Search results for "Mycorrhiza"

showing 10 items of 284 documents

Impact of water stress on plant water relations, growth and mycorhization of Acacia tortilis ssp. raddiana: Interactions of the stress severity and d…

2010

Mycorrhizae are commonly reported to improve drought resistance of the host plant. Investigating factors controlling the plant-resistance strategy to water stress can however lead to a suitable management of mycorrhizal plants under drought. Here, we focused on the impact of interactions of the AM fungal species and water stress severity and duration on mycorrhizal Acacia tortilis ssp. raddiana in terms of plant growth, mycorhization and water relations. We used three Glomus species, which were G. mosseae, G. deserticola and G. intraradices. We applied three watering regimes that were maximum water holding non-stress regime, mild-severe water stress and severe water stress. Measurements wer…

MycorrhizaeAcacia tortiliwater streGlomus spp.Settore BIO/19 - Microbiologia Generale
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Arbuscular mycorrhiza - studies on the geosiphon symbiosis lead to the characterization of the first glomeromycotan sugar transporter

2007

Article Addendum ; International audience; The intimate arbuscular mycorrhiza (AM) association between roots and obligate symbiotic Glomeromycota (‘AM fungi’) ‘feeds’ about 80% of land plants. AM forming fungi supply land plants with inorganic nutrients and have an enormous impact on terrestrial ecosystems. In return, AM fungi obtain up to 20% of the plant‑fixed CO2, putatively as monosaccharides. In a recent work we have reported the characterization of the first glomeromycotan monosaccharide transporter, GpMST1, and its gene sequence. We discuss that AM fungi might take up sugars deriving from plant cell‑wall material. The GpMST1 sequence delivers valuable data for the isolation of orthol…

ObligatebiologyEcologyGEOSIPHON SYMBIOSISfungiARBUSCULAR MYCORRHIZAPlant ScienceHEXOSESbiology.organism_classificationMONOSACCHARIDE TRANSPORTERArticle AddendumGlomeromycotaArbuscular mycorrhiza[SDV.GEN.GPL]Life Sciences [q-bio]/Genetics/Plants geneticsNutrientSymbiosis[SDV.GEN.GPL] Life Sciences [q-bio]/Genetics/Plants geneticsGeosiphonBotanySugar transporterGene sequence
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Raspberry biotisation for quality plant production

2008

International audience; Biotisation with beneficial mycorrhizal fungi and bacteria has been shown to be efficient in improving raspberry plant growth, particularly during the acclimatisation phase of in vitro produced plants. It also increases raspberry tolerance to Phytophthora fragariae var rubi which causes disastrous effects in the field and is not efficiently controlled by fungicides. The contamination of young plants during their multiplication has been a major source of spreading for this disease. For quality insurance, it is therefore important to produce plants which are healthy and devoid of P. fragariae var rubi contamination. In addition, the raspberry market is growing followin…

PHYTOPHTHORA FRAGARIAE VAR RUBI[SDV] Life Sciences [q-bio][SDE] Environmental SciencesARBUSCULAR MYCORRHIZALBIOTISATION[SDV]Life Sciences [q-bio][SDE]Environmental SciencesfungiRASPBERRYfood and beveragesComputingMilieux_MISCELLANEOUSPHYTOPHTHORA FRAGARIAARBUSCULAR MYCORRHIZAL FUNGI
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Transgenerational effects of plant sex and arbuscular mycorrhizal symbiosis

2013

In gynodioecious plants, females are predicted to produce more and/or better offspring than hermaphrodites in order to be maintained in the same population. In the field, the roots of both sexes are usually colonized by arbuscular mycorrhizal (AM) fungi. Transgenerational effects of mycorrhizal symbiosis are largely unknown, although theoretically expected. We examined the maternal and paternal effects of AM fungal symbiosis and host sex on seed production and posterior seedling performance in Geranium sylvaticum, a gynodioe- cious plant. We hand-pollinated cloned females and hermaphrodites in symbiosis with AM fungi or in nonmycorrhizal conditions and measured seed number and mass, and see…

PhysiologyGeraniumPopulationGerminationPlant ScienceGynodioecyBiologySymbiosisMycorrhizaeBotanySymbiosiseducationeducation.field_of_studyHost (biology)ta1183fungiMaternal effectfood and beveragesbiology.organism_classificationPlant LeavesSeedlingsGerminationSeedlingSeedsGeranium sylvaticumLinear Modelsta1181New Phytologist
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Dynamic of the genetic structure of bacterial and fungal communities at different developmental stages of Medicago truncatula Gaertn. cv. Jemalong li…

2006

International audience; The genetic structure of bacterial and fungal communities was characterized in the rhizosphere of Medicago truncatula Gaertn. cv. Jemalong line J5 at five developmental stages (three vegetative and two reproductive stages), and in three compartments (bulk soil, rhizosphere soil and root tissues). The genetic structure of microbial communities was determined by cultivation-independent methods using directly extracted DNA that was characterized by automated ribosomal intergenic spacer analysis (ARISA). Principal component analyses (PCA) indicate that, for all developmental stages, the genetic structure of microbial communities differed significantly by compartment, wit…

