Search results for "Pathogenic fungus"

showing 10 items of 15 documents

Use of solid state fermentation to produce Beauveria bassiana for the biological control of european corn borer

1993

The production process of a new bioinsecticide against european corn borer is described. The entomopathogenic fungus, Beauveria bassiana, is cultivated by Solid State Fermentation (SSF). The culture support chosen, clay microgranules, humidified with optimal nutritive solution, is incubated in optimal conditions during 48 hours, then dried for 5 days. The bioinsecticide can be directly used after harvesting, without formulation. This process is original for several reasons : - The granulometry (500 microm) and the bulk density (0.6) of the microgranules are compatible with the mechanical standard application of pesticides on corn. - The bioinsecticide could be produced in a pilot reactor of…

0106 biological sciencesEuropean corn borerPYRALIDE[SDV.BIO]Life Sciences [q-bio]/BiotechnologyBiological pest controlBeauveria bassianaBiomassBioengineering01 natural sciencesApplied Microbiology and Biotechnology03 medical and health sciences010608 biotechnologyBioreactorCONTROLE BIOLOGIQUEComputingMilieux_MISCELLANEOUS2. Zero hunger0303 health sciencesbiology030306 microbiologybusiness.industryPesticidebiology.organism_classificationBiotechnology[SDV.BIO] Life Sciences [q-bio]/BiotechnologyHorticultureSolid-state fermentationFERMENTATION ETAT SOLIDEEntomopathogenic fungusbusinessBiotechnology
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Ultrastructural and cell wall modifications during infection of Eucalyptus viminalis roots by a pathogenic Fusarium oxysporum strain

2004

Fusarium species are soil-borne fungal pathogens that produce a variety of disease symptoms when attacking crop plants. The mode of root colonization of Eucalyptus viminalis seedlings by a pathogenic F. oxyporum strain (Foeu1) at the ultrastructural level and changes in cell wall pectin during host pathogen interactions are described. Root systems of E. viminalis plants were inoculated with F. oxysporum in an in vitro model system. Hyphae of F. oxysporum adhered to the outer epidermal cell walls through fibrillar material, and after penetration they spread into the internal tissues. They developed intercellularly and intracellularly in the root cortex and invaded vascular tissues. Papillae …

0106 biological sciencesFusariumHypha[SDV]Life Sciences [q-bio]Plant Science01 natural sciencesMicrobiologyCell wall03 medical and health sciencesFusarium oxysporumRoot pathogenesisCiencias AgrariasVascular tissue030304 developmental biology2. Zero hunger0303 health sciencesEucalyptus viminalisbiologyfood and beveragesPathogenic fungusbiology.organism_classificationPectinFusarium oxysporumUltrastructureUltrastructurePhloemAgronomy and Crop Science010606 plant biology & botany
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Cellular encapsulation in the eastern subterranean termite, Reticulitermes flavipes (Isoptera), against infection by the entomopathogenic fungus Meta…

2009

Reticulitermes flavipes workers were topically inoculated with approximately 10,000 conidia of the entomopathogenic fungus Metarhizium anisopliae. After being kept in groups of 20 individuals for 1-9 d, histopathological examination showed that termites had an individual immune reaction. The nodule formation at the point of entrance of the fungal hyphae was identified as a cellular encapsulation and the different steps in the nodule formation are described. The relative number of hemocytes per termite increased 24h after fungal exposure and remained high in the hemolymph for at least 3 d before decreasing back to pre-exposure levels. The role of an individual immune cellular reaction in soc…

0106 biological sciencesMetarhiziumHemocytesMetarhizium anisopliaeIsoptera01 natural sciencesConidiumMicrobiology03 medical and health sciencesReticulitermesHemolymphHemolymphBotanyAnimalsEcology Evolution Behavior and Systematics030304 developmental biology0303 health sciencesbiologyfungibiology.organism_classificationImmunity InnateBlood Cell CountTermite Metarhizium Disease resistance Cellular encapsulation Hemocytes010602 entomologyEastern subterranean termiteEntomopathogenic fungusMetarhizium[SDE.BE]Environmental Sciences/Biodiversity and EcologyRhinotermitidae
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Effect of Juvenile Hormone on Resistance against Entomopathogenic Fungus Metharizium robertsii Differs between Sexes

