Search results for "Archaea"

showing 10 items of 102 documents

Genes and derived amino acid sequences of S-layer proteins from mesophilic, thermophilic, and extremely thermophilic methanococci

2002

Cells of methanococci are covered by a single layer of protein subunits (S-layer) in hexagonal arrangement, which are directly exposed to the environment and which cannot be stabilized by cellular components. We have isolated S-layer proteins from cells of Methanococcus vannielii ( T(opt.)=37 degrees C), Methanococcus thermolithotrophicus ( T(opt.)=65 degrees C), and Methanococcus jannaschii ( T(opt.)=85 degrees C). The primary structure of the S-layer proteins was determined by sequencing the corresponding genes. According to the predicted amino acid sequence, the molecular masses of the S-layer proteins of the different methanococci are in a small range between 59,064 and 60,547 Da. Compa…

MethanococcusArchaeal ProteinsMethanococcusMolecular Sequence DataMicrobiologySpecies SpecificityMethanococcalesAmino Acid SequencePeptide sequencechemistry.chemical_classificationSequence Homology Amino AcidbiologyThermophileTemperatureProtein primary structureGeneral Medicinebiology.organism_classificationMethanococciAmino acidchemistryBiochemistryGenes BacterialMolecular MedicineSequence AlignmentS-layerBacterial Outer Membrane ProteinsExtremophiles
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Ammonia removal during leach-bed acidification leads to optimized organic acid production from chicken manure

2020

This work demonstrates the suitability of nitrogen removal during anaerobic acidification in batch configuration for a more efficient pre-treatment of chicken manure prior to anaerobic digestion. High loading rates corresponding to a total nitrogen input between 6.3 and 9.5 g L−1 allowed successful suppression of methanogenic archaea. To eliminate nitrogen, NH3-stripping and MAP (magnesium ammonium phosphate hexahydrate) precipitation were compared. In spite of decreased cell quantities detected using qPCR, removal of nitrogen caused an increase in volatile fatty acid (VFA) formation from 13 to 19%. The highest nitrogen removal during acidification (up to 29%) was achieved with three consec…

Methanogenesis020209 energychemistry.chemical_element02 engineering and technologyAcidificationAmmoniachemistry.chemical_compoundBiogasAnaerobic digestion0202 electrical engineering electronic engineering information engineering0601 history and archaeologychemistry.chemical_classification060102 archaeologybiologyRenewable Energy Sustainability and the Environment06 humanities and the artsbiology.organism_classificationBiogas productionNitrogenChicken manureAnaerobic digestionchemistryEnvironmental chemistryChicken manureArchaeaOrganic acid
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Eubacteria and archaea communities in seven mesophile anaerobic digester plants in Germany

2015

Background Only a fraction of the microbial species used for anaerobic digestion in biogas production plants are methanogenic archaea. We have analyzed the taxonomic profiles of eubacteria and archaea, a set of chemical key parameters, and biogas production in samples from nine production plants in seven facilities in Thuringia, Germany, including co-digesters, leach-bed, and sewage sludge treatment plants. Reactors were sampled twice, at a 1-week interval, and three biological replicates were taken in each case. Results A complex taxonomic composition was found for both eubacteria and archaea, both of which strongly correlated with digester type. Plant-degrading Firmicutes as well as Bacte…

MethanogensRenewable Energy Sustainability and the EnvironmentFirmicutesBiogasMethanosarcinaManagement Monitoring Policy and LawBiologybiology.organism_classificationArchaeaApplied Microbiology and BiotechnologyMethanosaetaMicrobiologyEubacteriaAnaerobic digestionGeneral EnergyMethanoculleusSewage sludge treatmentFood scienceAnaerobic digestersSludgeResearch ArticleBiotechnologyArchaeaBiotechnology for Biofuels
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Geothermal Gases Shape the Microbial Community of the Volcanic Soil of Pantelleria, Italy

