Search results for "Iode"

showing 10 items of 1284 documents

Taxonomic and functional diversity of atrazine‐degrading bacterial communities enriched from agrochemical factory soil

2010

Aims: To characterize atrazine-degrading potential of bacterial communities enriched from agrochemical factory soil by analysing diversity and organization of catabolic genes. Methods and Results: The bacterial communities enriched from three different sites of varying atrazine contamination mineralized 65–80% of 14C ring-labelled atrazine. The presence of trzN-atzBC-trzD, trzN-atzABC-trzD and trzN-atzABCDEF-trzD gene combinations was determined by PCR. In all enriched communities, trzN-atzBC genes were located on a 165-kb plasmid, while atzBC or atzC genes were located on separated plasmids. Quantitative PCR revealed that catabolic genes were present in up to 4% of the community. Restricti…

DNA BacterialATRAZINEDIVERSITYBACTERIAL COMMUNITYBIODEGRADATIONPolymerase Chain ReactionApplied Microbiology and BiotechnologyActinobacteriaMicrobiologySoil03 medical and health sciencesPlasmidATZ GENESSoil PollutantsRibosomal DNAGenePhylogenySoil MicrobiologyGene Library030304 developmental biology2. Zero hunger0303 health sciencesBacteriabiologyHerbicides030306 microbiologyBacteroidetesSequence Analysis DNAGeneral MedicineAtrazine ; Biodegradation ; Bacterial community ; Diversity ; atz genes ; trz genesTRZ GENESbiology.organism_classification16S ribosomal RNA[SDV.MP]Life Sciences [q-bio]/Microbiology and ParasitologyGenes Bacterial13. Climate actionProteobacteriaBacteriaPlasmidsBiotechnologyJournal of Applied Microbiology
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Genetic potential, diversity and activity of an atrazine-degrading community enriched from a herbicide factory effluent

2008

Aims:  To characterize an atrazine-degrading bacterial community enriched from the wastewater of a herbicide factory. Methods and Results:  The community mineralized 81·4 ± 1·9% of [14C-ring]atrazine and 31·0 ± 1·8% of [14C-ethyl]atrazine within 6 days of batch cultivation in mineral salts medium containing atrazine as the sole nitrogen source. Degradation activity of the community towards different chloro- and methylthio-substituted s-triazine compounds was also demonstrated. Restriction analysis of amplified 16S rDNA revealed high diversity of bacterial populations forming the community, with Pseudomonas species dominating in the clone library. Atrazine-degrading genetic potential of the …

DNA BacterialCOMMUNAUTE BACTERIENNEBioaugmentationWASTEWATERLibraryATRAZINEIndustrial WasteBACTERIAL COMMUNITYBIODEGRADATIONQUANTITATIVE PCRBiologyPolymerase Chain ReactionApplied Microbiology and Biotechnology03 medical and health scienceschemistry.chemical_compoundBiotransformationPseudomonasRNA Ribosomal 16STRZAtrazineGenetic variabilityFood science030304 developmental biology0303 health sciencesGenetic diversityBacteriaHerbicidesTriazines030306 microbiologybusiness.industryGeneral Medicine16S ribosomal RNAbiology.organism_classification6. Clean waterBiotechnology[SDV.MP]Life Sciences [q-bio]/Microbiology and Parasitologyatrazine ; biodegradation ; atz ; trz ; bacterial community ; wastewater ; quantitative PCRchemistryATZbusinessBacteriaPlasmidsBiotechnologyJournal of Applied Microbiology
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Molecular analysis of the catechol-degrading bacterial community in a coal wasteland heavily contaminated with PAHs

