Search results for " Biodegradation"

showing 10 items of 46 documents

The bioremediation potential of the Priolo Harbour (SR, Italy): isolation, identification and catabolic ability of hydrocarbonoclastic bacteria

2013

The petrochemical site of Priolo-Augusta-Melilli (Sicily, Italy), is a Site of National Interest (SIN) due to high levels of contamination of the coastline and its remediation is urgently needed. Successful remediation strategies relying on the catabolic potential of marine hydrocarbonoclastic bacteria (HCB) have been described. HCB are specialised hydrocarbon (HC)-degrading marine bacteria that use HC almost exclusively as unique carbon and energy source and become dominant in oil-impacted environments. In order to identify the key hydrocarbon degraders and explore the natural bioremediation potential of the contaminated area, sediment cores and sea water were collected inside the Priolo H…

Bioremediation marine pollution Biodegradation Hydrocarbons
researchProduct

Microbes and Persistent Organic Pollutants in the Marine Environment

2020

Marine pollution has increased reaching the entire marine environment, from the surface to the deepest sediment, and has become more concerning in the last 70 years. Persistent organic pollutants (POPs) are a fraction of ocean waste that includes, among the others, polycyclic aromatic hydrocarbons (PAHs) and plastic polymers. These chemicals have an extremely long half-life, and (bio)accumulate and damage the marine flora and fauna, and, ultimately, human health. Some organisms have evolved enzymes to attack POPs in the environment and transform them into biomass and CO2. Several microorganisms degrade many POPs in relatively short time. A wide variety of bacteria has been isolated with dif…

PollutantEnvironmental EngineeringbiologyEcological ModelingMicroorganismSedimentBiomass010501 environmental sciencesBiodegradationPlastispherebiology.organism_classification01 natural sciencesPollutionMarine pollutionPAHsMarine biodegradersEnvironmental chemistryEnvironmental ChemistryEnvironmental scienceMicrobial biodegradationPOPsBacteria0105 earth and related environmental sciencesWater Science and TechnologyBioplastics
researchProduct

Genome Sequence of Rhodococcus sp. Strain BCP1, a Biodegrader of Alkanes and Chlorinated Compounds

2013

Rhodococcus sp. strain BCP1 (DSM 44980) co-metabolizes chlorinated compounds and mineralizes a broad range of alkanes being highly tolerant to these toxic chemicals. Here, we present the high-quality draft genome sequence of strain BCP1 consisting of 6,231,823 bp, with a G+C content of 70.4%, 5,902 protein-coding genes, and 58 RNAs genes. Rhodococcus genus comprises Gram-positive, non-sporulating, aerobic bacteria that are widely distributed in the environment (1). Rhodococcus sp. strain BCP1 (formerly: Rhodococcus aetherovorans strain BCP1, DSM 44980) was selected from an aerobic butane-utilizing consortium as the prevailing isolate able to co-metabolize chloroform, vinyl chloride and tric…

Whole genome sequencingRHODOCOCCUSRhodococcus genome sequencingStrain (chemistry)StereochemistryGENOME SEQUENCERNABiologyBiodegradationBIO/19 - MICROBIOLOGIA GENERALEGenomeCHLORINATED SOLVENTSMicrobiologynot availableN-ALKANESGeneticsProkaryotesMicrobial biodegradationMolecular BiologyGeneRhodococcus sp.Genome Announcements
researchProduct

Kinetics of vinyl acetate biodegradation by Pseudomonas fluorescens PCM 2123

2018

Abstract The microbial degradation of vinyl acetate (VA) by Pseudomonas fluorescens PCM 2123 strain was studied in both batch and continuous modes. The purpose of the experiments was to determine the kinetic model of the cell growth and biodegradation rate of vinyl acetate (VA), which was the sole carbon and energy source for tested microorganisms. The experiments, carried out in a batch reactor for several initial concentrations of growth substrate in the liquid phase ranging from 18.6 to 373 gsubstrate·m−3 (gs·m−3) made it possible to choose the kinetic model and to estimate its constants. The Haldane inhibitory model with the values of constants: μm = 0.1202 h−1, KS = 17.195 gs·m−3, Ki =…

