Search results for "Mycorrhiza"

showing 10 items of 284 documents

Effect of Endomycorrhizal Infection on Root System Development in the Apple Rootstock (Malus domestica Borkh.) M26

1994

A mycorrhizal fungus (Glomus intraradices) is able to promote shoot growth of the apple rootstock M26. We have shown that the root system is also modified by the presence of the endophyte. Mycorrhiza formation reduced the shoot to root ratio and increased the specific root length. We show that in apple modifications in root architecture are mainly due to a reduction in the elongation of the different root orders.

[SDV] Life Sciences [q-bio]ddc:580[SDV]Life Sciences [q-bio]MycorrhizaApple rootstockComputingMilieux_MISCELLANEOUSRoot development
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Acaulospora sieverdingii, an ecologically diverse new fungus in the Glomeromycota, described from lowland temperate Europe and tropical West Africa

2011

International audience; From a survey of arbuscular mycorrhizal (AM) fungi in agro-ecosystems in Central Europe and West Africa, an undescribed species of Acaulospora was recovered and is presented here under the epithet Acaulospora sieverdingii. Spores of A. sieverdingii are 60-80 mu m in diam, hyaline to subhyaline to rarely light yellow and have multiple pitted depressions on the outer spore wall similar to those known for A. alpina, A. cavernata, A. paulinae and A. scrobiculata. The pits in A. sieverdingii are tiny and often irregular and resemble small dots (0.8-1.8 mu m) or lines (0.5-1.2 x 1.8-2.5 mu m). Analyses of the ITS1, 5.8S subunit and ITS2 regions of the rDNA resolved each of…

[SDV] Life Sciences [q-bio]generalandprimersp nov[SDV]Life Sciences [q-bio]identificationarbuscular mycorrhizal fungidnarootendogonaceae
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Studies of root colonization by a microcosm community of arbuscular mycorrhizal fungi unsing nested PCR

1998

International audience

[SDV] Life Sciences [q-bio]microcosm community of arbuscular mycorrhizal funginested PCR[SDV]Life Sciences [q-bio]root colonizationComputingMilieux_MISCELLANEOUS
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Identification of functional markers of mycorrhiza efficiency in vineyard

2021

Arbuscular mycorrhizal fungi form a mutualistic symbiotic association with more than 80% ofland plants, including vines. Advantages of this mutualistic symbiosis are countless. Rootcolonisation by mycorrhizal fungi is mainly evaluated through staining and microscopicobservation. However those technics do not allow to differentiate different mycorrhizal fungi.In order to overcome those limits other tools, like antibodies, isoenzymes and molecular biologytechnics, can be used. Nevertheless, all of these methods “only” allow detection of the presenceof mycorrhizal fungi, whereas no information is provided on the proper mycorrhizal symbiosisfunctioning, and therefore on the benefits provided to…

[SDV] Life Sciences [q-bio]molecular detection kitarbuscular mycorrhizavineyardfunctional markers
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Exploiting Glomus intraradices sequencing data to dissect molecular mechanisms of plant genome control over fungal gene expression in mycorrhiza

2006

International audience

[SDV] Life Sciences [q-bio]molecular mechanisms of plant genome control[SDV]Life Sciences [q-bio]sequencing datafungal gene expressionmycorrhizaGlomus intraradicesComputingMilieux_MISCELLANEOUS
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Services provided by soil microorganisms to improve plant phosphate nutrition

2022

Since the first Green Revolution, agricultural practices have been based on the massive use of synthetic fertilisers and plant protection products. Since then, global consumption of phosphate fertilisers has more than tripled, reaching 47 million tonnes in 2019. Current projections estimate that phosphate rock stocks (natural phosphorus resources for fertiliser production) could be depleted within the next century, leading us to change our agricultural practices. In soils, P is mainly present in complexed forms that are not easily accessible to plants. To reduce the use of phosphate fertilisers, it is necessary to make this complexed phosphate accessible to plants. This can be done by benef…

[SDV] Life Sciences [q-bio]plant growth promoting rhizobacteriarhizobactéries promotrices de la croissances des plantesmycorhize à arbusculesarbuscular mycorrhizapomme de terrepotatophosphate
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Sulfate transporters in the plant’s response to drought and salinity: regulation and possible functions

2014

International audience; Drought and salinity are two frequently combined abiotic stresses that affect plant growth, development, and crop productivity. Sulfate, and molecules derived from this anion such as glutathione, play important roles in the intrinsic responses of plants to such abiotic stresses. Therefore, understanding how plants facing environmental constraints re-equilibrate the flux of sulfate between and within different tissues might uncover perspectives for improving tolerance against abiotic stresses. In this review, we took advantage of genomics and post-genomics resources available in Arabidopsis thaliana and in the model legume species Medicago truncatula to highlight and …

