Environmental factors and traits that drive plant litter decomposition do not determine home‐field advantage effects
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Summary
The home-field advantage' (HFA) hypothesis predicts that plant litter ecomposed faster than expected underneath the plant from which it riginates (home') than underneath other plants (away'), becau ...
- Type
- article
- Published
- 2015-07-01
- Cited by
- 99
- References
- 66
- Access
- Open access
- OpenAlex
- https://openalex.org/W2104561526
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:86842612
Keywords
Tundra, Biology, Abiotic component, Litter, Vegetation (pathology)
References
- Leaf traits capture the effects of land use changes and climate on litter decomposability of grasslands across Europe.
- Decomposition in Terrestrial Ecosystems
- Ecosystem feedbacks and cascade processes: understanding their role in the responses of Arctic and alpine ecosystems to environmental change
- Temperature and plant species control over litter decomposition in Alaskan tundra
- Home-Field Advantage: A matter of interaction between litter biochemistry and decomposer biota
- Empirical and theoretical challenges in aboveground–belowground ecology
- Linkages between N turnover and plant community structure in a tundra landscape
- Decomposition dynamics in mixed‐species leaf litter
- Climate, leaf litter chemistry and leaf litter decomposition in terrestrial ecosystems : a triangular relationship
- Divergent composition but similar function of soil food webs of individual plants: plant species and community effects.
- Tree species identity alters forest litter decomposition through long‐term plant and soil interactions in Patagonia, Argentina
- Microbial communities may modify how litter quality affects potential decomposition rates as tree species migrate
- Plant and microbial responses to nitrogen and phosphorus addition across an elevational gradient in subarctic tundra.
- Interactive effects of vegetation type and elevation on aboveground and belowground properties in a subarctic tundra
- No ‘home’ versus ‘away’ effects of decomposition found in a grassland–forest reciprocal litter transplant study
- Determination of the sedimentary microbial biomass by extractible lipid phosphate
- Negligible contribution from roots to soil-borne phospholipid fatty acid fungal biomarkers 18:2ω6,9 and 18:1ω9
- Home-field advantage accelerates leaf litter decomposition in forests
- Links between plant community composition, soil organic matter quality and microbial communities in contrasting tundra habitats
- The within‐species leaf economic spectrum does not predict leaf litter decomposability at either the within‐species or whole community levels
Cited by
- Nitrogen addition enhances home-field advantage during litter decomposition in subtropical forest plantations
- Functional breadth and home-field advantage generate functional differences among soil microbial decomposers.
- The effect of simulated anthropogenic nitrogen deposition on the net carbon balance of boreal soils
- Distinct respiratory responses of soils to complex organic substrate are governed predominantly by soil architecture and its microbial community
- Indoor evidence for the contribution of soil microbes and corresponding environments to the decomposition of Pinus massoniana and Castanopsis sclerophylla litter from Thousand Island Lake
- Climate masks decomposer influence in a cross-site litter decomposition study
- The chemical convergence and decomposer control hypotheses explain solid cattle manure decomposition in production grasslands
- Home‐field advantages of litter decomposition increase with increasing N deposition rates: a litter and soil perspective
- Coordinated responses of soil communities to elevation in three subarctic vegetation types
- Peatland Plant-soil Feedbacks Dictate Ecosystem Properties and Processes
- Effect of N addition on home-field advantage of litter decomposition in subtropical forests.
- Enhancing gardens as habitats for plant-associated invertebrates: should we plant native or exotic species?
- Draining the Pool? Carbon Storage and Fluxes in Three Alpine Plant Communities
- Nitrogen enrichment impacts on boreal litter decomposition are driven by changes in soil microbiota rather than litter quality
- Biophysical processes supporting the diversity of microbial life in soil
- Short-term root and leaf decomposition of two dominant plant species in a Siberian tundra
- Pure and mixed litters of Sphagnum and Carex exhibit a home-field advantage in Boreal peatlands
- Decomposition of Beech and Spruce Litter in Neighbouring Beech and Spruce Forests
- Potential contributions of root decomposition to the nitrogen cycle in arctic forest and tundra
- Species richness, heterogeneity and nitrogen contributions of roots along an arctic elevation gradient
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