Decomposition of soil organic matter (SOM) may either increase or decrease after fresh organic inputs, the phenomena which are termed as “priming effect”. Crop residues and labile C additions can prime SOM decomposition, but it is not known how labile C inputs affect SOM in the presence of decaying plant residues varying in quality (e.g. from previous crops, a common situation in arable soils). We used a dual 13C/14C isotopic labelling to partition soil CO2 efflux and microbial biomass for three C sources: labile C (glucose), partly decomposed wheat residues (leaves and roots) and SOM. 14C-labelled glucose was added to the soil after 30 days of pre-incubation with 13C-labelled residues (separately leaves or roots). After glucose addition, t...
© 2017 Elsevier B.V.Inputs of labile carbon (C) and nitrogen (N) affect the intensity and direction ...
During the last decade it has been increasingly acknowledged that carbon (C) contained in root exuda...
The impact of elevated CO2 on leaf-litter and root exudate production may alter soil carbon storage ...
Decomposition of soil organic matter (SOM) may either increase or decrease after fresh organic input...
© 2018 Elsevier Ltd Decomposition of soil organic matter (SOM) may either increase or decrease after...
Inputs of crop residues and labile C (e.g. root exudates) can affect the decomposition rate of soil ...
Decomposition of soil organic matter (SOM) protected within aggregates can be accelerated via primin...
The mechanisms and specific sources of priming effects, i.e. short term changes of soil organic matt...
Graduation date: 2008Soils are a globally significant carbon (C) pool and have the potential to resp...
Priming effects (PEs) are defined as short-term changes in the turnover of soil organic matter (SOM)...
Priming effects (PEs) are defined as short-term changes in the turnover of soil organic matter (SOM)...
Increase of belowground C allocation by plants under global warming or elevated CO2 may promote deco...
Labile carbon (C) inputs to soil (e.g., litter and root exudation) can prime soil organic matter (SO...
Agronomic practices such as crop residue return and additional nutrient supply are recommended to in...
Soil organic carbon (SOC) is a major component in the global carbon cycle. Yet how input of plant li...
© 2017 Elsevier B.V.Inputs of labile carbon (C) and nitrogen (N) affect the intensity and direction ...
During the last decade it has been increasingly acknowledged that carbon (C) contained in root exuda...
The impact of elevated CO2 on leaf-litter and root exudate production may alter soil carbon storage ...
Decomposition of soil organic matter (SOM) may either increase or decrease after fresh organic input...
© 2018 Elsevier Ltd Decomposition of soil organic matter (SOM) may either increase or decrease after...
Inputs of crop residues and labile C (e.g. root exudates) can affect the decomposition rate of soil ...
Decomposition of soil organic matter (SOM) protected within aggregates can be accelerated via primin...
The mechanisms and specific sources of priming effects, i.e. short term changes of soil organic matt...
Graduation date: 2008Soils are a globally significant carbon (C) pool and have the potential to resp...
Priming effects (PEs) are defined as short-term changes in the turnover of soil organic matter (SOM)...
Priming effects (PEs) are defined as short-term changes in the turnover of soil organic matter (SOM)...
Increase of belowground C allocation by plants under global warming or elevated CO2 may promote deco...
Labile carbon (C) inputs to soil (e.g., litter and root exudation) can prime soil organic matter (SO...
Agronomic practices such as crop residue return and additional nutrient supply are recommended to in...
Soil organic carbon (SOC) is a major component in the global carbon cycle. Yet how input of plant li...
© 2017 Elsevier B.V.Inputs of labile carbon (C) and nitrogen (N) affect the intensity and direction ...
During the last decade it has been increasingly acknowledged that carbon (C) contained in root exuda...
The impact of elevated CO2 on leaf-litter and root exudate production may alter soil carbon storage ...