Search results for "MICROBE"

showing 10 items of 114 documents

Voici la carte de diversité microbienne

2009

facteur[SDV] Life Sciences [q-bio][SDE] Environmental Sciencescarte nationaleprélèvementmicrobe du sol[SDV]Life Sciences [q-bio][SDE]Environmental Sciences
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Toward the Identification of Two Glycoproteins Involved in the Stomatal Deregulation of Downy Mildew–Infected Grapevine Leaves

2015

SPE Pôle IPM UB; International audience; Stomata remain abnormally opened and unresponsive to abscisic acid in grapevine leaves infected by downy mildew. This deregulation occurs from 3 days post inoculation and increases concomitantly with leaf colonization by the pathogen. Using epidermal peels, we demonstrated that the active compound involved in this deregulation is located in the apoplast. Biochemical assays showed that the active compound present in the apoplastic fluids isolated from Plasmopara viticola infected grapevine leaves (IAF) is a CysCys bridge-independent, thermostable and glycosylated protein. Fractionation guided assays based on chromatography / stomatal response and prot…

[SDE] Environmental SciencesProteomicsPhysiology[SDV]Life Sciences [q-bio]stomataMolecular Sequence DataPlant EpidermisFungal ProteinsCell wallPlasmoparaPlasmopara viticolachemistry.chemical_compoundCell WallBotany[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal BiologyComputer SimulationVitisAmino Acid SequencePathogenAbscisic acidPhylogenyproteomicGlycoproteinsPlant DiseasesPlant Proteinsplant-microbe interactionFungal proteinSequence Homology Amino AcidbiologyfungiPlant Stomatafood and beveragesGeneral MedicineChromatography Ion Exchangebiology.organism_classificationApoplast[SDV] Life Sciences [q-bio]Plant LeavesOomycetesBiochemistrychemistryVitis viniferaHost-Pathogen InteractionsPlant Stomata[SDE]Environmental SciencesDowny mildewguard cellAgronomy and Crop ScienceMolecular Plant-Microbe Interactions®
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Proteomics as a tool to monitor plant-microbe endosymbioses in the rhizosphere

2004

In recent years, outstanding molecular approaches have been used to investigate genes and functions involved in plant-microbe endosymbioses. In this review, we outline the use of proteomic analysis, based on two-dimensional electrophoresis and mass spectrometry, to characterize symbiosis-related proteins. During the last decade, proteomics succeeded in identifying about 400 proteins associated with the development and functioning of both mycorrhizal and rhizobial symbioses. Further progress in prefractionation procedures is expected to allow the detection of symbiotic proteins showing low abundance or being present in certain cell compartments.

Proteomics0106 biological sciencesPlant ScienceComputational biologyBiologyProteomicsPlant Roots01 natural sciencesMass SpectrometryFungal Proteins03 medical and health sciencesTwo dimensional electrophoresisMycorrhizaeBotanyGeneticsSymbiosisMolecular BiologySoil MicrobiologyEcology Evolution Behavior and Systematics[SDV.MP.MYC]Life Sciences [q-bio]/Microbiology and Parasitology/MycologyComputingMilieux_MISCELLANEOUSPlant Proteins030304 developmental biology0303 health sciencesRhizospherePlant microbeGeneral Medicine[SDV.MP.MYC] Life Sciences [q-bio]/Microbiology and Parasitology/MycologyInvestigation methods010606 plant biology & botany
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Persistence of Human Bocavirus 1 in Tonsillar Germinal Centers and Antibody-Dependent Enhancement of Infection

2021

Human bocavirus 1 (HBoV1), a common pediatric respiratory pathogen, can persist in airway secretions for months hampering diagnosis. It also persists in tonsils, providing potential reservoirs for airway shedding, with the exact location, host cell types, and virus activity unknown.

NASOPHARYNXviruksetPalatine TonsilFc receptorCHILDRENvirus persistenceMonocytesHuman bocavirusCONGENITAL INSENSITIVITYBokavirusChildviruspersistenssi11832 Microbiology and virology0303 health sciencesB-LymphocytesbiologyHuman bocavirusvasta-aineetDENGUE-VIRUS-INFECTIONrespiratory systemMiddle AgedQR1-5023. Good healthLymphatic systemB-CELLSChild PreschoolAntibodyCELL-LINE U937HUMAN PARVOVIRUSResearch ArticleAdultAdolescentEndosomesMicrobiologyinfektiotVirusHost-Microbe BiologyParvoviridae Infections03 medical and health sciencesYoung AdultImmune systemnielurisaVirologytonsilsHumansAntibody-dependent enhancementRESPIRATORY VIRUSESparvovirukset030304 developmental biologyAgedRECEPTOR030306 microbiologyparvovirusInfant NewbornGerminal centerInfantbiology.organism_classificationGerminal CenterAntibody-Dependent Enhancementrespiratory tract diseasesgerminal centerImmunologyDNA Viralbiology.protein1182 Biochemistry cell and molecular biology3111 Biomedicinein situ hybridizationADEB-soluTRACTmBio
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Depletion of

