Slowed decomposition is biotically mediated in an ectomycorrhizal, tropical rain forest
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Summary
The results show that nutrient cycling patterns in tropical forests can vary dramatically over small spatial scales, and that changes in microbial community structure likely drive the observed differences in decomposition.
- Type
- article
- Published
- 2010-06-25
- Cited by
- 92
- References
- 60
- OpenAlex
- https://openalex.org/W20577764
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:20859129
Keywords
Computer science, Business
References
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- Mycorrhiza and Litter Decomposition
- Ectomycorrhizas and retarded decomposition in a Pinus resinosa plantation
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- Dual mycorrhizal colonization of forest-dominating tropical trees and the mycorrhizal status of non-dominant tree and liana species
- Long‐term dynamics of pine and hardwood litter in contrasting environments: toward a global model of decomposition
- Ectomycorrhizal fungi and their enzymes in soils: is there enough evidence for their role as facultative soil saprotrophs?
- Translocation of 32P between interacting mycelia of a wood‐decomposing fungus and ectomycorrhizal fungi in microcosm systems
- Quantitative comparisons ofin situ microbial biodiversity by signature biomarker analysis
- Carbon Pools and Flux of Global Forest Ecosystems
Cited by
- Long-Term Simulated Nitrogen Deposition Alters the Composition of Fungi Active in the Forest Floor
- Ectomycorrhiza and the open nitrogen cycle in an afrotropical rainforest.
- The effect of roots and ectomycorrhizal fungi on carbon cycling in forest soils
- Sebacina aureomagnifica, a new heterobasidiomycete from the Atlantic Forest of northeast Brazil
- New Neotropical Sebacinales Species from a Pakaraimaea dipterocarpacea Forest in the Guayana Region, Southern Venezuela: Structural Diversity and Phylogeography
- Insights into Ecological Effects of Invasive Plants on Soil Nitrogen Cycles
- No ‘home’ versus ‘away’ effects of decomposition found in a grassland–forest reciprocal litter transplant study
- Diversity of Mat-Forming Fungi in Relation to Soil Properties, Disturbance, and Forest Ecotype at Crater Lake National Park, Oregon, USA
- Effects of Bromelia pinguin (Bromeliaceae) on soil ecosystem function and fungal diversity in the lowland forests of Costa Rica
- Sloth Hair as a Novel Source of Fungi with Potent Anti-Parasitic, Anti-Cancer and Anti-Bacterial Bioactivity
- Leaf traits and decomposition in tropical rainforests: revisiting some commonly held views and towards a new hypothesis.
- Long-Term Experimental Nitrogen Deposition Alters the Composition of the Active Fungal Community in the Forest Floor
- Ecological effects of atmospheric nitrogen deposition on soil enzyme activity
- Decomposition by ectomycorrhizal fungi alters soil carbon storage in a simulation model
- Home-field advantage of litter decomposition and nitrogen release in forest ecosystems
- Ectomycorrhizal-Dominated Boreal and Tropical Forests Have Distinct Fungal Communities, but Analogous Spatial Patterns across Soil Horizons
- Diversity of Fungi on Decomposing Leaf Litter in a Sugarcane Plantation and Their Response to Tillage Practice and Bagasse Mulching: Implications for Management Effects on Litter Decomposition
- A new case of neotropical monodominant forest: Spirotropis longifolia (Leguminosae-Papilionoideae) in French Guiana
- Responses of Soil Fungi to Logging and Oil Palm Agriculture in Southeast Asian Tropical Forests
- Scale-dependent variation in nitrogen cycling and soil fungal communities along gradients of forest composition and age in regenerating tropical dry forests.
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