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Nitrogen supply modulates the effect of changes in drying-rewetting frequency on soil C and N cycling and greenhouse gas exchange
- Source :
- Global Change Biology. 21:3854-3863
- Publication Year :
- 2015
- Publisher :
- Wiley, 2015.
-
Abstract
- Climate change and atmospheric nitrogen (N) deposition are two of the most important global change drivers. However, the interactions of these drivers have not been well studied. We aimed to assess how the combined effect of soil N additions and more frequent soil drying-rewetting events affects carbon (C) and N cycling, soil:atmosphere greenhouse gas (GHG) exchange, and functional microbial diversity. We manipulated the frequency of soil drying-rewetting events in soils from ambient and N-treated plots in a temperate forest and calculated the Orwin & Wardle Resistance index to compare the response of the different treatments. Increases in drying-rewetting cycles led to reductions in soil NO3- levels, potential net nitrification rate, and soil : atmosphere GHG exchange, and increases in NH4+ and total soil inorganic N levels. N-treated soils were more resistant to changes in the frequency of drying-rewetting cycles, and this resistance was stronger for C- than for N-related variables. Both the long-term N addition and the drying-rewetting treatment altered the functionality of the soil microbial population and its functional diversity. Our results suggest that increasing the frequency of drying-rewetting cycles can affect the ability of soil to cycle C and N and soil : atmosphere GHG exchange and that the response to this increase is modulated by soil N enrichment.
- Subjects :
- Greenhouse Effect
Nutrient cycle
Climate Change
Population
New York
chemistry.chemical_element
Forests
complex mixtures
Carbon Cycle
Soil respiration
Soil
Environmental Chemistry
education
Soil Microbiology
General Environmental Science
Global and Planetary Change
education.field_of_study
Ecology
Nitrogen Cycle
Nitrogen
Droughts
Agronomy
chemistry
Greenhouse gas
Soil water
Environmental science
Nitrification
Cycling
Subjects
Details
- ISSN :
- 13541013
- Volume :
- 21
- Database :
- OpenAIRE
- Journal :
- Global Change Biology
- Accession number :
- edsair.doi.dedup.....2cb55e7ba4af43e7f5be381dd91f2fda