Search results for "mycorrhizal network"

showing 5 items of 5 documents

Mycorrhizae differentially influence the transfer of nitrogen among associated plants and their competitive relationships

2021

Abstract The formation of a common mycorrhizal network among roots of different plant species growing close to each other can influence plant community dynamics, regulating plant relationships through the differential transfer of nutrients from one plant to another. However, knowledge of the mechanisms that regulate this process is poor. Here we quantify the contribution of arbuscular mycorrhizae to the transfer of N among heterospecific plants growing adjacent to each other and examine whether the differential transfer of N within the plant community via mycorrhizae can alter competitive relationships among plant species. Plants of four species (wheat, pea, flax, and chicory) were grown in…

0106 biological sciencesPlant-plant interaction15N labellingMicroorganismSoil Sciencechemistry.chemical_elementBiology01 natural sciencesNutrientSymbiosisBotanyMycorrhizal networkCommon Mycorrhizal NetworkEcologyArbuscular Mycorrhizal SymbiosiNitrogen transferPlant community04 agricultural and veterinary sciencesAgricultural and Biological Sciences (miscellaneous)NitrogenSettore AGR/02 - Agronomia E Coltivazioni Erbaceechemistry040103 agronomy & agriculturePlant species0401 agriculture forestry and fisheriesArbuscular mycorrhizal010606 plant biology & botany
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Faster acquisition of symbiotic partner by common mycorrhizal networks in early plant life stage

2016

Arbuscular mycorrhizal (AM) fungi usually improve plant performance yet our knowledge about their effects on seed germination and early plant establishment is very limited. We performed a factorial greenhouse experiment where the seeds from four low Arctic cooccurring mycorrhizal herbs (Antennaria dioica, Campanula rotundifolia, Sibbaldia procumbens, and Solidago virgaurea) were germinated alone or in the vicinity of an adult Sibbaldia plant with or without AM fungi; given either as spores or being present in a common mycorrhizal network (CMN). Three different AM fungal species were examined to assess species-specific differences in symbiont acquisition rate. Out of the four plant species i…

0106 biological sciencesfood.ingredientseed germinationAntennaria dioicaarbuscular mycorrhizal fungiSibbaldia procumbens010603 evolutionary biology01 natural sciencesSolidago virgaureafoodlcsh:QH540-549.5BotanyMycorrhizal networkEcology Evolution Behavior and Systematicscommon mycorrhizal networkEcologybiologyfungita1183food and beverages15. Life on landseedling establishmentbiology.organism_classificationSporeSeedlingGerminationSolidago virgaureakissankellota1181C100 Biologylcsh:EcologyCampanula rotundifoliaCampanula rotundifoliaCotyledonAntennaria dioica010606 plant biology & botanyEcosphere
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Carbon partitioning in a walnut-maize agroforestry system through arbuscular mycorrhizal fungi

2020

National audience; In tree-based intercropping systems, roots of trees and crops are interacting and could influence ecosystem services provided by soil microorganisms. Here, the analysis of diversity of arbuscular mycorrhiza fungi (AMF) associated with roots of walnut and maize reveals differences. Of interest, Funneliformis genus is mainly associated with maize roots, and one OTU related to an uncultured Glomus, might form a common mycorrhizal network linking roots of both plants. In addition, the analysis of 13C of mycelium living in the surrounding environment of roots, suggest that part of the carbon derived from walnut trees could be transferred to maize plants. Our results suggest th…

0106 biological sciencesfood.ingredientwalnutSoil Sciencestable isotopesPlant Sciencemaize01 natural sciencesagroforestryNutrientfoodFunneliformisEcosystemcarbon transferMycorrhizal networkGlomusMycelium2. Zero hungercommon mycorrhizal networkbiologyAgroforestryIntercropping04 agricultural and veterinary sciences15. Life on landbiology.organism_classificationArbuscular mycorrhiza[SDE]Environmental Sciences040103 agronomy & agriculture0401 agriculture forestry and fisheriesAgronomy and Crop Science010606 plant biology & botany
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Proteome adaptations under contrasting soil phosphate regimes of Rhizophagus irregularis engaged in a common mycorrhizal network.

2021

International audience; For many plants, their symbiosis with arbuscular mycorrhizal fungi plays a key role in the acquisition of mineral nutrients such as inorganic phosphate (Pi), in exchange for assimilated carbon. To study gene regulation and function in the symbiotic partners, we and others have used compartmented microcosms in which the extra-radical mycelium (ERM), responsible for mineral nutrient supply for the plants, was separated by fine nylon nets from the associated host roots and could be harvested and analysed in isolation. Here, we used such a model system to perform a quantitative comparative protein profiling of the ERM of Rhizophagus irregularis BEG75, forming a common my…

Hyphal growthRhizophagus irregularisProteomicsProteomeNitrogen[SDV]Life Sciences [q-bio]Glyoxylate cyclemycorrhizal symbiosisMicrobiologyPlant RootsPhosphatesFungal Proteins03 medical and health sciencesSoilNutrientcommon mycelial networkSymbiosisGeneticsMycorrhizal networkSymbiosisMycelium030304 developmental biology2. Zero hungerphosphate nutrition0303 health sciencesbiology030306 microbiologyfungiFungi15. Life on landextra-radical myceliumbiology.organism_classificationshotgun proteomicBiochemistryProteomeFungal genetics and biology : FGB
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Les réseaux mycéliens jouent ils un rôle dans la distribution des éléments nutritifs entre les graminées et les légumineuses ?

2017

[SDV] Life Sciences [q-bio][SDE] Environmental Sciencesagroecologynutrition[SDV]Life Sciences [q-bio][SDE]Environmental Sciencesmycorrhizal network[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal Biology
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