Search results for "vulnificus"

showing 10 items of 99 documents

Evaluation of genotypic and phenotypic methods to distinguish clinical from environmental Vibrio vulnificus strains.

2009

ABSTRACT Vibrio vulnificus is a heterogeneous bacterial species that comprises virulent and avirulent strains from environmental and clinical sources that have been grouped into three biotypes. To validate the typing methods proposed to distinguish clinical from environmental isolates, we performed phenotypic (API 20E, API 20NE, and BIOLOG tests) and genetic (ribotyping and DNA polymorphism at several loci) studies with a large strain collection representing different biotypes, origins, and host ranges. No phenotypic method was useful for biotyping or grouping strains with regard to the origin of an isolate, and only the BIOLOG system was reliable for identifying the strains at the species …

GenotypePopulationVibrio vulnificusPublic Health MicrobiologyApplied Microbiology and BiotechnologyMicrobiologyRibotypingGenotypeEnvironmental MicrobiologyCluster AnalysisHumansTypingeducationGenotypingVibrio vulnificusGeneticseducation.field_of_studyPolymorphism GeneticEcologybiologybiology.organism_classification16S ribosomal RNADNA FingerprintingBacterial Typing TechniquesDNA profilingVibrio InfectionsBacteris patògensFood ScienceBiotechnology
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Genome-Wide SNP-Genotyping Array to Study the Evolution of the Human Pathogen Vibrio vulnificus Biotype 3

2014

Vibrio vulnificus is an aquatic bacterium and an important human pathogen. Strains Of V. vulnificus are classified into three different biotypes. The newly emerged biotype 3 has been found to be clonal and restricted to Israel. In the family Vibrionaceae , horizontal gene transfer is the main mechanism responsible for the emergence of new pathogen groups. To better understand the evolution of the bacterium, and in particular to trace the evolution of biotype 3, we performed genome-wide SNP genotyping of 254 clinical and environmental V. vulnificus isolates with worldwide distribution recovered over a 30-year period, representing all phylogeny groups. A custom single-nucleotide polymorphism …

GenotypingGenome evolutionlcsh:MedicineMarine and Aquatic SciencesGenome ViralVibrio vulnificusPolymorphism Single NucleotideMicrobiologyGenomeEvolution MolecularMolecular GeneticsGeneticslcsh:ScienceMolecular Biology TechniquesCladeVibrio vulnificusMolecular BiologyGenotypingComparative genomicsGeneticsEvolutionary BiologyBacterial EvolutionMultidisciplinarybiologyPhylogenetic treelcsh:REcology and Environmental SciencesBiology and Life SciencesAquatic Environmentsbiology.organism_classificationOrganismal EvolutionSNP genotypingHaplotypesBacteris patògensMicrobial EvolutionEarth Scienceslcsh:QPopulation GeneticsResearch ArticlePLoS ONE
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Role of the metalloprotease Vvp and the virulence plasmid pR99 of Vibrio vulnificus serovar E in surface colonization and fish virulence.

2007

The virulence for eels of Vibrio vulnificus biotype 2 serovar E (VSE) is conferred by a plasmid that codifies ability to survive in eel serum and cause septicaemia. To find out whether the plasmid and the selected chromosomal gene vvp plays a role in the initial steps of infection, the VSE strain CECT4999, the cured strain CT218 and the Vvp-deficient mutant CT201 (obtained in this work by allelic exchange) were used in colonization and virulence experiments. The eel avirulent biotype 1 (BT1) strain YJ016, whose genome has been sequenced, was used for comparative purposes. The global results demonstrate that the plasmid does not play a significant role in surface colonization because (i) CEC…