2020

The Favara Grande nature reserve on the volcanic island of Pantelleria (Italy) is known for its geothermal gas emissions and high soil temperatures. These volcanic soil ecosystems represent “hot spots” of greenhouse gas emissions. The unique community might be shaped by the hostile conditions in the ecosystem, and it is involved in the cycling of elements such as carbon, hydrogen, sulfur, and nitrogen. Our metagenome study revealed that most of the microorganisms in this extreme environment are only distantly related to cultivated bacteria. The results obtained profoundly increased the understanding of these natural hot spots of greenhouse gas production/degradation and will help to enrich …

MethanotrophPhysiologyMethanogenesisMicroorganismPopulationSettore BIO/19 - Microbiologia GeneraleBiochemistryMicrobiologyMethane03 medical and health scienceschemistry.chemical_compoundgeothermalGeneticsExtreme environmentmethanotropheducationMolecular BiologyEcology Evolution Behavior and Systematics030304 developmental biology0303 health scienceseducation.field_of_studymetagenomicsbiology030306 microbiologyApplied and Environmental Sciencemethanemethanogenesis15. Life on landbiology.organism_classificationEditor's PickQR1-502Computer Science ApplicationsMicrobial population biologychemistry13. Climate actionModeling and SimulationEnvironmental chemistryEcological MicrobiologyhydrogenEnvironmental scienceArchaeaResearch Article
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Microbial communities of the Mediterranean rocky shore: ecology and biotechnological potential of the sea‐land transition

2019

Microbial communities from harsh environments hold great promise as sources of biotechnologically relevant strains and compounds. In the present work, we have characterized the microorganisms from the supralittoral and splash zone in three different rocky locations of the Western Mediterranean coast, a tough environment characterized by high levels of irradiation and large temperature and salinity fluctuations. We have retrieved a complete view of the ecology and functional aspects of these communities and assessed the biotechnological potential of the cultivable microorganisms. All three locations displayed very similar taxonomic profiles, with the genus Rubrobacter and the families Xenoco…

Microbiological TechniquesMediterranean climatelcsh:BiotechnologyBioengineeringApplied Microbiology and BiotechnologyBiochemistrySupralittoral zoneAntioxidants03 medical and health sciencesRocky shoreAscomycotaMicrobial ecologylcsh:TP248.13-248.65Environmental MicrobiologyAnimals14. Life underwaterCaenorhabditis elegansRhodobacteraceaeResearch Articles030304 developmental biologyBiological Products0303 health sciencesBacteriabiologyMediterranean Region030306 microbiologyPhyllobacteriaceaeEcologyMicrobiota15. Life on landbiology.organism_classificationArchaeaSurvival Analysis13. Climate actionHalotoleranceResearch ArticleBiotechnologyArchaea
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Rapid isolation of single microbial cells from mixed natural and laboratory populations with the aid of a micromanipulator.

1999

In order to facilitate the isolation of pure cultures from natural habitats we have developed a method for the isolation of single microbial cell clones from a mixed population, e.g. the flora of the termite gut, with the aid of a modern micromanipulator. The separated single prokaryotic or eukaryotic cells were grown after transfer in culture media or they were used for single cell PCR. The micromanipulator was also applied for the removal of nuclei from protozoa, of which the SSU rDNA was directly amplified.

Microbiological TechniquesPopulationmedicine.disease_causeApplied Microbiology and BiotechnologyMicrobiologylaw.inventionMicrobiologyMicromanipulationlawmedicineAnimalseducationMicromanipulatorEcology Evolution Behavior and SystematicsPhylogenyeducation.field_of_studybiologyBacteriaEukaryotaMycoplasmabiology.organism_classificationIsolation (microbiology)ArchaeaMethanobrevibacterProtozoaBacteriaArchaeaSystematic and applied microbiology
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2015

Iron reduction in subseafloor sulfate-depleted and methane-rich marine sediments is currently a subject of interest in subsurface geomicrobiology. While iron reduction and microorganisms involved have been well studied in marine surface sediments, little is known about microorganisms responsible for iron reduction in deep methanic sediments. Here, we used quantitative PCR (Q-PCR)-based 16S rRNA gene copy numbers and pyrosequencing-based relative abundances of bacteria and archaea to investigate covariance between distinct microbial populations and specific geochemical profiles in the top 5 m of sediment cores from the Helgoland mud area, North Sea. We found that gene copy numbers of bacteri…

Microbiology (medical)EcologyGeomicrobiologyMicroorganismSediment15. Life on landBiologybiology.organism_classificationMicrobiologyMethanohalobium13. Climate actionAnaerobic oxidation of methaneDesulfobacteraceae14. Life underwaterMethanosaetaceaeArchaeaFrontiers in Microbiology
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Eukaryotes Are a Holophyletic Group of Polyphyletic Origin.

