Litter chemistry changes more rapidly when decomposed at home but converges during decomposition–transformation
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- Type
- article
- Published
- 2013-02-01
- Cited by
- 126
- References
- 61
- OpenAlex
- https://openalex.org/W2084380632
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:98324302
Keywords
Decomposer, Plant litter, Litter, Chemistry, Decomposition
References
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- Permutation Methods: A Distance Function Approach
- Weather and Climate
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- Litter decay rates are determined by lignin chemistry
- Chemical characterization of the organic matter in forest soils by Curie point pyrolysis-GC/MS and pyrolysis-field ionization mass spectrometry
- Decomposition of black locust and black pine leaf litter in two coeval forest stands on Mount Vesuvius and dynamics of organic components assessed through proximate analysis and NMR spectroscopy
- Soil animals alter plant litter diversity effects on decomposition.
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- Molecular dynamics of organic matter in a cultivated soil.
- Home-field advantage accelerates leaf litter decomposition in forests
- Links between plant litter chemistry, species diversity, and below-ground ecosystem function
- Carbon isotope ratios of great plains soils and in wheat-fallow systems
- Forest Damage: Characterization of Spruce Needles by Pyrolysis Field Ionization Mass Spectrometry
- Chemical changes to nonaggregated particulate soil organic matter following grassland‐to‐woodland transition in a subtropical savanna
- Long‐term dynamics of pine and hardwood litter in contrasting environments: toward a global model of decomposition
- Production of lignocellulose-degrading enzymes and degradation of leaf litter by saprotrophic basidiomycetes isolated from a Quercus petraea forest
- Macroclimate and Lignin Control of Litter Decomposition Rates
- A direct link between forest vegetation type and soil organic matter composition
Cited by
- Decomposition of beech (Fagus sylvatica) and pine (Pinus nigra) litter along an Alpine elevation gradient: Decay and nutrient release
- Home Field Advantage of Litter Decomposition in Pure and Mixed Plantations Under Boreal Climate
- Plant litter decomposition in agro-ecosystems: a functional study on the effect of resource history, chemical composition of plant litter and the dynamics of the microbial community.
- Divergent responses of organic matter composition to incubation temperature
- Nitrogen addition enhances home-field advantage during litter decomposition in subtropical forest plantations
- Fate and transport of lignin in the soil-water continuum
- Assessing the impact of climate-induced vegetation changes on soil organic matter composition
- Plant Species Rather Than Climate Greatly Alters the Temporal Pattern of Litter Chemical Composition During Long-Term Decomposition
- A traits-based test of the home-field advantage in mixed-species tree litter decomposition.
- Home-Field Advantage: A matter of interaction between litter biochemistry and decomposer biota
- Extracellular enzymes in terrestrial, freshwater, and marine environments: perspectives on system variability and common research needs
- There's no place like home? An exploration of the mechanisms behind plant litter-decomposer affinity in terrestrial ecosystems.
- The Impact of Uranium Mine Contamination of Soils on Plant Litter Decomposition
- Impact of Populus trees on the composition of organic matter and the soil microbial community in Orthic Gray Luvisols in Saskatchewan (Canada)
- Microbial distribution in an eroded landscape: Buried A horizons support abundant and unique communities
- Analytical pyrolysis as a tool to probe soil organic matter
- Microbial genomics, transcriptomics and proteomics: new discoveries in decomposition research using complementary methods
- Plant-associated fungal communities in the light of meta’omics
- Processes controlling the production of aromatic water-soluble organic matter during litter decomposition
- Environmental factors and traits that drive plant litter decomposition do not determine home‐field advantage effects
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- Do leaf‐litter decomposers control biofilm primary production and benthic algal community structure in forest streams? Insights from an outdoor mesocosm experiment
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