Ectomycorrhiza and the open nitrogen cycle in an afrotropical rainforest.
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Summary
Enzyme activities and stable isotope patterns of ectomycorrhizas in a Gabon rainforest shed some light on the role of these fungi in accessing nutrients from organic sources, and Lack of correlation between both parameters raises the question whether both indicate the same aspects of mineral nutrition or uptake fromorganic sources.
- Type
- letter
- Published
- 2012-09-01
- Cited by
- 11
- References
- 11
- OpenAlex
- https://openalex.org/W1495010064
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:37126054
Keywords
Ectomycorrhiza, Rainforest, Biology, Ecology, Symbiosis
References
- Slowed decomposition is biotically mediated in an ectomycorrhizal, tropical rain forest
- Solute Movement in the Rhizosphere
- Nutrients obtained from leaf litter can improve the growth of dipterocarp seedlings.
- Year-round monitoring of diversity and potential metabolic activity of the ectomycorrhizal community in a beech (Fagus silvatica) forest subjected to two thinning regimes
- Ecoenzymatic stoichiometry of microbial organic nutrient acquisition in soil and sediment
- Leaf traits and decomposition in tropical rainforests: revisiting some commonly held views and towards a new hypothesis.
- Ectomycorrhizal symbiosis of tropical African trees
- Spatial structure and the effects of host and soil environments on communities of ectomycorrhizal fungi in wooded savannas and rain forests of Continental Africa and Madagascar
- Multi-host ectomycorrhizal fungi are predominant in a Guinean tropical rainforest and shared between canopy trees and seedlings.
- Stoichiometric controls of nitrogen and phosphorus cycling in decomposing beech leaf litter.
- Enzymatic activities and stable isotope patterns of ectomycorrhizal fungi in relation to phylogeny and exploration types in an afrotropical rain forest.
Cited by
- The soil N cycle: new insights and key challenges
- Similar below‐ground carbon cycling dynamics but contrasting modes of nitrogen cycling between arbuscular mycorrhizal and ectomycorrhizal forests
- Atmospheric nitrogen deposition impacts on the structure and function of forest mycorrhizal communities: A review.
- Contrasting nitrogen fluxes in African tropical forests of the Congo Basin
- Land‐use history alters the diversity, community composition and interaction networks of ectomycorrhizal fungi in beech forests
- Dominant mycorrhizal association of trees determines soil nitrogen availability in subtropical forests
- Microbiome sustains forest ecosystem functions across hierarchical scales
- The soil N cycle: new insights and key challenges
- Connecting the green and brown worlds . allometric and stoichiometric predictability of above- and below-ground networks
- Carbon and Energy Sources of Mycorrhizal Fungi
- Impacts of nitrogen deposition on forest mycorrhizal communities Atmospheric Nitrogen Deposition to Global Forests
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