0000000001239665

AUTHOR

Floriane L'haridon

showing 5 related works from this author

Determinism of the biocontrol capacity of a strain of Fusarium oxysporum: identification of genes expressed during interactions with tomato

2008

[SDV] Life Sciences [q-bio][SDE] Environmental Sciences[SDV]Life Sciences [q-bio][SDE]Environmental Sciencesidentificationinteractiontomatogenebiocontrol capacity
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The glutaredoxin ATGRXS13 is required to facilitate Botrytis cinerea infection of Arabidopsis thaliana plants

2011

Summary Botrytis cinerea is a major pre- and post-harvest necrotrophic pathogen with a broad host range that causes substantial crop losses. The plant hormone jasmonic acid (JA) is involved in the basal resistance against this fungus. Despite basal resistance, virulent strains of B. cinerea can cause disease on Arabidopsis thaliana and virulent pathogens can interfere with the metabolism of the host in a way to facilitate infection of the plant. However, plant genes that are required by the pathogen for infection remain poorly described. To find such genes, we have compared the changes in gene expression induced in A. thaliana by JA with those induced after B. cinerea using genome-wide micr…

0106 biological sciencesRegulation of gene expression0303 health sciencesbiologyJasmonic acidfungifood and beveragesVirulenceCell BiologyPlant SciencePlant disease resistancebiology.organism_classification01 natural sciencesMicrobiology03 medical and health scienceschemistry.chemical_compoundchemistryGeneticsArabidopsis thalianaPlant hormonePathogen030304 developmental biology010606 plant biology & botanyBotrytis cinereaThe Plant Journal
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Colonization of tomato root by pathogenic and nonpathogenic Fusarium oxysporum strains inoculated together and separately into the soil.

2006

ABSTRACT In soil, fungal colonization of plant roots has been traditionally studied by indirect methods such as microbial isolation that do not enable direct observation of infection sites or of interactions between fungal pathogens and their antagonists. Confocal laser scanning microscopy was used to visualize the colonization of tomato roots in heat-treated soil and to observe the interactions between a nonpathogenic strain, Fo47, and a pathogenic strain, Fol8, inoculated onto tomato roots in soil. When inoculated separately, both fungi colonized the entire root surface, with the exception of the apical zone. When both strains were introduced together, they both colonized the root surface…

FusariumMicroscopy ConfocalEcologybiologyHyphaStrain (chemistry)VirulenceInoculationFungi imperfectiMycologybiology.organism_classificationApplied Microbiology and BiotechnologyPlant RootsMicrobiologyFusariumSolanum lycopersicumSpecies SpecificityFusarium oxysporumBotanyColonizationSoil microbiologySoil MicrobiologyFood ScienceBiotechnologyPlant DiseasesApplied and environmental microbiology
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Déterminisme du pouvoir protecteur de Fusarium oxysporum : recherche de gènes impliqués dans l'interaction protectrice avec la tomate

2007

Fusarium oxysporum is a common soil borne fungus, well represented in every type of soils, throughout the world. This species includes pathogenic strains inducing severe diseases in many crops and strains able to protect a plant against the infection by a pathogenic strain. The protective strains are not only non pathogenic strains isolated from suppressive soils but also pathogenic strains applied to a non host plant. The protective capacity of these strains is mainly based on mechanisms of competition and induced resistance of the plant The main objective of this work was to identify fungal genes involved in the protective capacity of these strains and associated to the elicitation of pla…

[SDE] Environmental SciencesFom24gène d’origine végétale et fongiquerapid subtraction hybridizationhybridation soustractive rapideactivité protectricebiocontrol capacitydifferentially expressed geneFusarium oxysporum[SDV] Life Sciences [q-bio]plant geneexpression différentiellefungal genemutant rev157
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Déterminisme du pouvoir protecteur d’une souche de Fusarium oxysporum : recherches de gènes impliqués lors de l’interaction avec la tomate

2008

[SDV] Life Sciences [q-bio][SDE] Environmental Sciencestomate[SDV]Life Sciences [q-bio]gène[SDE]Environmental Sciencesinteractionpouvoir protecteurFusarium oxysporum
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