Search results for "Defense reactions"

showing 5 items of 5 documents

Investigation of the physiological impact and the mode of action of the pyoverdine from Pseudomonas fluorescens on Arabidopsis thaliana : links with …

2015

Siderophores are strong iron chelators produced by bacteria under iron deficiency conditions. In the present work, we studied the impact of the siderophore pyoverdine, produced by the plant growth promoting rhizobacteria Pseudomonas fluorescens C7R12, on plant physiology from phenotypic to molecular effects with a specific focus on plant growth, immune response and iron homeostasis. Based on our analysis of the mode of action of the non-protein amino acid β-aminobutyric acid (BABA), a priming inducer in plants, we studied more specifically the functional link between iron homeostasis and plant immunity. Under iron deficiency, P. fluorescens excretes the iron free form of pyoverdine (apo-pyo…

Arabidopsis thalianaIronMonoxyde d’azoteNitric oxideGrowthPseudomonas fluorescensFerAcid β-aminobutyric[SDV.BBM] Life Sciences [q-bio]/Biochemistry Molecular BiologyPyoverdineRéactions de défenseDefense reactionsCroissance[SDV.BC] Life Sciences [q-bio]/Cellular BiologyAcide β-aminobutyrique
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Characterization of grapevine defense reactions and identification of elicitors : the endopolygalacturonase 1 from Botrytis cinerea, an avirulence fu…

2002

The fight against grapevine pathogens is mainly carried out by pesticides, the continued use of which is harmful to the environment and the health of users and consumers. The main organizations in charge of viticulture set as a priority the research and use of alternatives to chemical control. However, the genetic improvement of the vine is prohibited in AOC vineyards to preserve the varietal typicity, partly responsible for the quality of the wines. In addition, research undertaken some fifteen years ago reveals that plants have their own immune defenses, which they activate on contact with the microorganisms they recognize via molecules called elicitors. In this context, the objective of …

Botrytis cinerea endopolygalacturonase 1signalisation cellulaireBotrytis cinerea.[SDV.EE.IEO] Life Sciences [q-bio]/Ecology environment/Symbiosisprotectionoligogalacturonatesavirulencelaminarinegrapevinevirulenceréactions de défenseelicitorsVitis viniferadefense reactionséliciteurs[SDV.BBM] Life Sciences [q-bio]/Biochemistry Molecular Biologycell signalingoligogalacturonidesendopolygalacturonase 1 de Botrytis cinereavigne[SDV.IMM.II] Life Sciences [q-bio]/Immunology/Innate immunitylaminarin[SDV.BV.PEP] Life Sciences [q-bio]/Vegetal Biology/Phytopathology and phytopharmacy
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Rôle de la dynamique de la membrane plasmique dans la mise en place des réactions de défense chez le tabac

2008

The binding of cryptogein, a plant defense elicitor secreted by an oomycete, to an unknown receptor triggers well-known biochemical events of early signal transduction at the plasma membrane of tobacco cells. One of these early events is the transient production of Reactive Oxygen Species (ROS) by an NADPH oxidase, NtrbohD. We were thus interested to analyze the dynamic of the plasma membrane during these early stages. We determined that internalization of the endocytotic marker FM4-64 is stimulated a few minutes after addition of cryptogein to tobacco BY-2 cells. This stimulation is specific to the signal transduction pathway elicited by cryptogein since a lipid transfer protein, which bin…

CELLULES DE TABAC BY-2[SDV] Life Sciences [q-bio]BY-2 TOBACCO CELLSELICITEUR DE REACTIONS DE DEFENSE[SDV]Life Sciences [q-bio]DEFENSE REACTIONSELICITORMEMBRANE PLASMIQUEENDOCYTOSE A CLATHRINECLATHIN-MEDIATED ENDOCYTOSIS
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A β-1,3 Glucan Sulfate Induces Resistance in Grapevine against Plasmopara viticola Through Priming of Defense Responses, Including HR-like Cell Death

2008

Sulfated laminarin (PS3) has been shown previously to be an elicitor of plant defense reactions in tobacco and Arabidopsis and to induce protection against tobacco mosaic virus. Here, we have demonstrated the efficiency of PS3 in protecting a susceptible grapevine cultivar (Vitis vinifera cv. Marselan) against downy mildew (Plasmopara viticola) under glasshouse conditions. This induced resistance was associated with potentiated H2O2 production at the infection sites, upregulation of defense-related genes, callose and phenol depositions, and hypersensitive response-like cell death. Interestingly, similar responses were observed following P. viticola inoculation in a tolerant grapevine hybri…

OLIGOSACCHARIDESpores0106 biological sciencesPhysiologyDEFENSE REACTIONSCyclopentanesGenes Plant01 natural sciencesMicrobiology03 medical and health scienceschemistry.chemical_compoundGene Expression Regulation PlantBotanyTobacco mosaic virusPlant defense against herbivory[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular BiologyVitisOxylipinsGlucansPlant Diseases030304 developmental biology0303 health sciencesCell DeathbiologyPOTENTIALISATIONINDUCED RESISTANCEJasmonic acidCallosefood and beveragesTobamovirusHydrogen PeroxideGeneral Medicinebiology.organism_classificationImmunity InnateUp-RegulationElicitorPlant LeavesOomyceteschemistryPlasmopara viticolaPlant StomataDowny mildewAgronomy and Crop Science010606 plant biology & botanyMolecular Plant-Microbe Interactions®
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Microbiological control of soil-borne phytopathogenic fungi with special emphasis on wilt-inducing Fusarium oxysporum

2009

Contents   Summary  529 I. Biological control of plant diseases: state of the art  530 II. Main modes of action of biological control agents  530 III. The protective strains of F. oxysporum: an unexplored model  532 IV. Future directions for the study of the protective capacity of strains of F. oxysporum  539 V. How to make biological control successful in the field?  540   References  541 Summary Plant diseases induced by soil-borne plant pathogens are among the most difficult to control. In the absence of effective chemical control methods, there is renewed interest in biological control based on application of populations of antagonistic micro-organisms. In addition to Pseudomonas spp. a…

Protective capacityPhysiologymedia_common.quotation_subjectBiological pest controlCOMPETITIONPlant ScienceModels BiologicalPlant RootsCompetition (biology)MicrobiologyFusariumSpecies SpecificityECOLOGICAL FITNESSPLANT DEFENSE REACTIONSFusarium oxysporumPest Control BiologicalControl (linguistics)EcosystemSoil MicrobiologyPlant DiseasesPlant Proteinsmedia_commonBIOLOGIE DES POPULATIONSVirulencebiologybusiness.industryINDUCED RESISTANCEPseudomonasfood and beveragesPRIMINGbiology.organism_classificationBiotechnology[SDV.BV.PEP]Life Sciences [q-bio]/Vegetal Biology/Phytopathology and phytopharmacyBIOCONTROLSoil borneTrichodermaHost-Pathogen InteractionsBIOTROPHYbusinessROOT COLONIZATIONAntimicrobial Cationic Peptides
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