Search results for "Mycorrhiza"

showing 10 items of 284 documents

Strategies for analyzing interactions between arbuscular mycorrhiza and bacteria

2013

National audience

[SDE] Environmental Sciencesinteraction bactérie-champignonmycorhize à arbusculearbuscular mycorrhiza[SDV]Life Sciences [q-bio]écologie[SDV] Life Sciences [q-bio]T3SS[SDE]Environmental Sciences[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal BiologyecologyrhizosphererhizosphèreComputingMilieux_MISCELLANEOUSbacterial-fungal interaction
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Transcriptional response of Medicago truncatula sulphate transporters to arbuscular mycorrhizal symbiosis with and without sulphur stress

2013

Sulphur is an essential macronutrient for plant growth, development and response to various abiotic and biotic stresses due to its key role in the biosynthesis of many S-containing compounds. Sulphate represents a very small portion of soil S pull and it is the only form that plant roots can uptake and mobilize through H(+)-dependent co-transport processes implying sulphate transporters. Unlike the other organically bound forms of S, sulphate is normally leached from soils due to its solubility in water, thus reducing its availability to plants. Although our knowledge of plant sulphate transporters has been growing significantly in the past decades, little is still known about the effect of…

[SDE] Environmental SciencesmycorhizesTranscription Genetic[SDV]Life Sciences [q-bio]Anion Transport Proteinschemistry.chemical_elementmycorrhizaPlant Sciencesulfatechemistry.chemical_compoundBiosynthesisGene Expression Regulation PlantStress PhysiologicalMycorrhizaeBotanyGenetics[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal BiologyRNA MessengerSymbiosisGeneMedicagiPhylogenyAbiotic componentMedicagobiologyarbuscular mycorrhiza ; glomus intraradices ; medicago truncatula ; sulphate ; transportersGene Expression ProfilingfungiComputational Biologyfood and beveragesTransportermedicago truncatulabiology.organism_classificationSulfurMedicago truncatulaArbuscular mycorrhiza[SDV] Life Sciences [q-bio]chemistryOrgan Specificitytransportertransport[SDE]Environmental SciencessulphurSulfur
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Soil Nutrient and Water providers: How Arbuscular Mycorrhizal Mycelia Support Plant Performance in a Resource-Limited World

2007

International audience

[SDE] Environmental Sciencesplant providerssoil nutrient[SPI.GPROC] Engineering Sciences [physics]/Chemical and Process Engineering[SDV]Life Sciences [q-bio]Arbuscular mycorrhizal (AM)[SDV.IDA] Life Sciences [q-bio]/Food engineering[SDV] Life Sciences [q-bio][SDE]Environmental Sciences[SDV.IDA]Life Sciences [q-bio]/Food engineering[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process Engineering[SDV.BV] Life Sciences [q-bio]/Vegetal BiologyCrop productionComputingMilieux_MISCELLANEOUS
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BioVine project - Increase plant health through mycorrhizal fungi

2021

National audience; Organic vineyards still rely on large external inputs to control harmful organisms. BIOVINEwill develop natural solutions based on plant diversity to control pests and reduce pesticidedependence. The capacity of plants of increasing the ecosystem resistance to pests and invasivespecies is a well-known ecosystem service. However, monocultures like vineyards do notexploit the potential of plant diversity. BIOVINE aims to develop new viticultural systemsbased on increased plant diversity within (e.g. cover crops) and/or around vineyards by plantingselected plant species for the control of arthropods, soil-borne pests (oomycetes, fungi,nematodes), and foliar pathogens. Candid…

[SDE] Environmental Sciencessustainable agriculturearbuscular mycorrhiza[SDE]Environmental Sciencesecosystem servicescover plantsgrapevine
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Caracterisation for ancient wheat varieties for their ability to form mycorrhiza and grain quality impact

2014

Wheat (kind Tritucum aestivum, Poaceae family) is a very important cereal ofagronomic interest. Some very ancient varieties are set aside for recent varieties often selected to meet a consumer intensive cultivation of pesticides. Organic farming production system assuming a reduction of synthetic chemical inputs in order to preserve the ecosystem can be defined as a practice where the use of synthetic fertilizers, chemical pesticides and genetically modified organisms is prohibited. This practice is gaining more and more popularity and the amount of land cultivated in this way has increased by 60% between 2000 and 2004. Constraints associated with the production of organic grains include lo…

[SDV.SA] Life Sciences [q-bio]/Agricultural sciencesMycorhizes à arbusculesQualité du grainBiomasseGrain qualityInoculum[SDV.BV] Life Sciences [q-bio]/Vegetal BiologyBiomassVariétés anciennesArbuscular mycorrhizaAncient cultivar
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Effect of incorporation of Brassica napus L. residues in soils on mycorrhizal fungus colonisation of roots and phosphorus uptake by maize (Zea mays L…

