Search results for "Arbuscular mycorrhizal fungi"

showing 9 items of 59 documents

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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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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Fungal root endophyte associations of plants endemic to the Pamir Alay Mountains of Central Asia.

2011

The fungal root endophyte associations of 16 species from 12 families of plants endemic to the Pamir Alay Mountains of Central Asia are presented. The plants and soil samples were collected in Zeravshan and Hissar ranges within the central Pamir Alay mountain system. Colonization by arbuscular mycorrhizal fungi (AMF) was found in 15 plant species; in 8 species it was of the Arum type and in 4 of the Paris type, while 3 taxa revealed intermediate arbuscular mycorrhiza (AM) morphology. AMF colonization was found to be absent only in Matthiola integrifolia, the representative of the Brassicaceae family. The AM status and morphology are reported for the first time for all the species analyzed a…

biologyAgricultural and Biological Sciences(all)AsyneumafungiArum typeConservationbiology.organism_classificationEndophyteArum/Paris morphotypesArticleGlomeromycotaArbuscular mycorrhizaBotanyArbuscular mycorrhiza (AM)Dark septate endophytes (DSE)ColonizationOlpidiumGeneral Agricultural and Biological SciencesParis typeGlomeromycotaArbuscular mycorrhizal fungi (AMF) species diversitySymbiosis (Philadelphia, Pa.)
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Host filtering, not competitive exclusion, may be the main driver of arbuscular mycorrhizal fungal community assembly under high phosphorus

2023

A major goal in ecology is understanding the factors which determine the diversity and distribution of organisms. The outcome of the symbiotic relationship between plants and arbuscular mycorrhizal (AM) fungi is strongly influenced by soil phosphorus (P) availability. Despite this knowledge, there is still much to uncover about how soil P status can shape the taxonomic and phylogenetic assembly of root-colonising AM fungi. Additionally, there is a paucity of understanding about the implications of these changes for the outcome of the AM symbiosis in terms of plant growth, nutrient status and defence traits. We conducted a factorial pot experiment where sorghum (Sorghum bicolor) was grown un…

maaperäplant defencefylogenetiikkamykorritsasienetcommunity assemblyphylogenetic diversityarbuscular mycorrhizal fungieliöyhteisötsienetfosforiEcology Evolution Behavior and Systematicsplant phosphorus
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Effects of soil inoculation with arbuscular mycorrhizal fungi on plant growth and nutrient uptake of some Mediterranean species grown under rainfed f…

2012

phosphorous uptakesoil inoculumarbuscular mycorrhizal fungiNitrogen uptakeSettore AGR/02 - Agronomia E Coltivazioni Erbacee
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Soil inoculation with symbiotic microorganisms promotes plant growth and nutrient transporter genes expression in durum wheat

2015

In a field experiment conducted in a Mediterranean area of inner Sicily, durum wheat was inoculated with plant growth-promoting rhizobacteria (PGPR), with arbuscular mycorrhizal fungi (AMF), or with both to evaluate their effects on nutrient uptake, plant growth, and the expression of key transporter genes involved in nitrogen (N) and phosphorus (P) uptake. These biotic associations were studied under either low N availability (unfertilized plots) and supplying the soil with an easily mineralizable organic fertilizer. Regardless of N fertilization, at the tillering stage, inoculation with AMF alone or in combination with PGPR increased the aboveground biomass yield compared to the uninocula…

plant growth promotionmediterranean organic N uptake plant growth promotion Gene Expression Regulation field experiments arbuscular mycorrhizal fungi (AMF) plant growth-promoting rhizobacteriaplant growth-promoting rhizobacteriaMicroorganismchemistry.chemical_elementmediterraneanPlant ScienceBiologylcsh:Plant cultureRhizobacteriafield experimentschemistry.chemical_compoundHuman fertilizationNutrientplant growth promoting-rhizobacteriaSettore AGR/07 - Genetica Agrariamediterranean; organic N uptake; plant growth promotion; Gene Expression Regulation; field experiments; arbuscular mycorrhizal fungi (AMF); plant growth-promoting rhizobacteriaAmmoniumlcsh:SB1-1110Original ResearchInoculationPhosphorusfungifood and beveragesSettore AGR/02 - Agronomia E Coltivazioni ErbaceechemistryAgronomyGene Expression Regulationarbuscular mycorrhizal fungi (AMF)Organic fertilizerorganic N uptake
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Nitrogen Availability Drives Mycorrhizal Effects on Wheat Growth, Nitrogen Uptake and Recovery under Salt Stress

2022

The arbuscular mycorrhizal (AM) symbiosis is generally considered effective in improving salt tolerance in plants; however, the advantages it offers can vary greatly depending on the context in which it occurs; furthermore, the mechanisms underlying these responses are still unclear. A study was conducted to investigate the role of nitrogen (N) availability on the effectiveness of AM symbiosis in durum wheat (Triticum durum Desf.) plants grown under salt stress. Plants were grown in pots in the absence or in presence of salt stress (soil electrical conductivity of 1.50 and 13.00 dS m−1, respectively), with or without AM fungi inoculation (Rhizophagus irregularis and Funneliformis mosseae), …

salt stress mitigationarbuscular mycorrhizal fungiplant growthnitrogen alleviates salt stressarbuscular mycorrhizal fungi; salt stress mitigation; plant growth; nitrogen alleviates salt stressAgronomy and Crop ScienceSettore AGR/02 - Agronomia E Coltivazioni ErbaceeAgronomy
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The role of symbiotic arbuscular mycorrhizal fungi (Glomeromycota) in roots of the host plant Deschampsia flexuosa in vegetation succession of inland…

2013

Suurin osa maalla elävistä putkilokasvilajeista ja -heimoista elää symbioosissa mykorritsasienten kanssa. Mykorritsatyyppejä on useita, ja näistä yleisin ja vanhin on arbuskelimykorritsasymbioosi, jossa Glomeromycota-sienet muodostavat arbuskelimykorritsaa (AM) kasvien juurien sisällä. Tämä kasvin ja sienen välinen tiivis suhde on molempia osapuolia hyödyttävä symbioosi. Toisenvarainen AM sieni on riippuvainen kasvin tuottamasta orgaanisesta hiilestä, ja vastapalveluksena sieni voi parantaa kasvin ravinteiden- ja vedenottokykyä, sekä suojata tätä taudinaiheuttajilta, tuhohyönteisiltä ja laiduntajilta, sekä parantaa kasvin kuivuudensietokykyä. Vaikuttamalla isäntäkasvien kasvuun ja resurssie…

sukkessiosymbioosiputkilokasvitArbuscular mycorrhizal fungimycorrhizamykorritsasubarcticGlomeromycotainland sand dunesDeschampsia flexuosasymbiosissuccession
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