[SDV]Life Sciences [q-bio]ArabidopsisPlant Sciencetransporterssulfatelcsh:Plant cultureSULFUR STARVATIONVESICULAR-ARBUSCULAR MYCORRHIZAEchemistry.chemical_compoundMini Review ArticleArabidopsisBotanyArabidopsis thalianaLOTUS-JAPONICUS[SDV.BV]Life Sciences [q-bio]/Vegetal Biologylcsh:SB1-1110SulfateROOT-NODULESGENE-EXPRESSION2. Zero hungerAbiotic componentbiologyIDENTIFICATIONEcologyfungisulfate;transporters;abiotic stresses;M. truncatula;Arabidopsis;VESICULAR-ARBUSCULAR MYCORRHIZAE;ARABIDOPSIS-THALIANA;MEDICAGO-TRUNCATULA;SALT STRESS;GENE-EXPRESSION;SULFUR STARVATION;LOTUS-JAPONICUS;ROOT-NODULES;MAIZE ROOTS;IDENTIFICATIONfood and beverages15. Life on landbiology.organism_classificationMEDICAGO-TRUNCATULAMAIZE ROOTSSulfate transportMedicago truncatulaabiotic stressesSalinitySALT STRESSchemistry[SDE]Environmental SciencesARABIDOPSIS-THALIANAAdaptationM. truncatulaFrontiers in Plant Science
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The Largest Subunit of RNA Polymerase II as a New Marker Gene to Study Assemblages of Arbuscular Mycorrhizal Fungi in the Field

2014

Due to the potential of arbuscular mycorrhizal fungi (AMF, Glomeromycota) to improve plant growth and soil quality, the influence of agricultural practice on their diversity continues to be an important research question. Up to now studies of community diversity in AMF have exclusively been based on nuclear ribosomal gene regions, which in AMF show high intra-organism polymorphism, seriously complicating interpretation of these data. We designed specific PCR primers for 454 sequencing of a region of the largest subunit of RNA polymerase II gene, and established a new reference dataset comprising all major AMF lineages. This gene is known to be monomorphic within fungal isolates but shows an…

[SDV]Life Sciences [q-bio]lcsh:MedicineDNA barcodinglaw.inventionGlomeromycotaPlant MicrobiologylawMycorrhizaeCommunity Assemblylcsh:SciencePolymerase chain reactionPhylogenyGeneticsPrincipal Component AnalysisMultidisciplinaryEcologycroissance des plantesFungal geneticsAgricultureBiodiversityExonsSoil EcologyCommunity Ecology[SDE]Environmental SciencesRNA Polymerase IIResearch ArticleSequence analysisGenes FungalMolecular Sequence DataSoil ScienceMycologyBiologychampignon mycorhizienMarker geneMicrobiologyZea mayspcrMutualismBotany[SDV.BV]Life Sciences [q-bio]/Vegetal BiologyDNA Barcoding TaxonomicGlomeromycotalcsh:RfungiEcology and Environmental SciencesBiology and Life SciencesRibosomal RNAbiology.organism_classificationSpecies InteractionsProtein SubunitsPyrosequencinglcsh:QMycorrhizaAgronomic Ecologyqualité du solAgroecologyPLoS ONE
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Identification of genes activated during arbuscular mycorrhiza interactions by suppressive substractive hybridisation and cloning of differential exp…

2000

International audience

arbuscular mycorrhiza interactions[SDV] Life Sciences [q-bio][SDV]Life Sciences [q-bio]suppressive substractive hybridisationIdentification of genes activatedComputingMilieux_MISCELLANEOUScloning of differential expresed cDNA
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Mycorrhizal symbiosis changes host nitrogen source use

2021

Abstract Purpose The ecological importance of arbuscular mycorrhizal fungi (AMF) in plant acquisition of inorganic and organic sources of nitrogen (N) is not clear. To improve understanding of the plant N nutrition ecology, we tested the effect of intraspecific competition and AMF in plant N source use in growth and N acquisition. Methods Solidago virgaurea was grown in microcosms in a fully factorial experiment under greenhouse conditions. The factors tested were intraspecific competition between seedlings and adult plants (yes, no), N source (NH4, glycine) and AMF (inoculated with Glomus hoi, not inoculated). Results When grown separately, non-mycorrhizal seedling growth was highest when …

arktinen alueplant competitionfungikasvifysiologiafood and beveragesSoil SciencePlant ScienceArbuscular mycorrhizal fungi (AMF)δ15N isotopic signaturesekologinen lokeroArctictyppiSolidago virgaureanitrogen (N)mykorritsasienetniche partitioningmykorritsaasterikasvitPlant and Soil
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