Search results for "Glomus"

showing 10 items of 59 documents

Localized versus systemic effect of arbuscular mycorrhizal fungi on defence responses to Phytophthora infection in tomato plants

2002

Development of biological control for plant diseases is accepted as a durable and environmentally friendly alternative for agrochemicals. Arbuscular mycorrhizal fungi (AMF), which form symbiotic associations with root systems of most agricultural, horticultural and hardwood crop species, have been suggested as widespread potential bioprotective agents. In the present study the ability of two AMF (Glomus mosseae and Glomus intraradices) to induce local or systemic resistance to Phytophthora parasitica in tomato roots have been compared using a split root experimental system. Glomus mosseae was effective in reducing disease symptoms produced by P. parasitica infection, and evidence points to …

Phytophthora0106 biological sciencesGlycoside HydrolasesPhysiologyPlant SciencePlant Roots01 natural sciences[SDV.BV.BOT] Life Sciences [q-bio]/Vegetal Biology/BotanicsSolanum lycopersicumSymbiosisBotanyMycorrhizaSymbiosisPhycomycetesComputingMilieux_MISCELLANEOUSGlomusPlant Diseases2. Zero hungerbiologySuperoxide Dismutasebeta-GlucosidaseChitinasesfungiFungifood and beveragesGlucan 13-beta-Glucosidase04 agricultural and veterinary sciences[SDV.BV.BOT]Life Sciences [q-bio]/Vegetal Biology/BotanicsPhytophthora nicotianaebiology.organism_classificationImmunity InnateIsoenzymesOxidative StressChitinase040103 agronomy & agriculturebiology.protein0401 agriculture forestry and fisheriesPhytophthoraSolanaceaeSignal TransductionCONTROLE DE MALADIES010606 plant biology & botanyJournal of Experimental Botany
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Proteome analysis and identification of symbiosis-related proteins from Medicago truncatula Gaertn. by two-dimensional electrophoresis and mass spect…

2002

Time-course analysis of root protein profiles was studied by two-dimensional gel electrophoresis and silver staining in the model plant Medicago truncatula, inoculated either with the arbuscular mycorrhizal fungus Glomus mosseae or with the nitrogen fixing bacterium Sinorhizobium meliloti. Protein modifications in relation to the development of both symbioses included down- and upregulations, as well as newly induced polypeptides. Matrix assisted laser desorption/ionization-time of flight-mass spectrometry after trypsin digestion clearly identified one polypeptide induced in nodulated roots as a M. truncatula leghemoglobin. Internal sequencing with a quadrupole time-of-flight mass spectrome…

Proteome[SDV]Life Sciences [q-bio]Clinical BiochemistryMass spectrometryBiochemistryMass SpectrometryAnalytical ChemistryGene Expression Regulation PlantBotanyMedicagoElectrophoresis Gel Two-DimensionalLeghemoglobinSymbiosisGlomusComputingMilieux_MISCELLANEOUSPlant ProteinsGel electrophoresisSinorhizobium melilotibiologyfungiFungifood and beveragesbiology.organism_classificationMedicago truncatula[SDV] Life Sciences [q-bio]BiochemistrySerine hydroxymethyltransferaseProteomeSinorhizobium melilotiElectrophoresis
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Fungal proteins in the extra-radical phase of arbuscular mycorrhiza: a shotgun proteomic picture

2009

International audience

Proteomics0106 biological sciencesPhysiologyGLOMUS INTRARADICESARBUSCULAR MYCORRHIZAShotgunPlant Science01 natural sciencesMass SpectrometryFungal Proteins03 medical and health sciencesSequence Analysis ProteinMycorrhizaeGlomus intraradicesBotanyDAUCUS CAROTAComputingMilieux_MISCELLANEOUS030304 developmental biologyROOT SYMBIOSIS0303 health sciencesFungal proteinMyceliumbiologyMASCOTFungiMYCORRHIZEbiology.organism_classificationPROTEOME[SDV.BV.PEP]Life Sciences [q-bio]/Vegetal Biology/Phytopathology and phytopharmacyArbuscular mycorrhizaProteomeChromatography Liquid010606 plant biology & botanyDaucus carota
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CT and MR Imaging of Lesions of Skull Base and Cranial Vault

1989

The importance of CT in examinations of the skull base, including its role in the planning of operative or radiation therapy, has long been recognized (Liliequist and Forsell 1976; Bradac et al. 1977 a, b; 1978 a, b; Hammerschlag et al. 1977; Caille et al. 1977; Lohkamp et al. 1977; Huk and Schiefer 1978; Becker et al. 1978; Weinstein et al. 1978). In the present chapter we shall review the capabilities and limitations of this modality in the diagnosis of diseases involving the bony skull base and cranial vault. A more detailed discussion of specific tumor types may be found under the appropriate headings elsewhere in the book.

Radiation therapySkullmedicine.anatomical_structurebusiness.industryFibrous dysplasiamedicine.medical_treatmentCranial vaultmedicineAnatomymedicine.diseasebusinessMr imagingGlomus tumor
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Influence of arbuscular mycorrhizal colonisation on cadmium induced Medicago truncatula root isoflavonoid accumulation.