0301 basic medicineEnvironmental Engineeringbiology030106 microbiologyKineticsPseudomonasPseudomonas fluorescens010501 environmental sciencesBiodegradationbiology.organism_classification01 natural sciencesbatch and continuous cultures03 medical and health scienceschemistry.chemical_compoundchemistrykineticsPseudomonasVinyl acetateBioreactorvinyl acetateEnvironmental ChemistryMicrobial biodegradation0105 earth and related environmental sciencesNuclear chemistryvinyl acetate; Pseudomonas; kinetics; batch and continuous cultures
researchProduct

Phosphonate degradation by Spirulina strains: cyanobacterial biofilters for the removal of anticorrosive polyphosphonates from wastewater

2011

The ability of Spirulina spp. to metabolize the recalcitrant xenobiotic Dequest 2054(®) [hexamethylenediamine-N,N,N',N'-tetrakis(methylphosphonic acid)], a CaSO(4) inhibitor used for boiler treatment and reverse osmosis desalination, was investigated. The compound served as sole source of phosphorus, but not of nitrogen, for cyanobacterial growth. In vivo utilization was followed by (31)P NMR analysis. The disappearance of the polyphosphonate proceeded only with actively dividing cells, and no release of inorganic phosphate was evident. However, no difference was found between P-starved and P-fed cultures. Maximal utilization reached 1.0 ± 0.2 mmoll(-1), corresponding to 0.56 ± 0.11 mmol g(…

Magnetic Resonance SpectroscopyOrganophosphonatesBioengineeringBiologyCyanobacteriaApplied Microbiology and BiotechnologyBiochemistryWaste Disposal FluidXenobioticschemistry.chemical_compoundBioremediationOrganophosphorus CompoundsbioremediationSpirulina31P NMR31 P NMRpolyphosphonateSpirulina spp.Methylphosphonic acidChromatographySpirulina sppBiodegradationwastewater treatmentBiodegradation Environmentalxenobiotic biodegradationchemistryBiochemistryWastewaterBiofilterpolyphosphonate; xenobiotic biodegradation; 31P NMR; Spirulina spp.; wastewater treatment; bioremediationSewage treatmentXenobioticFiltrationBiotechnologyWaste disposal
researchProduct

Transmission to Eels, Portals of Entry, and Putative Reservoirs of Vibrio vulnificus Serovar E (Biotype 2)

2001

ABSTRACT Vibrio vulnificus serovar E (formerly biotype 2) is the etiologic agent that is responsible for the main infectious disease affecting farmed eels. Although the pathogen can theoretically use water as a vehicle for disease transmission, it has not been isolated from tank water during epizootics to date. In this work, the mode of transmission of the disease to healthy eels, the portals of entry of the pathogen into fish, and their putative reservoirs have been investigated by means of laboratory and field experiments. Results of the experiments of direct and indirect host-to-host transmission, patch contact challenges, and oral-anal intubations suggest that water is the prime vehicle…

GillsSerotypeDisease reservoirVibrio vulnificusBiologyApplied Microbiology and BiotechnologyMicrobiologyFish DiseasesVibrionaceaeVibrio InfectionsAnimalsEnvironmental Microbiology and BiodegradationPathogenDisease ReservoirsVibrioEcologyOutbreakAnguillabiology.organism_classificationVirologyVibrioBiofilmsVibrio InfectionsMicroscopy Electron ScanningWater MicrobiologyFood ScienceBiotechnologyApplied and Environmental Microbiology
researchProduct

Plant diversity enhances the natural attenuation of polycyclic aromatic compounds (PAHs and oxygenated PAHs) in grassland soils

2019

Increasing plant species richness stimulates microbial activity in soil, which might favor biodegradation of polycyclic aromatic compounds (PACs). To explore the relationship between plant community composition and PACs in grassland soils (Fluvisols exposed to an urban atmosphere), we determined the concentrations of 29 polycyclic aromatic hydrocarbons (PAHs) and 15 oxygenated PAHs (OPAHs) in topsoils of 80 plots of a grassland biodiversity experiment. The plots included different levels of plant species richness (1, 2, 4, 8, 16, 60 species) and 1–4 plant functional groups (grasses, small herbs, tall herbs, and legumes) in a randomized block design. The concentrations (ng g−1) of ∑29PAHs an…

