Search results for "Sphingomonad"

showing 7 items of 7 documents

Resource availability and competition shape the evolution of survival and growth ability in a bacterial community

2013

Resource availability is one of the main factors determining the ecological dynamics of populations or species. Fluctuations in resource availability can increase or decrease the intensity of resource competition. Resource availability and competition can also cause evolutionary changes in life-history traits. We studied how community structure and resource fluctuations affect the evolution of fitness related traits using a two-species bacterial model system. Replicated populations of Serratia marcescens (copiotroph) and Novosophingobium capsulatum (oligotroph) were reared alone or together in environments with intergenerational, pulsed resource renewal. The comparison of ancestral and evol…

0106 biological sciencesecological nichesBACTERIAL BIOFILMSResource (biology)media_common.quotation_subjectScienceAdaptation BiologicalBiologyco-evolutionEnvironment010603 evolutionary biology01 natural sciencesCompetition (biology)Bacterial evolution03 medical and health sciencesSpecies SpecificityAdaptive radiationCopiotrophSerratia marcescens030304 developmental biologymedia_commonEcological niche0303 health sciencesMultidisciplinaryEcologyMicrobiotaQCommunity structureRInterspecific competitionbiology.organism_classificationBiological EvolutionSurvival AnalysisSphingomonadaceaeSerratia marcescens1181 Ecology evolutionary biologyLinear ModelsMedicineMicrobial Interactionsta1181competitionResearch ArticlePLOS ONE
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Successful aerobic bioremediation of groundwater contaminated with higher chlorinated phenols by indigenous degrader bacteria

2018

The xenobiotic priority pollutant pentachlorophenol has been used as a timber preservative in a polychlorophenol bulk synthesis product containing also tetrachlorophenol and trichlorophenol. Highly soluble chlorophenol salts have leaked into groundwater, causing severe contamination of large aquifers. Natural attenuation of higher-chlorinated phenols (HCPs: pentachlorophenol + tetrachlorophenol) at historically polluted sites has been inefficient, but a 4-year full scale in situ biostimulation of a chlorophenol-contaminated aquifer by circulation and re-infiltration of aerated groundwater was remarkably successful: pentachlorophenol decreased from 400 μg L−1 to <1 μg L−1 and tetrachlorophen…

0301 basic medicine246-TRICHLOROPHENOL DEGRADATIONTrichlorophenolDIVERSITYIn situ bioremediation010501 environmental sciences01 natural sciencesbiologinen puhdistusbakteeritBiostimulationchemistry.chemical_compoundQuantitative PCRpentachlorophenol hydroxylaseGroundwaterWaste Management and DisposalPENTACHLOROPHENOLWater Science and Technology2. Zero hungerpcpB geneEcological ModelingIon PGM amplicon sequencingin situ bioremediationContaminationPollutionAerobiosis6. Clean waterBiodegradation EnvironmentalEnvironmental chemistryPentachlorophenol hydroxylaseChlorophenolsEnvironmental Engineeringta1172030106 microbiologySphingomonas sensu latoMICROBIAL-DEGRADATION03 medical and health sciencesBioremediationbioremediationSPHINGOBIUM-CHLOROPHENOLICUMkloorifenolitta219Microbial biodegradationgeneBOREAL GROUNDWATER1172 Environmental sciences0105 earth and related environmental sciencesCivil and Structural EngineeringChlorophenolpohjavesiBacteriaorganic chemicalsion PGM amplicon sequencingSPHINGOMONADSEVOLUTIONPentachlorophenolSOILSchemistryGenes Bacterial13. Climate actionquantitative PCREnvironmental scienceWater Pollutants ChemicalGroundwater
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Active and secreted IgA-coated bacterial fractions from the human gut reveal an under-represented microbiota core

2013

AbstractHost-associated microbiota varies in distribution depending on the body area inhabited. Gut microbes are known to interact with the human immune system, maintaining gut homoeostasis. Thus, we studied whether secreted-IgA (S-IgA) coat specific microbial taxa without inducing strong immune responses. To do so, we fractionated gut microbiota by flow cytometry. We found that active and S-IgA-coated bacterial fractions were characterized by a higher diversity than those observed in raw faecal suspensions. A long-tail effect was observed in family distribution, revealing that rare bacteria represent up to 20% of total diversity. While Firmicutes was the most abundant phylum, the majority …

AdultMaleSequence analysisFirmicutesGut floraArticleMicrobiologyYoung AdultImmune systemDNA Barcoding TaxonomicHumansMultidisciplinaryBacteriabiologyPhylumMicrobiotaComputational BiologyBiodiversitySequence Analysis DNAbiology.organism_classificationImmunoglobulin AGastrointestinal TractSphingomonadaceaeMetagenomicsMetagenomeFemaleBacteriaScientific Reports
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Sphingobium aromaticiconvertens sp. nov., a xenobiotic-compound-degrading bacterium from polluted river sediment.