2020

Juvenile hormone has been suggested to be a potential mediator in the trade-off between mating and insects&rsquo

0106 biological sciencesMicrobiology (medical)MealwormCellular immunitymedia_common.quotation_subjectPlant ScienceInsect<i>Metharizium robertsii</i>01 natural sciencesMicrobiology03 medical and health sciencesImmune systemImmunitysexlcsh:QH301-705.5Ecology Evolution Behavior and Systematicsreproductive and urinary physiology030304 developmental biologymedia_common0303 health sciencesimmunocompetencebiologyfungipathogensimmune defensebiology.organism_classification<i>Tenebrio molitor</i>010602 entomologylcsh:Biology (General)Juvenile hormoneEntomopathogenic fungusbehavior and behavior mechanismsImmunocompetenceJournal of Fungi
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Differences in Cellular Encapsulation of Six Termite (Isoptera) Species Against Infection by the Entomopathogenic FungusMetarhizium anisopliae

2011

Termites (Isoptera) are eusocial insects, which live in an environment that can favor the spread of pathogens. To reduce the chance of an epizootic within a colony, termites have evolved many defense mechanisms. Most studies have focused on the social aspect of disease resistance, while the individual capacity of a termite to survive an infection remains poorly documented. We previously showed that when the eastern subterranean termite, Reticulitermes flavipes (Kollar), was exposed to the entomopathogenic fungus, Metarhizium anisopliae (Metch.) Sorokin, cellular encapsulation of the penetrating fungus was one of the last lines of defense for individual termites to prevent internal mycosis. …

0106 biological sciencesdisease resistanceBiodiversité et EcologieDefence mechanismsMetarhizium anisopliaeFunguscellular encapsulationBiology01 natural sciencesMicrobiologyBiodiversity and Ecology03 medical and health sciencesReticulitermesmedicinedisease resistance;cellular encapsulation;hemocytesEcology Evolution Behavior and SystematicsEpizootic030304 developmental biology0303 health sciencesfungimedicine.diseasebiology.organism_classificationEusocialityhemocytes010602 entomologyEastern subterranean termiteInsect ScienceEntomopathogenic fungus[SDE.BE]Environmental Sciences/Biodiversity and EcologyFlorida Entomologist
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Transferability of PCR-based diagnostic protocols: An international collaborative case study assessing protocols targeting the quarantine pine pathog…

2019

Producción Científica

0301 basic medicineAgricultural BiotechnologyPerformanceInternational Cooperation1ST REPORTlcsh:Medicinediagnostica PCR protocolli PCR trasferibilit&#224; patologia forestale patogeni fungini fusarium circinatum malattie emergenti / PCR diagnostics protocol transferability emerging tree diseases fungal forest pathogensPolymerase Chain ReactionPine pitch cankerlaw.invention0302 clinical medicineFusariumlawChancro resinoso del pinoFalse positive paradoxDNA Fungallcsh:SciencePathogenPolymerase chain reactionPinus radiataEnfermedades fúngicas - DiagnósticoMultidisciplinaryAgricultural SciencesCausal agentPathogenic fungusPitch Canker disease3. Good healthOther Agricultural SciencesTests PCRGibberella-CircinataFusariumPolymerase-Chain-ReactionDNA PlantPlantationsBOTANICATransferabilityFusarium circinatumBiologyPitch cankerno key wordsReal-Time Polymerase Chain ReactionSensitivity and SpecificityArticleREAL-TIME PCR; POLYMERASE-CHAIN-REACTION; PITCH CANKER DISEASE; CAUSAL AGENT; GIBBERELLA-CIRCINATA; 1ST REPORT; QUANTIFICATION; SUSCEPTIBILITY; PLANTATIONS; PERFORMANCE03 medical and health sciencesGibberella circinataQuantificationQuarantineDiagnóstico de enfermedad fungicaFalse Positive ReactionsFungal infections - DiagnosisMolecular BiologyPlant DiseasesInvasive speciesbusiness.industrylcsh:RReproducibility of ResultsPinusbiology.organism_classificationPCR-based testsBiotechnology030104 developmental biology3106 Ciencia ForestalSusceptibilitylcsh:QReal-Time PCRbusinessPCR-based techniques030217 neurology & neurosurgeryScientific Reports
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Agrobacterium tumefaciens-mediated trasformation of nonpathogenic and antagonistic Fusarium oxisporum with the jellyfish gene GFP.

