Diversity and structure of ectomycorrhizal and co-associated fungal communities in a serpentine soil
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Summary
Distribution patterns of ECM-co-associated fungi hint at the importance of specific inter-fungal interactions, which are hypothesised to be a relevant factor for the maintenance ofECM diversity.
- Type
- article
- Published
- 2008-08-03
- Cited by
- 69
- References
- 84
- OpenAlex
- https://openalex.org/W18677625
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:2856159
Keywords
Allergy, Environmental health, Medicine, Immunology
References
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- Mineral Nutrition of Higher Plants
- Molecular analysis of ectomycorrhizal basidiomycete communities in a Pinus sylvestris L. stand reveals long-term increased diversity after removal of litter and humus layers.
- Vertical distribution of ectomycorrhizal fungal taxa in a podzol soil profile.
- Ectomycorrhizal Fungi and Associated Bacteria Provide Protection Against Heavy Metals in Inoculated Pine (Pinus Sylvestris L.) Seedlings
- Performance of Pinus contorta inoculated with two strains of root endophytic fungus, Phialocephala fortinii: Effects of synthesis system and glucose concentration.
- Heavy metal distribution in Suillus luteus mycorrhizas – as revealed by micro-PIXE analysis
- Effects of chromium and nickel on growth of the ectomycorrhizal fungus Pisolithus and formation of ectomycorrhizas on Eucalyptus urophylla S.T. Blake
- Zinc-tolerant Suillus bovinus improves growth of Zn-exposed Pinus sylvestris seedlings
- Ectomycorrhizas involving sebacinoid mycobionts.
- Widespread occurrence and phylogenetic placement of a soil clone group adds a prominent new branch to the fungal tree of life.
- Geographic patterns of allozyme variation in Jeffrey pine
- Extracellular and cellular mechanisms sustaining metal tolerance in ectomycorrhizal fungi.
- Mycorrhizal and pathological associations of dematiaceous fungi in roots of 7-month-old tree seedlings
- Morphological and molecular typing of the below-ground fungal community in a natural Tuber magnatum truffle-ground.
- Rhizosphere characteristics of indigenously growing nickel hyperaccumulator and excluder plants on serpentine soil.
- Zinc tolerance in Betula spp. IV: The mechanism of ectomycorrhizal amelioration of zinc toxicity
- Ecotypic response to ultramafic soils by some plant species of northwestern United States
- Shift in ectomycorrhizal community composition in Scots pine (Pinus sylvestris L.) seedling roots as a response to nickel deposition and removal of lichen cover.
Cited by
- Ectomycorrhizal roots select distinctive bacterial and ascomycete communities in Swedish subarctic forests.
- Endophytes of Forest Trees
- Diversity and host preference of fungi co-inhabiting Cenococcum mycorrhizae.
- Valuing native ectomycorrhizal fungi as a Mediterranean forestry component for sustainable and innovative solutions1
- Mitigation of antagonistic effects on plant growth due to root co-colonization by dark septate endophytes and ectomycorrhiza.
- Ectomycorrhizal fungal communities of pedunculate and sessile oak seedlings from bare-root forest nurseries
- Expanding the understanding of a forest ectomycorrhizal community by combining root tips and fruiting bodies: a case study of Tuber magnatum stands
- Genotypic variation in foliar nutrient concentrations, δ13C, and chlorophyll fluorescence in relation to tree growth of radiata pine clones in a serpentine soil
- Ectomycorrhizal Pisolithus albus inoculation of Acacia spirorbis and Eucalyptus globulus grown in ultramafic topsoil enhances plant growth and mineral nutrition while limits metal uptake.
- Molecular diversity of fungal communities in agricultural soils from Lower Austria
- Fungal Diversity Is Not Determined by Mineral and Chemical Differences in Serpentine Substrates
- The serpentine syndrome below ground: ectomycorrhizas and hypogeous fungi associated with conifers.
- Archaeorhizomycetes: Unearthing an Ancient Class of Ubiquitous Soil Fungi
- Insights into Deep-Sea Sediment Fungal Communities from the East Indian Ocean Using Targeted Environmental Sequencing Combined with Traditional Cultivation
- Contrasting soil fungal communities in Mediterranean pine forests subjected to different wildfire frequencies
- Serpentine Soils Do Not Limit Mycorrhizal Fungal Diversity
- Ascomycetes associated with ectomycorrhizas: molecular diversity and ecology with particular reference to the Helotiales.
- Evidence of adaptive tolerance to nickel in isolates of Cenococcum geophilum from serpentine soils
- Two sebacinoid ectomycorrhizae on Chinese pine
- Changes in community structure of ectomycorrhizal fungi associated with Pinus montezumae across a volcanic soil chronosequence at Sierra Chichinautzin, Mexico
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