2010

International audience; A PCR-based molecular tool was developed to estimate the diversity of the catechol-degrading bacterial community in a coal wasteland heavily contaminated with PAHS. A degenerate primer pair specific to catA sequences was designed by multiple alignment of known sequences coding a key intermediate of the β-ketoadiapate pathway degrading catechol, namely catechol 1,2-dioxygenase. The specificity of this primer pair was assessed in 21 pure strains by PCR and sequencing. Comparison of the 16S rDNA and catA phylogenies revealed an absence of congruence between these two genes. The primer set was able to amplify catA sequences in DNA extracts from an industrial soil highly …

DNA BacterialEnvironmental Engineering[SDV]Life Sciences [q-bio]Health Toxicology and MutagenesisCatecholsIndustrial WasteBACTERIAL COMMUNITYActinobacteriaSOIL DNA03 medical and health sciencesPhylogeneticsCATHECOLProteobacteriaBotanySoil PollutantsEnvironmental ChemistryPolycyclic Aromatic HydrocarbonsWaste Management and Disposal030304 developmental biology0303 health sciencesMultiple sequence alignmentBacteriabiologyPhylogenetic tree030306 microbiologybiology.organism_classification16S ribosomal RNAPollutionActinobacteriaBiodegradation EnvironmentalCoalPCR[SDE]Environmental SciencesHorizontal gene transferBIODIVERSITYRestriction fragment length polymorphismPrimer (molecular biology)CAT A SEQUENCEJournal of Hazardous Materials
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Detection and organization of atrazine-degrading genetic potential of seventeen bacterial isolates belonging to divergent taxa indicate a recent comm…

2007

A collection of 17 atrazine-degrading bacteria isolated from soils was studied to determine the composition of the atrazine-degrading genetic potential (i.e. trzN, trzD and atz) and the presence of IS1071. The characterization of seven new atrazine-degrading bacteria revealed for the first time the trzN-atzBC gene composition in Gram-negative bacteria such as Sinorhizobium sp. or Polaromonas sp. Three main atrazine-degrading gene combinations (i) trzN– atzBC, (ii) atzABC– trzD and (iii) atzABCDEF were observed. The atz and trz genes were often located on plasmids, suggesting that plasmid conjugation could play an important role in their dispersion. In addition, the observation of these gene…

DNA BacterialGene Transfer HorizontalATRAZINEMolecular Sequence DataBIODEGRADATIONatrazine; insertion sequences; biodegradation; atz genes; trz genesBiologyMicrobiologyMicrobiologyEvolution MolecularTransposition (music)03 medical and health scienceschemistry.chemical_compoundPlasmidGram-Negative BacteriaATZ GENESGeneticsInsertion sequenceMolecular BiologyGeneSoil MicrobiologySEQUENCE D'INSERTION030304 developmental biologyRecombination GeneticGenetics0303 health sciencesINSERTION SEQUENCES030306 microbiologyCatabolismChromosomeSequence Analysis DNATRZ GENESbiology.organism_classification[SDV.MP]Life Sciences [q-bio]/Microbiology and ParasitologychemistryGenes BacterialDNA Transposable ElementsMetabolic Networks and PathwaysDNABacteriaPlasmids
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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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Heterotrophic microorganisms in deteriorated medieval wall paintings in southern Italian churches

2008

The Campania region in southern Italy is noted for its large number of churches that harbour invaluable frescoes, dated from the beginnings of the 4th up to the 13th century. The wall paintings represent an integral part of the monuments, and their deterioration constitutes a potentially significant loss for the world's cultural heritage. Heterotrophic microorganisms such as bacteria and mould can grow on the surface of paintings that contain a wide range of organic and inorganic constituents, and provide different ecological. niches that are exploited by a large variety of microbial. species. We isolated and identified the heterotrophic microorganisms found in the biodegraded medieval wall…

