiologia GeneraleMicrobiologylcsh:Microbiology03 medical and health sciencesVerrucomicrobiamethanotrophhydrogenaseOriginal Research030304 developmental biology0303 health sciencesbiologyMethanol dehydrogenaseStrain (chemistry)030306 microbiologyChemistryThermophileVerrucomicrobiabiology.organism_classificationEcological MicrobiologyEnvironmental chemistryacidophilicbiology.proteinEnergy sourceFrontiers in Microbiology
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Metagenome Assembled Genome of a Novel Verrucomicrobial Methanotroph From Pantelleria Island.

2021

Verrucomicrobial methanotrophs are a group of aerobic bacteria isolated from volcanic environments. They are acidophiles, characterized by the presence of a particulate methane monooxygenase (pMMO) and a XoxF-type methanol dehydrogenase (MDH). Metagenomic analysis of DNA extracted from the soil of Favara Grande, a geothermal area on Pantelleria Island, Italy, revealed the presence of two verrucomicrobial Metagenome Assembled Genomes (MAGs). One of these MAGs did not phylogenetically classify within any existing genus. After extensive analysis of the MAG, we propose the name of “Candidatus Methylacidithermus pantelleriae” PQ17 gen. nov. sp. nov. The MAG consisted of 2,466,655 bp, 71 contigs …

Microbiology (medical)MethanotrophbiologyMethanol dehydrogenaseMethane monooxygenaseChemistryAerobic bacteriaVerrucomicrobiabiology.organism_classificationGenomeMicrobiologyvolcanic soilQR1-502BiochemistryVerrucomicrobiaMetagenomicsEcological Microbiologybiology.proteinCandidatusacidophilicmethanotrophCa. Methylacidithermus pantelleriaeOriginal ResearchFrontiers in microbiology
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