Soil ScienceAboveground-belowground interactionscomplex mixturesMicrobiologyBiodiversity-ecosystem functionchemistry.chemical_compoundSoil healthMicrobial biodegradation2. Zero hungerSoil healthBiomass (ecology)Microbial degradationOpahbiologyAcenaphthenefood and beveragesPlant community04 agricultural and veterinary sciences15. Life on landbiology.organism_classificationPhytoremediationchemistryPlant diversityEnvironmental chemistryinternationalSoil water040103 agronomy & agriculture0401 agriculture forestry and fisheriesSpecies richnessSoil Biology & Biochemistry
researchProduct

Effects of alternative electron acceptors on the activity and community structure of methane-producing and consuming microbes in the sediments of two…

2017

The role of anaerobic CH4 oxidation in controlling lake sediment CH4 emissions remains unclear. Therefore, we tested how relevant EAs (SO42−, NO3−, Fe3+, Mn4+, O2) affect CH4 production and oxidation in the sediments of two shallow boreal lakes. The changes induced to microbial communities by the addition of Fe3+ and Mn4+ were studied using next-generation sequencing targeting the 16S rRNA and methyl-coenzyme M reductase (mcrA) genes and mcrA transcripts. Putative anaerobic CH4-oxidizing archaea (ANME-2D) and bacteria (NC 10) were scarce (up to 3.4% and 0.5% of archaeal and bacterial 16S rRNA genes, respectively), likely due to the low environmental stability associated with shallow depths.…

0301 basic medicineGeologic SedimentsMicroorganism116 Chemical sciencessedimentitApplied Microbiology and BiotechnologyRNA Ribosomal 16SMagnesiummikrobitoksidantitchemistry.chemical_classificationoxidantsEcologybiologyEcologymethane oxidationsedimentshapettuminenmethanogenesismcrAEnvironmental chemistrymicrobesOxidoreductasesMethaneOxidation-ReductionoxidationMethanogenesisIronta1172030106 microbiologyElectronsMethanobacteriajärvetmetaaniMicrobiology03 medical and health sciencesOrganic matter16S rRNAMicrobial biodegradationlakeBacteriata1183Carbon Dioxidebiology.organism_classificationArchaeaLakessedimentchemistry13. Climate actionAnaerobic oxidation of methaneBacteriaArchaeaFEMS Microbiology Ecology
researchProduct

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
researchProduct

Direct chromatographic study of the enantioselective biodegradation of ibuprofen and ketoprofen by an activated sludge

2018

[EN] The quantification of the enantiomeric fraction (EF) during the biodegradation process is essential for environmental risk assessment. In this paper the enantioselective biodegradation of ibuprofen, IBU, and ketoprofen, KET, two of the drugs most consumed, was evaluated. Biodegradation experiments were performed in batch mode using a minimal salts medium inoculated with an activated sludge (collected from a Valencian Waste Water Treatment Plant) and supplemented with the racemate of each compound. The inoculum activity was verified using fluoxetine as reference compound. The experimental conditions used (analyte concentration and volume of inoculum) were chosen according to OECD guidel…

KetoprofenAnalyteCalibration curveIbuprofenFraction (chemistry)Wastewater010501 environmental sciences01 natural sciencesBiochemistryAnalytical ChemistryPeak area based estimatesEnantioselective biodegradationmedicineChromatography High Pressure Liquid0105 earth and related environmental sciencesChromatographySewageChemistryBatch experiment010401 analytical chemistryOrganic ChemistryStereoisomerismGeneral MedicineBiodegradationIbuprofenChiral separation0104 chemical sciencesKineticsBiodegradation EnvironmentalActivated sludgeKetoprofenCalibrationEnantiomermedicine.drugJournal of Chromatography A
researchProduct