PhysiologyRibosomal Intergenic Spacer analysisBulk soilPopulation geneticsPlant ScienceBiologyPlant RootsRhizobiaSoil03 medical and health sciencesSymbiosisMycorrhizaeMedicago truncatulaBotanyMICROBIAL COMMUNITIESEcosystem030304 developmental biology2. Zero hunger0303 health sciencesRhizosphereGENETIC STRUCTUREBacteriaSYMBIOTIC ASSOCIATIONSMEDICAGO TRUNCULATAPLANT DEVELOPMENTFungiANALYSE COMPOSANTE PRINCIPALE04 agricultural and veterinary sciences15. Life on landbiology.organism_classificationMedicago truncatula[SDV.BV.PEP]Life Sciences [q-bio]/Vegetal Biology/Phytopathology and phytopharmacySTADE DEVELOPPEMENTGenetic structure040103 agronomy & agriculture0401 agriculture forestry and fisheriesRhizome
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Detection of a plant enzyme exhibiting chlorogenate-dependant caffeoyltransferase activity in methanolic extracts of arbuscular mycorrhizal tomato ro…

2012

When Glomus intraradices-colonised tomato roots were extracted in methanol at 6 degrees C, chlorogenic acid (5-caffeoylquinic acid), naturally present in the extract, was slowly converted by transesterification into methyl caffeate. The progress of the reaction could be monitored by HPLC. The reaction only occurred when the ground roots were left in contact with the hydro-alcoholic extract and required the presence of 15-35% water in the mixture. When the roots were extracted in ethanol, chlorogenic acid was transformed to ethyl caffeate in the same conditions. The reaction was also detected in Glomus mosseae-colonised tomato root extracts. It was also detectable in non-mycorrhizal root ext…

Physiology[SDV]Life Sciences [q-bio]Arbuscular mycorrhizal fungiPlant SciencePlant RootsSubstrate SpecificityACBIOSYNTHESISchemistry.chemical_compoundTRANSFERASESolanum lycopersicumMycorrhizaeMethyl caffeateSWEET-POTATO ROOTSFood scienceEnzyme InhibitorsGlomusChromatography High Pressure LiquidPlant ProteinsbiologyTemperaturePlant physiologyfood and beveragesChlorogenic acidBiochemistryFUNGUSCOFFEE[SDE]Environmental SciencesGENESMETABOLISMCaffeoyltransferaseTomatoCaffeic AcidsChlorogenic acidTransferasesGenetics[SDV.BV]Life Sciences [q-bio]/Vegetal BiologyEnzyme AssaysEthanolEsterificationPlant ExtractsfungiEthyl caffeatePlant Components Aerialbiology.organism_classificationRootsEnzyme assayEnzyme ActivationPhenylmethylsulfonyl FluorideTransesterificationchemistrybiology.proteinMethanolCAFFEIC ACIDCATALYZED SYNTHESIS
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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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Effects of arbuscular mycorrhizal fungi and maternal plant sex on seed germination and early plant establishment.

2015

Premise of the study: Arbuscular mycorrhizal fungi usually enhance overall plant performance, yet their effects on seed germi- nation and early plant establishment, crucial steps in plant cycles, are generally overlooked. In gynodioecious species, sexual dimorphism in these traits has been reported, with females producing seeds that germinate at a faster rate than seeds from hermaphrodites. • Methods: Using the gynodioecious plant Geranium sylvaticum, I investigated in a greenhouse experiment whether the presence of arbuscular mycorrhizal spores affects seed germination and early plant establishment, examining at the same time whether the sex of the mother producing the seeds also influence…

Plant growthSeedlingGeraniumArbuscular mycorrhizal fungal sporesGerminationGynodioecyPlant ScienceGynodioecyArbuscular mycorrhizal fungiGeranium sylvaticumSexual dimorphismMycorrhizaeBotanyGeneticsEcology Evolution Behavior and SystematicsbiologyReproductionta1183fungifood and beveragesbiology.organism_classificationSporeSexual dimorphismSeedlingGerminationGeranium sylvaticumSeedsta1181American journal of botany
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Molecular and agronomic responses to plant-growth promoting rhizobacteria (PGPR) and arbuscular mycorrhizal (AM) fungi in durum wheat

2013

Plant-growth promoting rhizobacteria (PGPR) and arbuscular mycorrhizal (AM) fungi contribute to plant nutrient uptake by increasing the availability of nutrients and the root adsorbing surface (Garg et al., 2006; Asghar et al. 2002). The first objective of this study was to determine the effects of these associations on plant total biomass and grain yield in durum wheat (cv. Anco Marzio). Secondly, we aimed to analyze the root transcriptomic and metabolomic changes in response to mychorrizal infections and the expression pattern of key genes involved in nutrient uptake and stress responses. Field analysis were carried out in inner Sicily, a typical Mediterranean area. Four types of biotic a…

Plant-growth promoting rhizobacteriaorganic fertilizationSettore AGR/07 - Genetica AgrariaArbuscular mycorrhizal funginutrient uptake genetriticum durumSettore AGR/02 - Agronomia E Coltivazioni Erbacee
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High diversity of root endophytes in the pioneer endemic Betula aetnensis Raf. colonizing volcanic lavas

2019

Introduction Betula aetnensis Raf. is an endemic tree species native to Sicily of particular conservation value, that establishes on nutrient-poor and water-limited lava of Etna volcano. In these harsh conditions plant-microbe interactions could play a crucial role in plant growth, resource uptake and resistance to abiotic stresses. The aim of this study is to investigate the root-associated microbial community of B. aetnensis growing in its natural habitat. The comparison between individuals from natural habitats and nursery-grown seedlings aims to assess the symbiotic status of plant material used for afforestation purposes. Materials and Methods Betula aetnensis individuals were collecte…

Primary successionSettore AGR/05 - Assestamento Forestale E SelvicolturaFingerprinting methodMycorrhizaeBetula pendulaMediterranean forestPhialocephalaSettore BIO/19 - Microbiologia Generale
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