GillGillsendocrine systemanimal structuresVirulenceBacteremiaVibrio vulnificusMicrobiologyMicrobiologyFish DiseasesMicePlasmidAnimalsColonizationSerotypingVibrio vulnificusEcology Evolution Behavior and SystematicsbiologyVirulenceMucinbiology.organism_classificationAnguillaMucusComplementationVibrio InfectionsMutationMetalloproteasesPlasmidsEnvironmental microbiology
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A comparative epizootiologic study of the two fish-pathogenic serovars ofVibrio vulnificusbiotype 2

2010

Vibrio vulnificus biotype 2 is subdivided into two main serovars, serovar E, able to infect fish and humans, and serovar A, only virulent for fish. Serovar E emerged in 1976 as the causative agent of a haemorrhagic septicaemia (warm-water vibriosis) affecting eels cultured in brackish water. Serovar A emerged in 2000 in freshwater-cultured eels vaccinated against serovar E, causing warm-water vibriosis with fish showing a haemorrhagic intestine as the main differential sign. The aim of the present work was to compare the disease caused by both serovars in terms of transmission routes, portals of entry and host range. Results of bath, patch-contact and oral-anal challenges demonstrated that …

GillSerotypeSalinityendocrine systemanimal structuresfood.ingredientVeterinary (miscellaneous)VirulenceVibrio vulnificusAquatic ScienceMicrobiologyLethal Dose 50Fish DiseasesfoodAnimalsSerotypingSea bassVibrio vulnificusbiologyFishesTemperatureAquatic animalTilapiabiology.organism_classificationVibrio InfectionsHost-Pathogen InteractionsRainbow troutJournal of Fish Diseases
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An Enriched European Eel Transcriptome Sheds Light upon Host-Pathogen Interactions with Vibrio vulnificus.

2015

Infectious diseases are one of the principal bottlenecks for the European eel recovery. The aim of this study was to develop a new molecular tool to be used in host-pathogen interaction experiments in the eel. To this end, we first stimulated adult eels with different pathogen- associated molecular patterns (PAMPs), extracted RNA from the immune-related tissues and sequenced the transcriptome.We obtained more than 2x106 reads that were assembled and annotated into 45,067 new descriptions with a notable representation of novel transcripts related with pathogen recognition, signal transduction and the immune response. Then, we designed a DNA-microarray that was used to analyze the early immun…

Gillendocrine systemanimal structuresMutantVibrio infectionsMicrobiologialcsh:MedicineVibrio vulnificusBiologySignal transductionMicrobiologyTranscriptomeFish DiseasesImmune systemVibrio InfectionsAnimalsFish diseaseslcsh:SciencePathogenVibrio vulnificusMultidisciplinaryEelsHost-pathogen interactionslcsh:RWild typebiology.organism_classificationVibrio InfectionsBacteris patògensHost-Pathogen InteractionsImmunologylcsh:QTranscriptomeResearch ArticleSignal TransductionPLoS ONE
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Early steps in the European eel (Anguilla anguilla)–Vibrio vulnificus interaction in the gills: Role of the RtxA13 toxin

2015

Vibrio vulnificus is an aquatic gram-negative bacterium that causes a systemic disease in eels called warm-water vibriosis. Natural disease occurs via water born infection; bacteria attach to the gills (the main portal of entry) and spread to the internal organs through the bloodstream, provoking host death by haemorrhagic septicaemia. V.vulnificus produces a toxin called RtxA13 that hypothetically interferes with the eel immune system facilitating bacterial invasion and subsequent death by septic shock. The aim of this work was to study the early steps of warm-water vibriosis by analysing the expression of three marker mRNA transcripts related to pathogen recognition (tlr2 and tlr5) and in…

GillsGillendocrine systemanimal structuresHost-pathogen relationshipBacterial ToxinsVibrio vulnificusAquatic ScienceBiologymedicine.disease_causertxA13MicrobiologyFish DiseasesImmune systemmedicineAnimalsEnvironmental ChemistryRNA MessengerImmune responseVibrio vulnificusPathogenToxinRTX toxinGeneral MedicineAnguillabiology.organism_classificationAcquired immune systemTLR2Gene Expression RegulationEuropean eelVibrio InfectionsChemokinesFish & Shellfish Immunology
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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
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Isolation of a hemin and hemoglobin binding outer membrane protein of Vibrio vulnificus biotype 2 (serogroup E)

