Search results for "Pseudomonas corrugata"

showing 10 items of 11 documents

Role of secondary metabolites in the biocontrol activity of Pseudomonas corrugata and Pseudomonas mediterranea

2017

In this study, the Pseudomonas corrugata strain CFBP 5454 and the P. mediterranea strain CFBP 5447 were shown to produce diffusible compounds that inhibit the in vitro growth of plant pathogenic fungi and bacteria and antifungal volatile compounds. In addition, both bacterial strains were found to produce cyanide. Mutant derivatives in LuxR transcriptional regulators, i.e. P. corrugata GL2 (pcoR mutant) and GLRFIA (rfiA mutant), and P. mediterranea PSMER (pmeR mutant) and PSRFIA (rfiA mutant) impaired in cyclic lipopeptide (CLP) production, showed a diffusible compound-mediated reduced activity, depending on the biocontrol strain, challenge microorganism and culture medium. The volatile com…

0301 basic medicineCyclic lipopeptidPseudomonas mediterranea030106 microbiologyMutantHydrogen cyanideeHydrogen cyanidePlant ScienceAntimicrobial activityHorticulturePseudomonaMicrobiology03 medical and health scienceschemistry.chemical_compoundPseudomonasBotrytis cinereabiologyLuxR transcriptional regulatorPseudomonasStructural geneSettore AGR/12 - Patologia Vegetalebiology.organism_classificationAntimicrobial activity; Cyclic lipopeptid; eHydrogen cyanide; LuxR transcriptional regulator; PseudomonasCyclic lipopeptidePseudomonas corrugataBiochemistrychemistryHydrogen cyanideAgronomy and Crop ScienceBacteriaEuropean Journal of Plant Pathology
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The LuxR Regulators PcoR and RfiA Co-regulate Antimicrobial Peptide and Alginate Production in Pseudomonas corrugata

2018

Cyclic lipopeptides (CLPs) are considered as some of the most important secondary metabolites in different plant-associated bacteria, thanks to their antimicrobial, cytotoxic, and surfactant properties. In this study, our aim was to investigate the role of the Quorum Sensing (QS) system, PcoI/PcoR, and the LuxR-type transcriptional regulator RfiA in CLP production in the phytopatogenic bacterium, Pseudomonas corrugata based on our previous work where we reported that the pcoR and rfiA mutants were devoid of the CLPs cormycin and corpeptin production. Due to the close genetic link between the QS system and the RfiA (rfiA is co-transcribed with pcoI), it was difficult to ascertain the specifi…

0301 basic medicineMicrobiology (medical)transcriptional analysiscyclic lipopeptides RNA-seq non-ribosomal peptides transcriptional analysis exopolysaccarides030106 microbiologyAntimicrobial peptidesMutantexopolysaccarideslcsh:QR1-502exopolysaccarideMicrobiologylcsh:Microbiology03 medical and health sciencescyclic lipopeptideGene expressionnon-ribosomal peptideTranscriptional regulationGenebiologyChemistrySettore AGR/12 - Patologia Vegetalebiology.organism_classificationQuorum sensingPseudomonas corrugatacyclic lipopeptidesRegulonBiochemistrynon-ribosomal peptidesRNA-seqFrontiers in Microbiology
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Poly(hydroxyalkanoate) synthase genes in pseudomonads strains, isolation and heterologous expression

2010

ATP synthasebiologySettore AGR/12 - Patologia VegetaleBioengineeringGeneral MedicineIsolation (microbiology)PolyhydroxyalkanoatePseudomonas corrugataApplied Microbiology and BiotechnologyMicrobiologybiology.proteinHeterologous expressionGenePseudomonas mediterraneaNicotiana BentamianaBiotechnology
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Transcriptome analysis of Pseudomonas mediterranea and P. corrugata plant pathogens during accumulation of medium-chain-length PHAs by glycerol bioco…

2017

Pseudomonas corrugata and P. mediterranea are soil inhabitant bacteria, generally living as endophytes on symptomless plants and bare soil, but also capable of causing plant diseases. They share a similar genome size and a high proteome similarity. P. corrugata produces many biomolecules which play an important role in bacterial cell survival and fitness. Both species produce different medium-chain-length PHAs (mcl-PHAs) from the bioconversion of glycerol to a transparent film in P. mediterranea and a sticky elastomer in P. corrugata. In this work, using RNA-seq we investigated the transcriptional profiles of both bacteria at the early stationary growth phase with glycerol as the carbon sou…