2007

A bacterial strain capable of degrading some monochlorinated dibenzofurans, designated RW16T, was isolated from aerobic River Elbe sediments. The strain was characterized based on 16S rRNA gene sequence analysis, DNA G+C content, physiological characteristics, polyamines, ubiquinone and polar lipid pattern and fatty acid composition. This analysis revealed that strain RW16T represents a novel species of the genus Sphingobium. The DNA G+C content of strain RW16T, 60.7 mol%, is the lowest yet reported for the genus. 16S rRNA gene sequence analysis placed strain RW16T as an outlier in the genus Sphingobium. The name Sphingobium aromaticiconvertens sp. nov. is proposed for this dibenzofuran-min…

DNA BacterialGeologic SedimentsMolecular Sequence DataMicrobiologyDNA RibosomalMicrobiologychemistry.chemical_compoundRiversGermanyRNA Ribosomal 16SSequence Homology Nucleic AcidSphingobium aromaticiconvertensPolyaminesWater Pollution ChemicalEcology Evolution Behavior and SystematicsPhospholipidsPhylogenyBenzofuransBase CompositionRiver sedimentbiologyEcologyFatty AcidsQuinonesGenes rRNAGeneral MedicineSequence Analysis DNABiodegradationDibenzofurans Polychlorinated16S ribosomal RNAbiology.organism_classificationBacterial Typing TechniquesSphingomonadaceaeRNA BacterialchemistryCarbohydrate MetabolismXenobioticGenus SphingobiumDNABacteriaInternational journal of systematic and evolutionary microbiology
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Novosphingobium lentum sp. nov., a psychrotolerant bacterium from a polychlorophenol bioremediation process

2005

A polychlorophenol-degrading strain, designated MT1T, and three MT1-like strains, MT101, MT103 and MT104, were isolated from a cold (4–8 °C) fluidized-bed process treating chlorophenol-contaminated groundwater in southern Finland. The organisms were Gram-negative, rod-shaped, catalase-positive, non-spore-forming and non-motile. Phylogenetic analysis based on 16S rRNA gene sequences indicated that the strains belonged to the α-4 subclass of the Proteobacteria and were members of the genus Novosphingobium. The highest 16S rRNA gene sequence similarity observed for these strains was 96·5 % with the type strains of Novosphingobium hassiacum, Novosphingobium aromaticivorans and Novosphingobium s…

DNA BacterialNovosphingobiumSequence analysisMolecular Sequence DataFresh WaterNovosphingobium lentummedicine.disease_causeDNA RibosomalMicrobiologyMicrobiologyNovosphingobium hassiacumRNA Ribosomal 16SmedicineFinlandPhylogenyEcology Evolution Behavior and SystematicsbiologyFatty AcidsGenes rRNASequence Analysis DNAGeneral MedicineRibosomal RNAbiology.organism_classification16S ribosomal RNABacterial Typing TechniquesCold TemperatureSphingomonadaceaeSphingomonadaceaeBiodegradation EnvironmentalProteobacteriaWater Pollutants ChemicalChlorophenolsInternational Journal of Systematic and Evolutionary Microbiology
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Fine stratification of microbial communities through a metagenomic profile of the photic zone

2017

ABSTRACTMost marine metagenomic studies of the marine photic zone analyze only samples taken at one or two depths. However, when the water column is stratified, physicochemical parameters change dramatically over relatively short depth intervals. We sampled the photic water column every 15m depth at a single point of an off-shore Mediterranean site during a period of strong stratification (early autumn) to evaluate the effects of small depth increases on the microbiome. Using genomic assembly and metagenomic read recruitment, we found major shifts in the community structure over small variations of depth, with most microbes showing a distribution limited to layers approximately 30 meters th…

Mediterranean climateSphingomonadaceaePaleontologyWater columnbiologyMetagenomicsCommunity structureStratification (water)Photic zoneMicrobiomebiology.organism_classification
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Complete sequencing of Novosphingobium sp. PP1Y reveals a biotechnologically meaningful metabolic pattern.

2014

Background Novosphingobium sp. strain PP1Y is a marine α-proteobacterium adapted to grow at the water/fuel oil interface. It exploits the aromatic fraction of fuel oils as a carbon and energy source. PP1Y is able to grow on a wide range of mono-, poly- and heterocyclic aromatic hydrocarbons. Here, we report the complete functional annotation of the whole Novosphingobium genome. Results PP1Y genome analysis and its comparison with other Sphingomonadal genomes has yielded novel insights into the molecular basis of PP1Y’s phenotypic traits, such as its peculiar ability to encapsulate and degrade the aromatic fraction of fuel oils. In particular, we have identified and dissected several highly …

NovosphingobiumSphingomonadDe novo sequencing; Novosphingobium sp. PP1Y; Sphingomonads; Aromatic pollutant compounds/bioremediationAromatic pollutant compoundComputational biologyNovosphingobium sp. PP1YAromatic pollutant compounds/bioremediationGenomeSphingomonadsDNA sequencingDe novo sequencingbioremediationNext generation sequencingGeneticsPhylogenyWhole genome sequencingGeneticschemistry.chemical_classificationbiologyHigh-Throughput Nucleotide SequencingQuorum SensingSequence Analysis DNAbiology.organism_classificationSphingomonadaceaeSphingomonadaceaeQuorum sensingBiodegradation EnvironmentalchemistryGenes BacterialEnergy sourceAromatic hydrocarbonMetabolic Networks and PathwaysResearch ArticleBiotechnology
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