2020

Child obesity constitutes a risk factor for developing insulin resistance which, if sustained, could lead to more severe conditions like type 2 diabetes (T2D) in adulthood. Our study identified previously unknown species whose depletion (Blautia luti and Blautia wexlerae) is associated with insulin resistance in obese individuals. Our results also indicate that these bacterial species might help to reduce inflammation causally linked to obesity-related complications. Childhood is considered a window of opportunity to tackle obesity. These new findings provide, therefore, valuable information for the future design of microbiota-based strategies for the early prevention of obesity-related com…

obesitygut microbiotapermubiomeBlautia wexleraeHost-Microbe Biologychildrenprobioticsinflammationinsulin resistancePBMCsmicrobiotagut inflammationchildhood obesityBlautia lutiResearch ArticlemSystems
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CA-SYS: A long term experimental platform on agroecology at various scales

2018

National audience; The French National Institute for Agricultural Research (INRA) has established an ambitious, multiscale, agricultural experimental infrastructure (the CA-SYS platform) as a collaboration between the Research Unit, Agroécologie (Dijon, eastern France), and the Experimental Research Unit, Domaine d’Epoisses (20 km next to Dijon). CA-SYS covers an area of 120 ha, and is divided into 47 fields, each of which has drainage and can be irrigated, and will be initiated in autumn 2018. The aims of CA-SYS are to: i) design and evaluate new agroecological systems; ii) study the transition from current farming systems towards these new agroecological systems, with goals that include a…

agroecology[SDE] Environmental Sciencesno-tillevaluationlegumes[SDV]Life Sciences [q-bio]multicriteriacropping systemslandscapesustainable agriculture[SDV] Life Sciences [q-bio]CA-SYSexperimental platform[SDE]Environmental Sciencestillage[SDV.BV]Life Sciences [q-bio]/Vegetal Biologyplant/microbe interaction[SDV.BV] Life Sciences [q-bio]/Vegetal Biologybiocontrol
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Toward an integrated approach for studying plant-microbe interactions in the rhizosphere: from genomic to proteomic

2006

International audience

genomic[SDV] Life Sciences [q-bio][SDE] Environmental Sciences[SDV]Life Sciences [q-bio]ground[SDE]Environmental SciencesrhizosphereComputingMilieux_MISCELLANEOUSproteomicplant-microbe interaction
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The grapevine flagellin receptor VvFLS2 differentially recognizes flagellin-derived epitopes from the endophytic growth-promoting bacterium Burkholde…

2014

International audience; The role of flagellin perception in the context of plant beneficial bacteria still remains unclear. Here, we characterized the flagellin sensing system flg22-FLAGELLIN SENSING 2 (FLS2) in grapevine, and analyzed the flagellin perception in the interaction with the endophytic plant growth-promoting rhizobacterium (PGPR) Burkholderia phytofirmans. The functionality of the grapevine FLS2 receptor, VvFLS2, was demonstrated by complementation assays in the Arabidopsis thaliana fls2 mutant, which restored flg22-induced H2O2 production and growth inhibition. Using synthetic flg22 peptides from different bacterial origins, we compared recognition specificities between VvFLS2…

0106 biological sciencesPhysiologyBurkholderia phytofirmans[SDV]Life Sciences [q-bio]flg22ArabidopsisColony Count MicrobialPlant Sciencemedicine.disease_cause01 natural sciencesEpitopesArabidopsisEndophytesArabidopsis thalianaPlant ImmunityVitisDisease ResistancePlant Proteins0303 health sciencesbiologyBurkholderia phytofirmansmicrobe-associated molecular pattern (MAMP)Xanthomonas campestrisPGPR[SDE]Environmental SciencesBotrytispattern recognition receptor (PRR)BurkholderiaMolecular Sequence DataContext (language use)Receptors Cell SurfaceMicrobiology03 medical and health sciencesSpecies Specificitymedicine[SDV.BV]Life Sciences [q-bio]/Vegetal BiologyComputer SimulationAmino Acid Sequenceflagellin sensing030304 developmental biologyPlant DiseasesfungiCell MembraneGenetic Complementation TestPathogenic bacteriabiology.organism_classificationVitis viniferaMutationbiology.proteinReactive Oxygen SpeciesFlagellinBacteria010606 plant biology & botanyFlagellinThe New phytologistReferences
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Induced resistance in grapevine: from concept to vineyard application

2012

SPE IPM Chapitre 11; International audience

[SDV] Life Sciences [q-bio][SDE] Environmental SciencesPattern Recognition Receptors (PRR)plant innate immunity[SDV]Life Sciences [q-bio][SDE]Environmental Sciences[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal BiologyMicrobe Associated Molecular Patterns (MAMP)
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Defining gut mycobiota for wild animals: a need for caution in assigning authentic resident fungal taxa

2021

Animal gut mycobiota, the community of fungi that reside within the gastrointestinal tract, make an important contribution to host health. Accordingly, there is an emerging interest to quantify the gut mycobiota of wild animals. However, many studies of wild animal gut mycobiota do not distinguish between the fungi that likely can reside within animal gastrointestinal tracts from the fungal taxa that are non-residents, such as macrofungi, lichens or plant symbionts/pathogens that can be ingested as part of the host’s diet. Confounding the non-resident and resident gut fungi may obscure attempts to identify processes associated with the authentic, resident gut mycobiota per se. To redress th…

amplicon sequencinghost-microbe interactionsekvensointisuolistomikrobistoMicrobiotaVeterinary medicinedigestive oral and skin physiologyfungiCommunity analysisintestinal fungicommunity analysismicrofungiMicrobiologyQR1-502Intestinal fungimycobiomeHost-microbe interactionvillieläimetSF600-1100CommentarymicrobiotaMicrofungisienetMycobiomeAmplicon sequencingAnimal Microbiome
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