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93 results for “Arbuscular mycorrhizal fungi”

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dryad28/100

VTC proteins of arbuscular mycorrhizal fungi

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publicFeb 2022View details →
dryad28/100

Data from: Ancient plants with ancient fungi: liverworts associate with early-diverging arbuscular mycorrhizal fungi

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publicSep 2018View details →
dryad28/100

Precipitation and temperature shape the biogeography of arbuscular mycorrhizal fungi across a 1500 km latitudinal transect in the Brazilian Caatinga

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publicMar 2022View details →
dryad28/100

Increasing flavonoid concentrations in root exudates enhance associations between arbuscular mycorrhizal fungi and an invasive plant

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publicDec 2020View details →
geo24/100

Transcriptome analysis provides insights into the mechanism of salt tolerance in rice colonized by arbuscular mycorrhizal fungi

GEO Series GSE200863. Oryza sativa. 23 samples. Type: Expression profiling by high throughput sequencing.

openGEO-OpenApr 2022View details →
geo24/100

Analysis of gene expression in leaves of Medicago truncatula plants inoculated with arbuscular mycorrhizal fungi and plants fertilized with phosphate

GEO Series GSE80610. Medicago truncatula. 16 samples. Type: Expression profiling by array.

openGEO-OpenApr 2016View details →
zenodo24/100

Long-term persistence of arbuscular mycorrhizal fungi in the rhizosphere and bulk soils of non-host Brassica napus and their networks of co-occurring microbes

<p>Arbuscular mycorrhizal fungi (AMF) are obligate plant symbionts that improve the nutrition and health of their host. Most, but not all crops form a symbiosis with AMF. It is the case for canola (<em>Brasica napus</em>), an important crop in the Canadian prairies that is known to not form this association. From 2008 to 2018, an experiment was replicated at three locations of the Canadian prairies and it was used to assess the impact of canola on the community of AMF naturally occurring in three cropping systems, canola monoculture, canola in a two rotation systems (two-years, canola-wheat and three-years barley-pea-canola). We sampled canola rhizosphere and bulk soils to (i) determine diversity and community structure of AMF, and (ii) assess how these AMF communities interact with other fungi and bacteria. We detected 49 AMF Amplicon Sequence Variant (ASV) in canola rhizosphere and bulk soils, confirming the persistence of a diversified AMF community in canola-planted soil, even after 10 years of canola monoculture, which was unexpected considering that canola is among non-mycorrhizal plants. Network analysis revealed a broad range of potential interactions between canola-associated AMF and some fungal and bacterial taxa. We report for the first time that two AMF,&nbsp;<em>Funneliformis mosseae</em>&nbsp;and&nbsp;<em>Rhizophagus iranicus,</em>&nbsp;shared their bacterial cohort almost entirely in bulk soil. Our results suggest the existence of non species-specific AMF-bacteria or AMF-fungi relationships that could benefit AMF in absence of host plants. The persistence of an AMF community in canola rhizosphere and bulk soils bring a new light on AMF ecology and lead to new perspectives for further studies about AMF and soil microbes interactions and AMF subsistence without mycotrophic host plants.</p>

opencc-by-4.0Nov 2021View details →
zenodo24/100

Resolving the haplotypes of arbuscular mycorrhizal fungi highlights the role of two nuclear populations in host interactions

<p>This repository contains the annotations, analyses and scripts used to create the figures for the dikaryotic strains of <em>R. irregularis</em> chromosome assemblies.</p>

opencc-by-4.0Aug 2023View details →
dryad24/100

Data from: Succession of arbuscular mycorrhizal fungi along a 52-year agricultural recultivation chronosequence

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publicOct 2018View details →
edi20/100

Biodiversity of arbuscular mycorrhizal fungi in central Arizona-Phoenix

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openOpenJan 2020View details →
geo16/100

Arbuscular mycorrhizal fungi and carrot demonstrate contrasting responses to drought stress as revealed through a dual transcriptomic approach

GEO Series GSE189806. Rhizophagus irregularis; Daucus carota. 16 samples. Type: Expression profiling by high throughput sequencing.

openGEO-OpenJun 2023View details →
zenodo12/100

Data from: How arbuscular mycorrhizal fungi drives herbaceous plants' C: N: P stoichiometry?

<p>Plant element stoichiometry is fundamental for preserving growth-related terrestrial ecosystem structures and functions. However, effects of arbuscular mycorrhizal fungi (AMF) on herbaceous plant element stoichiometry (carbon (C), nitrogen (N), and phosphorus (P)) remain unclear. In this study, we aimed at evaluating the potential effects of AMF on herbaceous plant C, N and P concentration and their C:N:P stoichiometry worldwide through a quantitative meta-analysis. We observed that AMF reduced C:P and N:P ratios in the shoot of plants by 35.83% and 54.23%, respectively, and in plant root organs by 36.24% and 46.35%, respectively. Conversely, C:N ratios increased in roots by 6.61%. The negative effect of AMF on N:P and C:P ratios in plant shoots and root organs is mainly attributed to the plant benefits in P and N concentrations. AMF impact on plant C:N:P stoichiometry depends on fungal and plant functional group identities and soil nutrient availability. Our results suggest that plant functional group identity affects plant nutrient concentration, which, in turn, controls herbaceous plant C:N:P stoichiometry. Also, we emphasize the importance of abiotic and biotic environmental factors in changing AMF effects on plant element stoichiometry. Therefore, clarifying the relationship between AMF and herbaceous plant C:N:P stoichiometry will improve our understanding of herbaceous plant stoichiometric variations in terrestrial ecosystems.</p>

restrictedJun 2022View details →
zenodo12/100

A SYSTEMATIC REVIEW OF THE EFFECTS OF ARBUSCULAR MYCORRHIZAL FUNGI ON ROOT-LESION NEMATODES, PRATYLENCHUS SPP.

<p>Supplementary material for: &quot;A systematic review of the effects of arbuscular mycorrhizal fungi on root-lesion nematodes <em>Pratylenchus</em> spp.&quot; published in&nbsp;<em>Frontiers in Plant Science</em> 11, 923, and for &quot;Appendix A&quot; of the PhD thesis entitled <strong>&quot;</strong>The interaction between arbuscular mycorrhizal fungi, rhizobia and root-lesion nematodes (Pratylenchus thornei) in mung bean (Vigna radiata)&quot; by Elaine C Gough</p> <p>The Supplementary material can also be found online at&nbsp;https://www.frontiersin.org/articles/10.3389/fpls.2020.<br> 00923/full#supplementary-material</p>

restrictedJul 2020View details →

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