Search results for "Shewanella"

showing 10 items of 11 documents

Numerical Taxonomy of Aerobic, Gram-negative Bacteria associated with Oysters and Surrounding Seawater of the Mediterranean Coast

1995

Abstract A numerical taxonomic study was performed on 245 strains of heterotrophic, aerobic, marine bacteria, plus 26 reference strains. The isolates were obtained from oysters and seawater sampled monthly over one year, by direct plating on Marine Agar. The strains were characterised by 93 morphological, biochemical, physiological and nutritional tests. Clustering yielded 46 phena at 0.60 S level (S J coefficient). Some could be identified as species of Alteromonas, Shewanella, Deleya, Flavobacterium, Oceanospirillum, Pseudomonas and marine Agrobacterium -like organisms, others were unidentified groups. Several phena seem to correspond to as yet undescribed taxa.

OysterbiologyZoologybiology.organism_classificationBivalviaApplied Microbiology and BiotechnologyMicrobiologyShewanellaMicrobiologyNumerical taxonomyMarine bacteriophagebiology.animalbacteriaAlteromonasEcology Evolution Behavior and SystematicsBacteriaFlavobacteriumSystematic and Applied Microbiology
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Electron transfer mechanism in Shewanella loihica PV-4 biofilms formed at graphite electrode

2012

Abstract Electron transfer mechanisms in Shewanella loihica PV-4 viable biofilms formed at graphite electrodes were investigated in potentiostat-controlled electrochemical cells poised at oxidative potentials (0.2 V vs. Ag/AgCl). Chronoamperometry (CA) showed a repeatable biofilm growth of S. loihica PV-4 on graphite electrode. CA, cyclic voltammetry (CV) and its first derivative shows that both direct electron transfer (DET) mediated electron transfer (MET) mechanism contributes to the overall anodic (oxidation) current. The maximum anodic current density recorded on graphite was 90 μA cm − 2 . Fluorescence emission spectra shows increased concentration of quinone derivatives and riboflavi…

ShewanellaElectroactive biofilmBioelectric Energy SourcesExtracellular Electron TransferRiboflavinInorganic chemistryBiophysicsElectrochemical cellElectron TransportElectron transferGraphite electrodeElectrochemistryGraphitePhysical and Theoretical ChemistryElectrodesMicroscopy ConfocalChemistryQuinonesBiofilmmediated electron transferElectrochemical TechniquesGeneral MedicineChronoamperometryAnodeSpectrometry FluorescenceShewanella loihica PV- 4Extracellular Electron Transfer; Shewanella loihica PV- 4; Electroactive biofilms; Graphite electrode; mediated electron transferBiofilmsMicroscopy Electron ScanningGraphiteDifferential pulse voltammetryCyclic voltammetryOxidation-ReductionBioelectrochemistry
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Isolation of Local Shewanella sp. Strain from Vezjolka River at Belgorod District in Belgorod Region, Russia

2019

BioremediationStrain (chemistry)BiologyIsolation (microbiology)Shewanella sp.MicrobiologyProceedings of the 1st International Symposium Innovations in Life Sciences (ISILS 2019)
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In vitro cytokine profile revealed differences from dorsal and ventral skin susceptibility to pathogen-probiotic interaction in gilthead seabream

2016

Skin is the first barrier of defense on fish, which is crucial to protection against different stressors, including pathogens. Skin samples obtained from dorsal and ventral part of Sparus aurata specimens were incubated with Photobacterium damselae subsp. piscicida (a pathogen for this fish species), with Shewanella putrefaciens Pdp11 (a probiotic bacteria isolated from healthy gilthead seabream skin) or with both bacteria. The gene expression profile of nine cytokines (il1b, tnfa, il6, il7, il8, il15, il18, il10 and tgfb) was studied by qPCR in all the skin samples. The present findings revealed different patterns of cytokine profile in dorsal and ventral skin of gilthead seabream, which c…

Fish Proteins0301 basic medicinemedicine.medical_treatmentGilthead seabream (Sparus aurata)Shewanella putrefaciensAquatic ScienceShewanella putrefaciensProbioticMicrobiologylaw.inventionFish Diseases03 medical and health sciencesProbioticlawmedicineAnimalsEnvironmental ChemistryCytokinePathogenSkinintegumentary systembiologyPathogenPhotobacteriumProbiotics04 agricultural and veterinary sciencesGeneral MedicinePhotobacteriumbiology.organism_classificationAnimal FeedSea BreamDiet030104 developmental biologyCytokinePhotobacterium damselae040102 fisheriesCytokines0401 agriculture forestry and fisheriesInterleukin 18Disease SusceptibilityGram-Negative Bacterial InfectionsBacteriaFish & Shellfish Immunology
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Whole-genome characterization of Shewanella algae strain SYT3 isolated from seawater reveals insight into hemolysis.

