Common arbuscular mycorrhizal networks amplify competition for phosphorus between seedlings and established plants.
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Enhancement of faba bean competitive ability by arbuscular mycorrhizal fungi is highly correlated with dynamic nutrient acquisition by competing wheat.The potential of Dark Septate Endophytes to form root symbioses with ectomycorrhizal and ericoid mycorrhizal middle European forest plantsCrop acquisition of phosphorus, iron and zinc from soil in cereal/legume intercropping systems: a critical reviewUsing mycorrhiza-defective mutant genotypes of non-legume plant species to study the formation and functioning of arbuscular mycorrhiza: a review.Plant growth responses to elevated atmospheric CO2 are increased by phosphorus sufficiency but not by arbuscular mycorrhizas.Common mycorrhizal networks and their effect on the bargaining power of the fungal partner in the arbuscular mycorrhizal symbiosis.Local and distal effects of arbuscular mycorrhizal colonization on direct pathway Pi uptake and root growth in Medicago truncatula.Mycorrhizal phosphate uptake pathway in maize: vital for growth and cob development on nutrient poor agricultural and greenhouse soils.Arbuscular common mycorrhizal networks mediate intra- and interspecific interactions of two prairie grasses.Fungal nutrient allocation in common mycorrhizal networks is regulated by the carbon source strength of individual host plants.Nicotiana attenuata's capacity to interact with arbuscular mycorrhiza alters its competitive ability and elicits major changes in the leaf transcriptome.Suppression of the activity of arbuscular mycorrhizal fungi by the soil microbiota.Underground allies: how and why do mycelial networks help plants defend themselves?: What are the fitness, regulatory, and practical implications of defence-related signaling between plants via common mycelial networks?Common mycorrhizal networks amplify competition by preferential mineral nutrient allocation to large host plants.Reducing Water Availability Impacts the Development of the Arbuscular Mycorrhizal Fungus Rhizophagus irregularis MUCL 41833 and Its Ability to Take Up and Transport Phosphorus Under in Vitro Conditions.Reduced mycorrhizal responsiveness leads to increased competitive tolerance in an invasive exotic plantInfluence of soil microbiota in nurse plant systemsIntegrating physiological, community, and evolutionary perspectives on the arbuscular mycorrhizal symbiosisArbuscular mycorrhizal fungi contribute to overyielding by enhancing crop biomass while suppressing weed biomass in intercropping systemsMycorrhizal strategies of tree species correlate with trailing range edge responses to current and past climate changeAphid infestation in the phyllosphere affects primary metabolic profiles in the arbuscular mycorrhizal hyphosphere
P2860
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P2860
Common arbuscular mycorrhizal networks amplify competition for phosphorus between seedlings and established plants.
description
2013 nî lūn-bûn
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name
Common arbuscular mycorrhizal ...... dlings and established plants.
@en
Common arbuscular mycorrhizal ...... dlings and established plants.
@nl
type
label
Common arbuscular mycorrhizal ...... dlings and established plants.
@en
Common arbuscular mycorrhizal ...... dlings and established plants.
@nl
prefLabel
Common arbuscular mycorrhizal ...... dlings and established plants.
@en
Common arbuscular mycorrhizal ...... dlings and established plants.
@nl
P2093
P2860
P356
P1433
P1476
Common arbuscular mycorrhizal ...... dlings and established plants.
@en
P2093
Marie P Merrild
Søren Rosendahl
P2860
P304
P356
10.1111/NPH.12351
P407
P577
2013-06-06T00:00:00Z