2007

International audience; Plants in the Brassicaceae family are known to contain thioglucoside compounds that produce isothiocyanates when tissues are disrupted. These chemicals have a negative effect on soil-borne fungal pathogens, and possibly on vesicular-arbuscular mycorrhizal (AM) fungi. We investigated the effect of incorporation of Brassica napus L. residues in a soil on mycorrhizal colonisation of roots, P uptake and growth of following maize (Zea mays L.) crop. A pot experiment was carried out in a glasshouse with pre-inoculation with Glomus intraradices (+I and -I), incorporation of B. napus L. residues (+R and -R) and mineral P fertilization (+P and -P) as studied factors. The soil…

[SDV.SA]Life Sciences [q-bio]/Agricultural sciences0106 biological sciencesCRUCIFERAEGLUCOSINOLATEFumigationBrassicaSoil SciencePlant ScienceBIOFUMIGATION01 natural scienceschemistry.chemical_compoundPoaceaeMycorrhizaCOLZABRASSICA2. Zero hungerbiologyfungifood and beveragesBrassicaceae04 agricultural and veterinary sciencesbiology.organism_classificationMYCORRHIZAEZYGOMYCOTINAColonisationBiopesticideAgronomychemistryGlucosinolate040103 agronomy & agriculture0401 agriculture forestry and fisheriesGLOMUSAgronomy and Crop Science010606 plant biology & botanyEuropean Journal of Agronomy
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The membrane proteome of Medicago truncatula roots displays qualitative and quantitative changes in response to arbuscular mycorrhizal symbiosis

2014

International audience; Arbuscular mycorrhizal (AM) symbiosis that associates roots of most land plants with soil-borne fungi (Glomeromycota), is characterized by reciprocal nutritional benefits. Fungal colonization of plant roots induces massive changes in cortical cells where the fungus differentiates an arbuscule, which drives proliferation of the plasma membrane. Despite the recognized importance of membrane proteins in sustaining AM symbiosis, the root microsomal proteome elicited upon mycorrhiza still remains to be explored. In this study, we first examined the qualitative composition of the root membrane proteome of Medicago truncatula after microsome enrichment and subsequent in dep…

[SDV.SA]Life Sciences [q-bio]/Agricultural sciencesGeLC-MS/MS[SDV.BIO]Life Sciences [q-bio]/BiotechnologyProteomeBiophysicsBiological Transport ActiveRoot membrane proteomeBiochemistrySpectral countingFungal ProteinsGlomeromycotaSymbiosisPeriarbuscular membraneMycorrhizaeMedicago truncatulaBotanyEndomembrane systemMycorrhizaArbuscular mycorrhizaRhizophagus irregularisSymbiosisPlant Proteins2. Zero hungerbiologyfungiMembrane Proteins15. Life on landbiology.organism_classificationMedicago truncatulaCell biologyMembrane proteinProteomeSignal Transduction
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Mycorrhiza-induced resistance againsta root-rot pathogen in petunia: molecular mechanisms

2012

[SDV.SA]Life Sciences [q-bio]/Agricultural sciences[SDE.BE] Environmental Sciences/Biodiversity and Ecology[SDV.SA] Life Sciences [q-bio]/Agricultural sciences[SDV.BIO]Life Sciences [q-bio]/Biotechnologymycorrhiza-induced resistanceroot-rot pathogen[SDE.BE]Environmental Sciences/Biodiversity and Ecologymolecular mechanism[SDV.BIO] Life Sciences [q-bio]/Biotechnology
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Characterization of Pea (Pisum Sativum L.) genes implicated in arbuscular mycorrhiza formation and function

2010

The arbuscular mycorrhizal (AM) association results from a successful interaction between the genomes of the two symbiotic partners. In this context, the aim of my research was to better characterize the role of the late stage symbiosis-related pea genes PsSym36, PsSym33 and PsSym40 in the functional AM (i) by investigating the effect of mutations in the three genes on fungal and plant gene responses and (ii) by creating conditions for the localization of two of the genes, PsSym36 and PsSym40, on the pea genetic map for future map-based cloning. The expression of a subset of ten fungal and eight plant genes,previously reported to be activated during mycorrhiza development, was compared in G…

[SDV.SA]Life Sciences [q-bio]/Agricultural sciences[SDV.SA] Life Sciences [q-bio]/Agricultural sciencesPlant mutantsMycorhizes à arbusculesFungal and plant gene expressionGenetic mappingExpression de gènes fongiques et végétauxSymbiosis related plant genesCartographie génétiqueMutants végétauxGlomus intraradicesArbuscular mycorrhiza[ SDV.SA ] Life Sciences [q-bio]/Agricultural sciencesPisum sativumGènes végétaux de symbiose
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Towards a cell-specific expression atlas of arbuscular mycorrhizal roots in the model legume Medicago truncatula

2007

International audience

[SDV] Life Sciences [q-bio]ARBUSCULAR MYCORRHIZAL[SDV]Life Sciences [q-bio]MODEL LEGUMETRANSCRIPTOMEMEDICAGO TRUNCATULAComputingMilieux_MISCELLANEOUS
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