Ectomycorrhizas and retarded decomposition in a Pinus resinosa plantation
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Summary
The negative effect of ectomycorrhizas on decomposition could be mediated by extraction of water, particularly in relatively dry years, and the ‘Gadgil effect’ may be explained by this phenomenon.
- Type
- article
- Published
- 2003-05-01
- Cited by
- 106
- References
- 42
- Access
- Open access
- OpenAlex
- https://openalex.org/W2010572795
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:84564301
Keywords
Ectomycorrhiza, Decomposition, Litter, Mycorrhiza, Botany
References
- Decomposition in Terrestrial Ecosystems
- Vertical niche differentiation of ectomycorrhizal hyphae in soil as shown by T-RFLP analysis.
- Distribution of ectomycorrhizas in micro-habitats in mature and old-growth stands of Douglas-fir on southeastern Vancouver Island
- Decomposition, nitrogen and phosphorus mineralization from beech leaf litter colonized by ectomycorrhizal or litter-decomposing basidiomycetes
- The effects of mycorrhizal roots on litter decomposition, soil biota, and nutrients in a spodosolic soil
- Lignin and soluble phenolic degradation by ectomycorrhizal and ericoid mycorrhizal fungi
- Mycorrhiza and Litter Decomposition
- Nutrient economy of red pine is affected by interactions between Pisolithus tinctorius and other forest‐floor microbes
- Polyphenol control of nitrogen release from pine litter
- Carbon translocation to the rhizosphere of maize and wheat and influence on the turnover of native soil organic matter at different soil nitrogen levels
- Effects of trenching on soil processes and properties in a New Mexico mixed-conifer forest
- Decomposition dynamics of litters of various pine species in a Corsican pine forest
- Is decomposition of woodland leaf litter influenced by its species richness
- Mycorrhizae alter quality and quantity of carbon allocated below ground
- Effects of plants on net mineralization of nitrogen in forest soil microcosms
- Nitrogen mobilization from protein-polyphenol complex by ericoid and ectomycorrhizal fungi
- Interactions between ectomycorrhizal and saprotrophic fungi on agar and in association with seedlings of lodgepole pine (Pinus contorta)
- Carbon and nitrogen turnover in the early stage of Scots pine (Pinus sylvestris L.) needle litter decomposition: effects of internal and external nitrogen
- A comparison of the extracellular enzyme activities of two ectomycorrhizal and a leaf‐saprotrophic basidiomycete colonizing beech leaf litter
- Litter decomposition in beech forests — effects of excluding tree roots
Cited by
- Slowed decomposition is biotically mediated in an ectomycorrhizal, tropical rain forest
- Functional ecology of ectomycorrhizal fungi
- Salient Points on the Assessment and Monitoring of Forest Biodiversity
- The effect of roots and ectomycorrhizal fungi on carbon cycling in forest soils
- Significance of microbial interactions in the mycorrhizosphere.
- Ectomycorrhizal hyphae structure components of the soil bacterial community for decreased phosphatase production.
- Organic nutrient uptake by mycorrhizal fungi enhances ecosystem carbon storage: a model-based assessment.
- Incorporation of carbon and nitrogen from leaf litter differing in structural compounds into soil microarthropods of a deciduous forest
- A review of the assessment of biodiversity in forest ecosystems
- Can ectomycorrhizal fungi circumvent the nitrogen mineralization for plant nutrition in temperate forest ecosystems
- Unraveling environmental drivers of a recent increase in Swiss fungi fruiting
- The production and turnover of extramatrical mycelium of ectomycorrhizal fungi in forest soils: role in carbon cycling
- Research perspectives on functional diversity in ectomycorrhizal fungi.
- Community Comparison and Determinant Analysis of Understory Vegetation in Six Plantations in South China
- Improving the assessment and monitoring of forest biodiversity.
- A simple method to assess macrofungal sporocarp biomass for investigating ecological change
- Soil Fungi Respond More Strongly than Fine Roots to Elevated CO2 in a Model Regenerating Longleaf Pine-Wiregrass Ecosystem
- Degradation of the polycyclic aromatic hydrocarbon (PAH) fluorene is retarded in a Scots pine ectomycorrhizosphere.
- Mycorrhizas and mycorrhizal fungal communities throughout ecosystem development
- Soil factors controlling mineral N uptake by Picea engelmannii seedlings: the importance of gross NH4+ production rates.
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