2020

Because of the polyphyletic origin of the eukaryotic monophylum, eukaryogenesis within prokaryotes is not comparable with mammal origin within paraphyletic reptiles. Both synapomorphies and plesiomorphies represent apomorphies and are indeed suitable for defining monophyletic (holophyletic and paraphyletic) groups. Alphaproteobacteria (Bacteria) and Asgard (Archaea) are the ancestors of LECA (the Last Eukaryotic Common Ancestor). The presence of ESPs in Asgard does not dispute the polyphyletic origin of eukaryotes ; it only further corroborates it. “Candidatus Prometheoarchaeum syntrophicum” is the closest relative to eukaryotes and the only Asgard with available microscopy data. This newly…

Microbiology (medical)ParaphylySymbiogenesisOpinionsymbiogenesisarchaeaEukaryomorphaEukaryomorpha archaea alphaproteobacteria eukaryogenesis lichens hybridization symbiogenesis paraphylyAlphaproteobacterialcsh:QR1-502alphaproteobacteriaBiologyeukaryogenesisbiology.organism_classificationMicrobiologylcsh:MicrobiologyEvolutionary biologyGroup (periodic table)PolyphylyparaphylyLichenlichenshybridizationArchaeaFrontiers in microbiology
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Substrate pathways and mechanisms of inhibition in the sulfur oxygenase reductase of Acidianus ambivalens

2011

Background: The sulfur oxygenase reductase (SOR) is the initial enzyme of the sulfur oxidation pathway in the thermoacidophilic Archaeon Acidianus ambivalens. The SOR catalyzes an oxygen-dependent sulfur disproportionation to H2S, sulfite and thiosulfate. The spherical, hollow, cytoplasmic enzyme is composed of 24 identical subunits with an active site pocket each comprising a mononuclear non-heme iron site and a cysteine persulfide. Substrate access and product exit occur via apolar chimney-like protrusions at the four-fold symmetry axes, via narrow polar pores at the three-fold symmetry axes and via narrow apolar pores within in each subunit. In order to investigate the function of the po…

Microbiology (medical)StereochemistrySulfur metabolismlcsh:QR1-502ReductaseMicrobiologylcsh:Microbiologychemistry.chemical_compoundOxidoreductaseStructural BiologySite-directed mutagenesisOriginal ResearchX-ray crystallographychemistry.chemical_classificationSite-directed mutagenesisbiologySulfur metabolismActive siteSubstrate (chemistry)ArchaeaEnzyme assaychemistryBiochemistryHyperthermophileIodoacetamidebiology.proteinFrontiers in Microbiology
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Beyond archaea: The table salt bacteriome

2021

Commercial table salt is a condiment with food preservative properties by decreasing water activity and increasing osmotic pressure. Salt is also a source of halophilic bacteria and archaea. In the present research, the diversity of halotolerant and halophilic microorganisms was studied in six commercial table salts by culture-dependent and culture-independent techniques. Three table salts were obtained from marine origins: Atlantic Ocean, Mediterranean (Ibiza Island), and Odiel marshes (supermarket marine salt). Other salts supplemented with mineral and nutritional ingredients were also used: Himalayan pink, Hawaiian black, and one with dried vegetables known as Viking salt. The results of…

Microbiology (medical)biologyGracilibacillusbiology.organism_classificationMicrobiologyQR1-502NatronomonasHalophile16S rRNA gene sequencing analysisHaloarculaBotanyHaloarchaeaHalobacillushalophilic bacteriaHalorubrumhalotolerant bacteriahaloarchaeaArchaeaOriginal Researchtable salt microbiome
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