EXPRESSION0301 basic medicineGlycerolAlginatesBioconversionPseudomonas mediterraneaPlant DiseasePOLYHYDROXYALKANOATESBioengineeringPolyhydroxyalkanoatePseudomonaTRANSACYLASEBacterial cell structureMicrobiologyTranscriptome03 medical and health sciencesPseudomonasDEPOLYMERASEMolecular BiologyDE-NOVO BIOSYNTHESISSoil MicrobiologyPlant DiseasesbiologyBase SequenceGene Expression ProfilingPseudomonasAlginatePolysaccharides BacterialSettore AGR/12 - Patologia VegetaleGeneral MedicineBiosynthetic PathwayGene Expression Regulation Bacterialbiology.organism_classificationBiosynthetic PathwaysDE-NOVO BIOSYNTHESIS ESCHERICHIA-COLI ALGINATE PRODUCTION PUTIDA KT2442 POLYHYDROXYALKANOATES TOMATO LIPODEPSIPEPTIDE TRANSACYLASE DEPOLYMERASE EXPRESSIONALGINATE PRODUCTIONLIPODEPSIPEPTIDEPseudomonas corrugataMetabolic pathwayRNA Bacterial030104 developmental biologyBiochemistryESCHERICHIA-COLIPUTIDA KT2442TOMATOBacteriaBiotechnology
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Siderophore typing, a powerful tool for the identification of fluorescent and nonfluorescent Pseudomonas

2002

ABSTRACT A total of 301 strains of fluorescent pseudomonads previously characterized by conventional phenotypic and/or genomic taxonomic methods were analyzed through siderotyping, i.e., by the isoelectrophoretic characterization of their main siderophores and pyoverdines and determination of the pyoverdine-mediated iron uptake specificity of the strains. As a general rule, strains within a well-circumscribed taxonomic group, namely the species Pseudomonas brassicacearum , Pseudomonas fuscovaginae , Pseudomonas jessenii , Pseudomonas mandelii , Pseudomonas monteilii , “ Pseudomonas mosselii ,” “ Pseudomonas palleronii ,” Pseudomonas rhodesiae , “ Pseudomonas salomonii ,” Pseudomonas syringa…

IronStatistics as TopicPseudomonas jesseniiSiderophoresPseudomonas fluorescensPseudomonas thivervalensisPseudomonas fluorescensApplied Microbiology and BiotechnologyFluorescencePseudomonas mosseliiMicrobiology03 medical and health sciencesPseudomonas fuscovaginaeMethodsComputingMilieux_MISCELLANEOUS030304 developmental biology[SDV.EE]Life Sciences [q-bio]/Ecology environment0303 health sciencesEcologybiology030306 microbiologySYDEROPHOREPigments Biologicalbiology.organism_classification[SDV.EE] Life Sciences [q-bio]/Ecology environmentPseudomonas corrugataPseudomonas brassicacearumPseudomonas salomoniiIsoelectric FocusingOligopeptidesFood ScienceBiotechnology
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Draft genome sequence of Pseudomonas corrugata, a phytopathogenic bacterium with potential industrial applications

2014

Pseudomonas corrugata was first described as the causal agent of a tomato disease called 'pith necrosis' yet it is considered as a biological resource in various fields such as biocontrol of plant diseases and production of industrially promising microbial biopolymers (mcl-PHA). Here we report the first draft genome sequence of this species. © 2014 Elsevier B.V.

Mcl-PHAMolecular Sequence DataBiological pest controlBacterial ProteinBioengineeringPseudomonaApplied Microbiology and BiotechnologyBacterial proteinBacterial ProteinsSolanum lycopersicumBiocontrol agentPlant pathogenPseudomonasBotanyLycopersicon esculentumWhole genome sequencingBase SequencebiologyPseudomonasfood and beveragesSequence Analysis DNAGeneral Medicinebiology.organism_classificationCyclic lipopeptideQuorum sensingPseudomonas corrugataQuorum sensingPithGenome BacterialBacteriaBiotechnologyJournal of Biotechnology
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The transcriptional activator rfiA is quorum-sensing regulated by cotranscription with the luxI homolog pcol and is essential for plant virulence in …

2009

The gram-negative phytopathogen Pseudomonas corrugata has an acyl-homoserine lactone (AHL) quorum-sensing (QS) system called PcoI/PcoR that is involved in virulence on tomato. This work identifies, downstream of pcol, a gene designated rfiA, which we demonstrate is directly linked to QS by cotranscription with pcol. The deduced RfiA protein contains a DNA-binding domain characteristic of the LuxR family but lacks the autoinducer-binding terminus characteristic of the QS LuxR-family proteins. We also identified, downstream of rfiA, an operon designated pcoABC, encoding for the three components of a tripartite resistance nodulation-cell-division (RND) transporter system. The expression of pco…