2012

Cadmium is a serious environmental pollution threats to the planet. Its accumulation in plants affects many cellular functions, resulting in growth and development inhibition, whose mechanisms are not fully understood. However, some fungi forming arbuscular mycorrhizal symbiosis with the majority of plant species have the capacity to buffer the deleterious effect of this heavy metal. In the present work we investigated the capacity of Rhizophagus irregularis (syn. Glomus irregularis) to alleviate cadmium stress in Medicago truncatula. In spite of a reduction in all mycorrhizal parameters, plants colonized for 21 days by R. irregularis and treated by 2 mg kg(-1) cadmium displayed less growth…

Rhizophagus irregularisCoumestrolPterocarpansPhysiology[SDV]Life Sciences [q-bio]chemistry.chemical_elementmycorrhizaDown-RegulationEnvironmental pollutionPlant SciencePlant Rootschemistry.chemical_compoundSoilIsoflavonoidGlucosidesGene Expression Regulation PlantMycorrhizaeBotanyMedicago truncatulaGeneticsMedicarpinBiomassMycorrhizaheavy metalsGlomeromycotaSymbiosisGlomusPlant ProteinsCadmiumbiologyfungifood and beveragesbiology.organism_classificationisoflavonoidsIsoflavonesMedicago truncatulaAlcohol Oxidoreductaseschemistry[SDE]Environmental Sciencesleguminous plantsPlant ShootsCadmiumPlant physiology and biochemistry : PPB
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Growth response of the saltbush Atriplex nummularia L. to inoculation with the arbuscular mycorrhizal fungus Glomus intraradices

2005

Abstract Plantlets of Atriplex nummularia were inoculated with the arbuscular mycorrhizal fungi Glomus intraradices in a pot experiment. Plants were grown in a low P soil. Highly significant growth response of a Chenopodiaceae was recorded for the first time. Mycorrhizal colonization of roots was well developed, internal hyphae and vesicles were observed, but not arbuscules. These observations suggest that arbuscules are not necessary to obtain significant growth stimulation from mycorrhizal inoculation. Atriplex nummularia is already used as forage crops, its high mycorrhizal dependency offers possibilities to develop this production and revegetation strategies.

[SDE] Environmental Sciences0106 biological sciencesHypha[SDV]Life Sciences [q-bio]Fungus01 natural sciencesAtriplex nummulariaGlomus intraradicesBotanyRevegetationCover cropChenopodiaceaeComputingMilieux_MISCELLANEOUSEcology Evolution Behavior and SystematicsEarth-Surface Processes2. Zero hungerEcologybiologyInoculationfungi04 agricultural and veterinary sciences15. Life on landbiology.organism_classification[SDV] Life Sciences [q-bio]ARROCHE[SDE]Environmental Sciences040103 agronomy & agriculture0401 agriculture forestry and fisheries010606 plant biology & botanyJournal of Arid Environments
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Medicago truncatula

2012

In plants, long distance transport of sugars from photosynthetic source leaves to sink organs comprises different crucial steps depending on the species and organ types. Sucrose, the main carbohydrate for long distance transport is synthesized in the mesophyll and then loaded into the phloem. After long distance transport through the phloem vessels, sucrose is finally unloaded towards sink organs. Alternatively, sugar can also be transferred to non‐plant sinks and plant colonization by heterotrophic organisms increases the sink strength and creates an additional sugar demand for the host plant. These sugar fluxes are coordinated by transport systems. Main sugar transporters in plants compri…

[SDE] Environmental Sciences570Sucrose transporterMonosaccharide transporterMST[SDV.SA] Life Sciences [q-bio]/Agricultural scienceschampignonfungifood and beverages500Sugar partitioningArbuscular mycorrhizal symbiosisSUTsugar transport sucrose transporter SUT monosaccharide transporter MST sugar partitioning Medicago truncatula Glomus intraradices arbuscular mycorrhizal symbiosis.Pas de mot-clé en français[SDV] Life Sciences [q-bio]sucreFOS: Biological sciencesSugar transportMedicago truncatulaGlomus intraradices[SDV.BV] Life Sciences [q-bio]/Vegetal Biologyluzerne tronquée
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Medicago species affect the community composition of arbuscular mycorrhizal fungi associated with roots

2007

National audience; The symbiosis between plants and arbuscular mycorrhizal fungi (AMF) is ancient and involves 80% of terrestrial plant families. The symbiotic association between AMF and plants was described to be non specific. However, AMF were reported to influence plant community diversity and productivity. On the other way, the effect of plant genotypes belonging to closely related species on AMF diversity has not been explored so far. The aim of this work was to assess the impact of four different Medicago species, M. laciniata, M. murex, M. polymorpha and M. truncatula cv. Jemalong J5, on the composition of AM fungal community, when cultivated in a silty-thin clay soil (Mas d’Imbert,…

[SDE] Environmental SciencesGenotypeANNUAL MEDICSPhysiology[SDV]Life Sciences [q-bio]Bulk soilQUANTITATIVE POLYMERASE CHAIN REACTIONPlant ScienceBiologyMEDICAGODNA RibosomalPlant RootsLARGE RIBOSOMAL SUBINIT RIBOSOMAL DEOXYRIBONUCLEIC ACID (LSU RDNA)03 medical and health sciencesARBUSCULAR MYCORRHIZAL (AM) FUNGISpecies SpecificityMedicago laciniataMycorrhizaeLarge ribosomal subunitBotany[SDV.BV]Life Sciences [q-bio]/Vegetal BiologyMedicago polymorpha[SDV.BV] Life Sciences [q-bio]/Vegetal BiologyPhylogenyGlomusDNA PrimersGene Library030304 developmental biology0303 health sciencesMedicagofungiGenetic Variationfood and beverages04 agricultural and veterinary sciences15. Life on landRIBOBOMAL DEOXYRIBONUCLEIC ACID (LSU RDNU)biology.organism_classificationMedicago truncatula[SDV.BV.PEP]Life Sciences [q-bio]/Vegetal Biology/Phytopathology and phytopharmacy[SDV] Life Sciences [q-bio]LARGE RIBOSOMAL SUBINIT[SDE]Environmental Sciences040103 agronomy & agriculture0401 agriculture forestry and fisheriesGENETIC DIVERSITYQUANTITATIVE POLYMERASCHAIN REACTIONMedicago murex
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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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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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