2006

The eel pathogen Vibrio vulnificus biotype 2 (serogroup E) is able to use hemin (Hm) or hemoglobin (Hb) as the sole iron source for growth in vitro and in vivo. The mechanism of heme-iron acquisition in this bacterium requires a direct interaction through binding sites on the bacterial surface (constitutive outer membrane proteins). Using affinity chromatography techniques, a unique protein of around 36.5 kDa was isolated from cell envelopes of E86 strain regardless of the affinity ligand used, hemoglobin or hemin. This protein was purified from both iron-enriched and iron-restricted grown cells. These results support the hypothesis that in this pathogen Hm- and Hb-iron acquisition is media…

Hemoglobin bindingIronBlotting WesternReceptors Cell SurfaceVibrio vulnificusBiologyMicrobiologyMicrobiologyHemoglobinschemistry.chemical_compoundAffinity chromatographyGeneticsBinding siteMolecular BiologyHemeVibrioSepharosebiology.organism_classificationchemistryBiochemistryHeminHemoglobinBacterial outer membraneBacterial Outer Membrane ProteinsChromatography LiquidProtein BindingHeminFEMS Microbiology Letters
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Toxic and enzymatic activities of Vibrio vulnificus biotype 2 with respect to host specificity

1996

In this work, the enzymatic activities of selected strains of biotypes 1 and 2 of Vabrio vulnificus were analyzed by using conventional methods and the API ZYM system. The toxic activities of extracellular products (ECPs) were further evaluated by in vitro and in vivo experiments. The ECPs of both biotypes (i) showed high-level hydrolytic activities, (ii) displayed cytotoxicity for fish cell lines, and (iii) were lethal for eels. Exotoxins seem to be proteinaceous since heat treatment of ECP samples destroyed their toxicity. Only biotype 2 strains were virulent for cels, suggesting that host specificity must be related to differences in cell surface properties. Infectivity trials with other…

Hot TemperatureBacterial ToxinsExotoxinsVirulenceVibrio vulnificusBiologyApplied Microbiology and BiotechnologyCell LineMicrobiologyfluids and secretionsSpecies SpecificityVibrionaceaeExtracellularAnimalsCytotoxicityVibrioInfectivityEelsCell DeathVirulenceEcologyHydrolysisFishesbiology.organism_classificationVibrioBacterial Typing TechniquesBacteriaResearch ArticleFood ScienceBiotechnologyApplied and Environmental Microbiology
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Host–pathogen interactions in Vibrio vulnificus: responses of monocytes and vascular endothelial cells to live bacteria

2015

ABSTRACT  Aim: To demonstrate that Vibrio vulnificus, a sepsis-related aquatic pathogen, can provoke a strong pro-inflammatory reaction in blood-associated target cells. Materials & methods: We selected two strains of the two main phylogenetic lineages, two human cell lines, monocytes and vascular endothelial cells and designed an in vitro infection model simulating early septicemia. Results: Both strains caused a strong cell-specific pro-inflammatory response and produced a high degree of cell damage that ended with death by lysis (endothelial cells) or apoptosis/lysis (monocytes). The interaction with endothelial cells was stronger than expected and significantly different for both l…

InflammationMicrobiology (medical)LysisbiologyGene Expression ProfilingEndothelial CellsVibrio vulnificusbiology.organism_classificationmedicine.diseaseMicrobiologyVirologyMonocytesIn vitroMicrobiologySepsisStress PhysiologicalApoptosisHost-Pathogen InteractionsmedicineHumansVibrio vulnificusPathogenCell damageCells CulturedBacteriaFuture Microbiology
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