DNA BacterialIdentificationMedieval wall paintingMicroorganismMolecular Sequence DataBacillus cereusHeterotrophic microorganismDNA RibosomalMicrobiologyPaenibacillusGenusRNA Ribosomal 16SBotanyWall paintingDeteriorationDNA FungalPhylogenyBacillus (shape)BacteriabiologyActinomyceteBacillus pumilusFungiHeterotrophic ProcessesAlternariabiology.organism_classification16S ribosomal RNAHistory MedievalhumanitiesBiodeteriorationItalyPaintingsSettore AGR/16 - Microbiologia AgrariaMicrobiological Research
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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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Diversity of chlorophenol-degrading bacteria isolated from contaminated boreal groundwater

1999

Chlorophenol-degrading bacteria from a long-term polluted groundwater aquifer were characterized. All isolates degraded 2,4,6-trichlorophenol and 2,3,4,6-tetrachlorophenol at concentrations detected in the contaminated groundwater (10 mg 1(-1)). Pentachlorophenol was degraded by three isolates when present alone. In two gram-positive isolates, 2,3,4,6-tetrachlorophenol was required as an inducer for the degradation of pentachlorophenol. The gram-positive isolates were sensitive to pentachlorophenol, with an IC50 value of 5 mg/l. Isolates belonging to the Cytophaga/Flexibacter/Bacteroides phylum had IC50 values of 25 and 63 mg/l. Isolates belonging to alpha-, beta- and gamma-Proteobacteria g…

DNA BacterialPentachlorophenolfood.ingredientCaulobacterMolecular Sequence DataFresh WaterAquiferGram-Positive BacteriaBiochemistryMicrobiologyMicrobiology03 medical and health sciencesfoodRalstoniaRNA Ribosomal 16SGram-Negative BacteriaGeneticsMolecular BiologyPhylogeny030304 developmental biologyBase Composition0303 health sciencesgeographygeography.geographical_feature_categoryBacteriabiology030306 microbiologyPseudomonasNocardioidesGenetic VariationGeneral Medicinebiology.organism_classification6. Clean waterBiodegradation EnvironmentalEnvironmental chemistryWater MicrobiologyPolymorphism Restriction Fragment LengthWater Pollutants ChemicalBacteriaGroundwaterFlavobacteriumChlorophenolsArchives of Microbiology
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Impact of maize mucilage on atrazine mineralization andatzC abundance

2005

Soil was amended with maize mucilage, a major rhizodeposit, to study its role on the number of culturable soil micro-organisms, the structure of the bacterial community, atrazine mineralization and atzC abundance. The maximal percentage of atrazine mineralization was lower for mucilage-amended than for water-amended soil. Total culturable soil bacteria and 16S rDNA copy number, measured by RT-PCR, presented similar values and were not significantly (P < 0.05) different among treatments. Mucilage applied at a rate of 70 mu g C g(-1) dry soil day(-1) over two weeks did not modify the abundance of the total soil microflora. Global structure of soil bacterial communities revealed by RISA analys…

DNA Bacterial[SDV]Life Sciences [q-bio]AmendmentBiologyZea mayscomplex mixturesAmidohydrolaseschemistry.chemical_compoundBacterial ProteinsAdhesivesSoil PollutantsPoaceaeAtrazinereal-time pcrSoil MicrobiologymucilageBacteriaHerbicidesPesticide ResiduesBiodiversityGeneral MedicineMineralization (soil science)Biodegradation EnvironmentalMucilagechemistryAgronomyatzc geneInsect Science[SDE]Environmental SciencesSoil waterSoil PollutantsAgronomy and Crop ScienceSoil microbiologyatrazinePest Management Science
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Analysis of Infrared and Raman-Spectra of 116SnH4 in the 1900 cm-1 Region - Study of the 1000, 0010 Interacting States

1991

0022-2852

DOUBLE-RESONANCEFOURIER-TRANSFORM SPECTROSCOPYMETHANENU4 BANDSTETRAHEDRAL XY4 MOLECULESMICROWAVE DOUBLE-RESONANCESNH4DIODE-LASER SPECTROSCOPYRADIOFREQUENCY DOUBLE-RESONANCEFREQUENCYNU-4 BANDS
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