2018

Aim: To describe the genomic characteristics of seawater-borne hemolytic Shewanella algae and its resistance genes. Materials & methods: Whole genome sequence of S. algae SYT3 was determined using llumina MiSeq platform. Multiple-database-based analysis was performed to identify the genetic background of its hemolytic activity and the antibiotic resistance genes. Results: S. algae SYT3 possesses a homolog of the hly operon involved in the synthesis of hemolysin. We also identified candidate genes associated with resistance to β-lactam antibiotics (bla OXA-55) and fluoroquinolone (qnrA3). Conclusion: The study provides an insight into the hemolytic activity of S. algae. Our findings als…

0301 basic medicineMicrobiology (medical)DNA BacterialShewanellaOperon030106 microbiologyTaiwanShewanella algaeMicrobial Sensitivity TestsMicrobiologyGenomeHemolysisbeta-LactamasesMicrobiology03 medical and health sciencesHemolysin ProteinsAntibiotic resistanceAlgaeBacterial ProteinsRNA Ribosomal 16SDrug Resistance BacterialmedicineHumansSeawaterGenePhylogenyWhole genome sequencingbiologyWhole Genome SequencingChromosome Mappingbiology.organism_classificationmedicine.diseaseHemolysisAnti-Bacterial AgentsBacterial Typing TechniquesGenome BacterialFuture microbiology
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A single-chamber membraneless microbial fuel cell exposed to air using Shewanella putrefaciens

2016

Abstract Microbial Fuel Cells (MFCs) are bio-electrochemical devices which convert the chemical energy content of organic fuels into electricity, thanks to the ability of anode respiring bacteria to give electrons to the anode. This result is usually achieved under anaerobic conditions, obtained with a sealed anode chamber. Despite this, Shewanella oneidensis has been recognized by many authors to obtain the same results in presence of air. Furthermore, another member of the Pseudomonaceae family, Shewanella putrefaciens, has also shown the capability to catalyze the cathodic oxygen reduction. In this work the capability of S. putrefaciens to work under both anaerobic and micro-aerobic cond…

Microbial fuel cellMicrobial fuel cellHorizontal cathodeGeneral Chemical EngineeringShewanella putrefaciens02 engineering and technology010501 environmental sciencesShewanella putrefaciens01 natural sciencesCompact graphite cathodeAnalytical ChemistryCathodic protectionlaw.inventionlawElectrochemistryMembraneless MFCGraphiteShewanella oneidensis0105 earth and related environmental sciencesbiologyChemistrySettore ING-IND/27 - Chimica Industriale E Tecnologica021001 nanoscience & nanotechnologybiology.organism_classificationCathodeAnodeChemical energyChemical engineering0210 nano-technologyBiocathodeJournal of Electroanalytical Chemistry
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An outbreak ofShewanella putrefaciensgroup in wild eelsAnguilla anguillaL. favoured by hypoxic aquatic environments

2016

Microbiological analyses were conducted on wild eels from the L′Albufera Lake (Spain). A total of 174 individuals were collected in two surveys (i.e. year 2008 and autumn–winter 2014) among those caught by local fishermen into the lagoon. The prevalence of Shewanella putrefaciens group was 1.7% in 2008 and rose above 32% in 2014. It was due to an outbreak of shewanellosis that presented a morbidity rate of 64%. S. putrefaciens group strains were isolated as pure cultures from the sick eels that showed white ulcers surrounded by a reddish inflammation, damage of the mouth, extensive skin discoloration, exophthalmia, ascites and bad odour. The S. putrefaciens group was recovered from freshwat…