2008

Agrobacterium tumefaciens trasformation nonpathogenic fungus.
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Risque phytosanitaire (ARP) portant sur Fusarium oxysporum f. sp. cubense (agent pathogène responsable de la maladie de Panama) pour les départements…

2018

Risque phytosanitaire (ARP) portant sur [i]Fusarium oxysporum[/i] f. sp.[u] cubense[/u] (agent pathogène responsable de la maladie de Panama) pour les départements d'Outre-mer

Analyse de risque phytosanitaire[SDV.SA]Life Sciences [q-bio]/Agricultural sciences[SDV.SA] Life Sciences [q-bio]/Agricultural sciencesoutre mer françaisétat de l'artrisque économiqueregulationweed control methodsrace tropicale 4champignon phytopathogèneexpertise scientifiquephytopathogenic fungusbananedétection[SDV.BV.PEP]Life Sciences [q-bio]/Vegetal Biology/Phytopathology and phytopharmacyFoc TR4méthode de luttemaladie de PanamaFusarium oxysporum f. sp. cubenseréglementationpathologie végétale[SDV.BV.PEP] Life Sciences [q-bio]/Vegetal Biology/Phytopathology and phytopharmacyéconomie des filières
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Cellular interactions ofCandida albicanswith human oral epithelial cells and enterocytes

2010

The human pathogenic fungus Candida albicans can cause systemic infections by invading epithelial barriers to gain access to the bloodstream. One of the main reservoirs of C. albicans is the gastrointestinal tract and systemic infections predominantly originate from this niche. In this study, we used scanning electron and fluorescence microscopy, adhesion, invasion and damage assays, fungal mutants and a set of fungal and host cell inhibitors to investigate the interactions of C. albicans with oral epithelial cells and enterocytes. Our data demonstrate that adhesion, invasion and damage by C. albicans depend not only on fungal morphology and activity, but also on the epithelial cell type an…

Cellular differentiationImmunologyEndocytosisMicrobiologyMicrobiologyCell Line TumorVirologyCandida albicansmedicineHumansCandida albicansbiologyCell DifferentiationEpithelial CellsPathogenic fungusbiology.organism_classificationEpitheliumCorpus albicansCell biologyEnterocytesmedicine.anatomical_structureMicroscopy FluorescenceCaco-2Cell cultureHost-Pathogen InteractionsMicroscopy Electron ScanningCaco-2 CellsCellular Microbiology
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The nuclear protein Sge1 of Fusarium oxysporum is required for parasitic growth

2009

Dimorphism or morphogenic conversion is exploited by several pathogenic fungi and is required for tissue invasion and/or survival in the host. We have identified a homolog of a master regulator of this morphological switch in the plant pathogenic fungus Fusarium oxysporum f. sp. lycopersici. This non-dimorphic fungus causes vascular wilt disease in tomato by penetrating the plant roots and colonizing the vascular tissue. Gene knock-out and complementation studies established that the gene for this putative regulator, SGE1 (SIX Gene Expression 1), is essential for pathogenicity. In addition, microscopic analysis using fluorescent proteins revealed that Sge1 is localized in the nucleus, is no…

FusariumQH301-705.5[SDV]Life Sciences [q-bio]ImmunologyGenes FungalMolecular Sequence Datachampignon phytopathogèneMicrobiologyPlant RootsMicrobiologyHost-Parasite InteractionsFungal ProteinsFusariumSolanum lycopersicumVirologyGene Expression Regulation FungalFusarium oxysporumGeneticsAmino Acid SequenceBiology (General)Cloning MolecularMolecular BiologyVascular tissuePhylogenyWilt diseaseRegulation of gene expressionCell NucleusFungal proteinbiologyOrganisms Genetically ModifiedSequence Homology Amino AcidEffectorfungifood and beveragesNuclear ProteinsPathogenic fungusRC581-607Microbiology/Plant-Biotic Interactionsbiology.organism_classificationPathology/Molecular Pathology[SDE]Environmental SciencesParasitologyImmunologic diseases. AllergyResearch ArticleTranscription FactorsPLoS Pathogens
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