Search results for "viable but nonculturable"

showing 9 items of 9 documents

Erwinia amylovora psychrotrophic adaptations: evidence of pathogenic potential and survival at temperate and low environmental temperatures

2017

The fire blight pathogenErwinia amylovoracan be considered a psychrotrophic bacterial species since it can grow at temperatures ranging from 4 °C to 37 °C, with an optimum of 28 °C. In many plant pathogens the expression of virulence determinants is restricted to a certain range of temperatures. In the case ofE. amylovora,temperatures above 18 °C are required for blossom blight epidemics under field conditions. Moreover, this bacterium is able to infect a variety of host tissues/organs apart from flowers, but it is still unknown how environmental temperatures, especially those below 18 °C, affect the pathogen ability to cause fire blight disease symptoms in such tissues/organs. There is als…

0301 basic medicineFire blight030106 microbiologylcsh:MedicineVirulenceSiderophoresBiologyErwiniaMicrobiologyGeneral Biochemistry Genetics and Molecular BiologyViable but nonculturableMicrobiologyVBNC03 medical and health sciencesBlightAgricultural SciencePathogenEcologyVirulenceGeneral Neurosciencelcsh:RBiofilmMotilityGeneral Medicinebiology.organism_classificationOxidative stressStarvationBiofilmsFire blightEPSGeneral Agricultural and Biological SciencesBacteriaPeerJ
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Survival Strategy of Erwinia amylovora against Copper: Induction of the Viable-but-Nonculturable State

2006

Copper compounds, widely used to control plant-pathogenic bacteria, have traditionally been employed against fire blight, caused by Erwinia amylovora. However, recent studies have shown that some phytopathogenic bacteria enter into the viable-but-nonculturable (VBNC) state in the presence of copper. To determine whether copper kills E. amylovora or induces the VBNC state, a mineral medium without copper or supplemented with 0.005, 0.01, or 0.05 mM Cu2+ was inoculated with 107 CFU/ml of this bacterium and monitored over 9 months. Total and viable cell counts were determined by epifluorescence microscopy using the LIVE/DEAD kit and by flow cytometry with 5-cyano-2,3-ditolyl tetrazolium chlori…

Colony Count MicrobialVirulencechemistry.chemical_elementErwiniaApplied Microbiology and BiotechnologyViable but nonculturableMicrobiologyPyruschemistry.chemical_compoundPlant MicrobiologyErwinia amylovoraPlant DiseasesVirulenceEcologybiologyTetrazolium chloridebiology.organism_classificationEnterobacteriaceaeCopperCulture MediaEriobotryachemistryMicroscopy Electron ScanningBacterial cellular morphologiesCopperBacteriaFood ScienceBiotechnologyApplied and Environmental Microbiology
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Survival of Erwinia amylovora in mature apple fruit calyces through the viable but nonculturable (VBNC) state

2009

Aims:  Survival of Erwinia amylovora, causal agent of fire blight in pome fruits and other rosaceous plants, was monitored inside mature apples calyces under some storage conditions utilized in fruit. Methods and Results:  Apple fruit calyces inoculated with two E. amylovora strains and their respective GFP-marked strains were maintained at 26° and 5°C, and the effect of copper treatment was assayed at 0·01 and 0·1 mmol l−1 CuSO4. In nontreated apples at 26°C, part of the population of E. amylovora survived in the ‘viable but nonculturable’ (VBNC) state, whereas at 5°C the majority of the population retained culturability. In copper-treated apples, the whole population adopted the VBNC stat…

Copper SulfateTime FactorsGreen Fluorescent ProteinsPopulationColony Count MicrobialErwiniaApplied Microbiology and BiotechnologyViable but nonculturableMicrobiologyPomeErwinia amylovoraeducationPlant Diseaseseducation.field_of_studyMicroscopy ConfocalbiologyInoculationfungiTemperaturefood and beveragesGeneral Medicinebiology.organism_classificationMalusFire blightbacteriaPEST analysisBacteriaBiotechnology
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Exploring new roles for the rpoS gene in the survival and virulence of the fire blight pathogen Erwinia amylovora

2014

Erwinia amylovora causes fire blight in economically important plants of the family Rosaceae. This bacterial pathogen spends part of its life cycle coping with starvation and other fluctuating environmental conditions. In many Gram-negative bacteria, starvation and other stress responses are regulated by the sigma factor RpoS. We obtained an E. amylovora rpoS mutant to explore the role of this gene in starvation responses and its potential implication in other processes not yet studied in this pathogen. Results showed that E. amylovora needs rpoS to develop normal starvation survival and viable but nonculturable (VBNC) responses. Furthermore, this gene contributed to stationary phase cross-…

MutantVirulenceSigma FactorErwiniaApplied Microbiology and BiotechnologyMicrobiologyViable but nonculturableMicrobiologyPyrusBacterial ProteinsOsmotic PressureSigma factorErwinia amylovoraRosaceaePathogenPlant Diseases2. Zero hungerVirulenceEcologybiologyAgriculturaPolysaccharides Bacterialbiology.organism_classificationOxidative StressEriobotryaHexosyltransferasesGenes BacterialMutationFire blightbacteriarpoSHeat-Shock Response
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Development of methods for the detection and quantification of spoilage microorganisms in wine : study of growing factors

2016

New practices used to elaborate wine lead to an increase of wine spoilage due to microorganisms. That is why, new technics have to be developed to quantify these microorganisms accurately, quickly and with low costs. The main wine spoilages are due to acetic acid bacteria (AAB) (A. aceti, A. pasteurianus, G. oxydans and Ga. liquefaciens) and Brettanomyces bruxellensis development. AAB transforms ethanol to acetic acid while B. bruxellensis transforms hydroxycinnamic acids to ethyl phenols (EP) (unpleasant odor molecules). In order to detect these wine spoilage microrganisms, flow cytometry coupled to fluorescent in situ hybridization has been assessed. No reproducible results have been deve…