0301 basic medicineVeterinary medicineVeterinary (miscellaneous)Fresh WaterShewanella putrefaciensAquatic ScienceBiologyShewanella putrefaciensBody weightDisease OutbreaksFish Diseases03 medical and health sciencesAnimalsAnaerobiosisCumulative mortalityEcologyAquatic ecosystemMortality rateOutbreakHypoxia (environmental)04 agricultural and veterinary sciencesAnguillabiology.organism_classification030104 developmental biologySpain040102 fisheries16s rrna gene sequencing0401 agriculture forestry and fisheriesSeasonsGram-Negative Bacterial InfectionsJournal of Fish Diseases
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TarSynFlow, a workflow for bacterial genome comparisons that revealed genes putatively involved in the probiotic character of Shewanella putrefaciens…

2019

Probiotic microorganisms are of great interest in clinical, livestock and aquaculture. Knowledge of the genomic basis of probiotic characteristics can be a useful tool to understand why some strains can be pathogenic while others are probiotic in the same species. An automatized workflow called TarSynFlow (Targeted Synteny Workflow) has been then developed to compare finished or draft bacterial genomes based on a set of proteins. When used to analyze the finished genome of the probiotic strain Pdp11 ofShewanella putrefaciensand genome drafts from seven known non-probiotic strains of the same species obtained in this work, 15 genes were found exclusive of Pdp11. Their presence was confirmed …

Bioinformaticslcsh:MedicineMicrobiologiaGenomicsBacterial genome sizeShewanella putrefaciensBiologyShewanella putrefaciensGenomeMicrobiologySyntenyGeneral Biochemistry Genetics and Molecular BiologyCultured fishWorkflow03 medical and health sciencesPlasmidGene030304 developmental biologySyntenyGenetics0303 health sciences030306 microbiologyGeneral NeuroscienceProbioticslcsh:RGeneral MedicineGenomicsbiology.organism_classificationGenòmicaAquaculture Fisheries and Fish ScienceMobile genetic elementsGeneral Agricultural and Biological SciencesPeerJ
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Zinc oxide and indium tin oxide thin films for the growth and characterization ofShewanella loihicaPV-4 electroactive biofilms

2011

Transition metal oxides (TMO) electrodes provide a suitable platform for spectroscopy- and microscopy-based investigation of viable electroactive biofilms (EABs). Commercially available TMOs, such as indium titanium oxide (ITO), are produced from rare and expensive elements. Thus, there is a significant need to explore alternative technology to meet the demand. ZnO-based TMOs are low-cost and have excellent electrochemical properties. In this study, we report for the first time a model EAB of Shewanella loihica PV-4 on ZnO films deposited on perspex substrates via pulsed laser deposition (PLD). Commercially available ITO electrodes were also used for comparison. 480 Virulence Volume 2 Issue…

Microbiology (medical)ShewanellaBioelectric Energy SourcesBiofilmImmunologyTin Compoundschemistry.chemical_elementZincBiologyElectrochemistryMicrobiologyIndium tin oxideAmorphous solidInfectious DiseasesChemical engineeringchemistryBiofilmsElectrodeShewanella; BiofilmParasitologyZinc OxideThin filmElectrodesCurrent densitySheet resistanceVirulence
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Numerical Taxonomy of Pseudomonads Isolated from Water, Sediment and Eels

1992

Summary A numerical taxonomic study was performed on 129 pseudomonad isolates from aquatic environments. 67 out of 98 field strains were isolated from water and sediment samples from Albufera lake, a hypereutrophic lake near Valencia, and 31 strains came from an eel hatchery. 10 clusters were formed at 84% similarity level when the Sokal-Michener similarity coefficient was used. Five clusters were designated as Pseudomonas putida (16 strains), P. fluorescens biotype I (9 strains), P. pseudoalcaligenes (11 strains), P. stutzen (4 strains) and Shewanella putrefaciens (3 strains). A subcluster of 7 strains (out of 15) was ascribed to the species Xanthomonas maltophilia , while the other strain…

biologyShewanella putrefaciensbiology.organism_classificationApplied Microbiology and BiotechnologyMicrobiologyPseudomonas putidaMicrobiologyNumerical taxonomyXanthomonasBotanyPseudomonadalesTaxonomy (biology)Ecology Evolution Behavior and SystematicsBacteriaPseudomonadaceaeSystematic and Applied Microbiology
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