Fine root decomposition and macronutrient release in temperate forests: Examining the litter bag and intact soil core approaches and their relationship with fungal community composition
Author:
Publisher
Elsevier BV
Subject
Soil Science,Agricultural and Biological Sciences (miscellaneous),Ecology
Reference47 articles.
1. Maintaining connectivity: understanding the role of root order and mycelial networks in fine root decomposition of woody plants;Beidler;Plant and Soil,2017
2. Decomposing capacity of fungi commonly detected in Pinus sylvestris needle litter;Boberg;Fungal Ecol.,2011
3. Mycorrhizal and saprotrophic fungal guilds compete for the same organic substrates but affect decomposition differently;Bödeker;Funct. Ecol.,2016
4. Microclimate within litter bags of different mesh size: implications for the ‘arthropod effect’ on litter decomposition;Bokhorst;Soil Biol. Biochem.,2013
5. Exact sequence variants should replace operational taxonomic units in marker-gene data analysis;Callahan;ISME J.,2017
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1. Soil Fungal Function Centralization Enhances the Decomposition of Fine Roots at Canopy Gap Borders;Forests;2024-07-24
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