PCR en temps réelCytométrie en fluxSO2Population effect[SDV.IDA] Life Sciences [q-bio]/Food engineeringReal time PCRBrettanomyces bruxellensisBactéries acétiquesEtat viable mais non cultivableViable but nonculturableAcetic acid bacteriaEffet populationFlow cytometry[SDV.MP] Life Sciences [q-bio]/Microbiology and Parasitology
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Characterization of the Viable but Nonculturable (VBNC) State in Saccharomyces cerevisiae

2013

The Viable But Non Culturable (VBNC) state has been thoroughly studied in bacteria. In contrast, it has received much less attention in other microorganisms. However, it has been suggested that various yeast species occurring in wine may enter in VBNC following sulfite stress.In order to provide conclusive evidences for the existence of a VBNC state in yeast, the ability of Saccharomyces cerevisiae to enter into a VBNC state by applying sulfite stress was investigated. Viable populations were monitored by flow cytometry while culturable populations were followed by plating on culture medium. Twenty-four hours after the application of the stress, the comparison between the culturable populat…

Saccharomyces cerevisiae ProteinsMicroorganismAnion Transport ProteinsSaccharomyces cerevisiaePopulationMutantlcsh:MedicineSaccharomyces cerevisiaeViable but nonculturableMicrobiologySulfiteslcsh:Scienceeducationeducation.field_of_studyMultidisciplinarybiologyCell Cyclelcsh:RHydrogen-Ion Concentrationbiology.organism_classificationYeastCulture MediaMolecular mechanismlcsh:QBacteriaResearch ArticlePLoS ONE
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Cellular, physiological, and molecular adaptive responses of Erwinia amylovora to starvation.

2013

Erwinia amylovora causes fire blight, a destructive disease of rosaceous plants distributed worldwide. This bacterium is a nonobligate pathogen able to survive outside the host under starvation conditions, allowing its spread by various means such as rainwater. We studied E. amylovora responses to starvation using water microcosms to mimic natural oligotrophy. Initially, survivability under optimal (28 °C) and suboptimal (20 °C) growth temperatures was compared. Starvation induced a loss of culturability much more pronounced at 28 °C than at 20 °C. Natural water microcosms at 20 °C were then used to characterize cellular, physiological, and molecular starvation responses of E. amylovora. Ch…

StarvationMicrobial ViabilityEcologybiologyVirulenceMotilityVirulenceGene ExpressionErwiniabiology.organism_classificationApplied Microbiology and BiotechnologyMicrobiologyAdaptation PhysiologicalViable but nonculturableMicrobiologyFire blightmedicineErwinia amylovoramedicine.symptomWater MicrobiologyPathogenBacteriaFEMS microbiology ecology
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Seasonal Variation of Ralstonia solanacearum Biovar 2 Populations in a Spanish River: Recovery of Stressed Cells at Low Temperatures

2005

ABSTRACT The presence of Ralstonia solanacearum biovar 2 in the watercourses of European countries is increasing, but little is known about its ecology in aquatic habitats. The detection of this pathogen in 2000 in one Spanish river led us to study its population density at different locations on the river over a period of 3 years. During 2000 and 2001, the pathogen was recovered at low densities (10 to 80 CFU/ml) by direct plating on modified SMSA agar from water samples at 14°C or higher, but its isolation was usually unsuccessful at temperatures below 9°C. To monitor the pathogen's abundance in winter, we used two liquid selective media for enrichment (at 29 and 35°C) and compared them b…

Veterinary medicinefood.ingredientBiovarPopulationEnzyme-Linked Immunosorbent AssayApplied Microbiology and BiotechnologyPopulation densityPolymerase Chain ReactionViable but nonculturablefoodPlant MicrobiologySolanum lycopersicumRiversBotanyAgareducationPathogenEcosystemPlant DiseasesRalstonia solanacearumeducation.field_of_studyEcologybiologyGenetic Variationbiology.organism_classificationCulture MediaCold TemperatureRalstonia solanacearumSeasonsBacteriaFood ScienceBiotechnology
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Characterization of the "viable but nonculturable" (VBNC) state in the wine spoilage yeast Brettanomyces.

2012

Although the viable but not culturable (VBNC) state has been studied in detail in bacteria, it has been suggested that maintenance of viability with loss of culturability also exists in eukaryotic cells, such as in the wine spoilage yeast Brettanomyces. To provide conclusive evidence for the existence of a VBNC state in this yeast, we investigated its capacity to become viable and nonculturable after sulfite stress, and its ability to recover culturability after stressor removal. Sulfite addition induced loss of culturability but maintenance of viability. Increasing the medium pH to decrease the concentration of toxic SO(2) allowed yeast cells to become culturable again, thus demonstrating …

volatile phenol[SDV.SA]Life Sciences [q-bio]/Agricultural sciencessynthetic wineBrettanomycesFood spoilageviable but nonculturableBrettanomyces bruxellensisBrettanomycesWineyeastMicrobiologyViable but nonculturableMicrobiology03 medical and health sciencesSulfur DioxideFood scienceproteomic030304 developmental biologyWine0303 health sciencesbiology030306 microbiologyflow cytometrybiology.organism_classificationYeastCulture MediaYeast in winemakingBrettanomyces bruxellensisBacteriaFood ScienceFood microbiology
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