OperonTranscription FactorPhysiologyMutantMolecular Sequence DataPlant DiseaseVirulenceBacterial ProteinPseudomonaMicrobiologyBacterial ProteinsSolanum lycopersicumPseudomonasLycopersicon esculentumBacillus megateriumPlant DiseasesbiologyVirulencefood and beveragesQuorum SensingSettore AGR/12 - Patologia VegetaleGeneral MedicineGene Expression Regulation Bacterialbiology.organism_classificationPseudomonas corrugataQuorum sensingPseudomonadalesMutationAgronomy and Crop SciencePseudomonadaceaeTranscription Factors
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Pseudomonas corrugata contains a conserved N-acyl homoserine lactone quorum sensing system; its role in tomato pathogenicity and tobacco hypersensiti…

2007

Pseudomonas corrugata is a phytopathogenic bacterium, causal agent of tomato pith necrosis, yet it is an ubiquitous bacterium that is part of the microbial community in the soil and in the rhizosphere of different plant species. Although it is a very heterogeneous species, all the strains tested were able to produce short chain acyl homoserine lactone (AHL) quorum sensing signal molecules. The main AHL produced was N-hexanoyl-l-homoserine lactone (C6-AHL). An AHL quorum sensing system, designated PcoI/PcoR, was identified and characterized. The role of the quorum sensing system in the expression of a variety of traits was evaluated. Inactivation of pcoI abolished the production of AHLs. The…

Pseudomonas corrugateHypersensitivity responseVirulenceEcologyQuorum SensingSettore AGR/12 - Patologia VegetalePseudomonas corrugatatomato pith necrosisPseudomonaMicrobiologyApplied Microbiology and BiotechnologyPseudomonas corrugata; quorum sensing; tomato pith necrosisTomato pith necrosiSolanum lycopersicum4-ButyrolactonePseudomonasAcyl homoserine lactoneMutationTobaccoMicrobial antagonismLycopersicon esculentum
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N-acyl-homoserine-lactone quorum sensing in tomato phytopathogenic Pseudomonas spp. is involved in the regulation of lipodepsipeptide production

2012

Pseudomonas corrugata and Pseudomonas mediterranea are two closely related phytopathogenic bacteria both causal agents of tomato pith necrosis. P. corrugata produces phytotoxic and antimicrobial cationic lipodepsipeptides (LDPs) which are thought to act as major virulence factors. Previous studies have demonstrated that P. corrugata CFBP 5454 has an N-acyl homoserine lactone (AHL) quorum sensing (QS) system PcoI/PcoR and that LDP production occurs at high population densities. No molecular studies on virulence have thus far been reported for P. mediterranea. In this study, we show that P. mediterranea also produces LDPs as well as possessing an AHL-dependent QS system, designated PmeI/PmeR,…

Pseudomonas mediterraneaVirulence FactorsLipoproteinsPlant DiseaseHomoserineVirulenceBioengineeringBiologyAcyl-ButyrolactonesPseudomonaAcyl-ButyrolactoneApplied Microbiology and BiotechnologyTomatoMicrobiologychemistry.chemical_compoundSolanum lycopersicumVirulence FactorDepsipeptidesPseudomonasLycopersicon esculentumLipoproteinPromoter Regions GeneticDepsipeptidePlant DiseasesAntimicrobial Cationic PeptideVirulencePseudomonasGeneral MedicineLipodepsipeptidesbiology.organism_classificationPseudomonas corrugataQuorum sensingPseudomonas corrugataQuorum sensingN-Acyl homoserine lactonePhenotypechemistryPseudomonas mediterranea; Pseudomonas corrugata; Quorum sensing; Lipodepsipeptides; Virulence; TomatoMutationLipodepsipeptidePseudomonas mediterraneaBacteriaBiotechnologyAntimicrobial Cationic PeptidesJournal of Biotechnology
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Bioprospecting of Beneficial Bacteria Traits Associated With Tomato Root in Greenhouse Environment Reveals That Sampling Sites Impact More Than the R…

2021

Tomato is subject to several diseases that affect both field- and greenhouse-grown crops. To select cost-effective potential biocontrol agents, we used laboratory throughput screening to identify bacterial strains with versatile characteristics suitable for multipurpose uses. The natural diversity of tomato root–associated bacterial communities was bioprospected under a real-world environment represented by an intensive tomato cultivation area characterized by extraseasonal productions in the greenhouse. Approximately 400 tomato root–associated bacterial isolates, in majority Gram-negative bacteria, were isolated from three compartments: the soil close to the root surface (rhizosphere, R), …

RhizospherebiologyendorhizospherePseudomonasfungiSettore AGR/12 - Patologia Vegetalefood and beveragesmicrobiomePlant Sciencetomatolcsh:Plant culturebiology.organism_classificationmicrobiome tomato PGPR BCA endorhizosphereBacillalesPseudomonas corrugataHorticultureBCAPGPRFusarium oxysporumPseudomonadalesPseudomonas syringaelcsh:SB1-1110BacteriaOriginal Research
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