International audiencePlant communities play an important role in the C-sink function of peatlands. However, global change and local perturbations are expected to modify peatland plant communities, leading to a shift from Sphagnum mosses to vascular plants. Most studies have focused on the direct effects of modification in plant communities or of global change (such as climate warming, N fertilization) in peatlands without considering interactions between these disturbances that may alter peatlands' C function. We set up a mesocosm experiment to investigate how Greenhouse Gas (CO 2 , CH 4 , N 2 O) fluxes, and dissolved organic carbon (DOC) and total dissolved N (TN) contents are affected by a shift from Sphagnum mosses to Molinia cae...
International audienceClimate change can alter peatland plant community composition by promoting the...
Peatland ecosystems only cover 2-3 % of the Earth‟s surface but they represent significant carbon st...
Peatlands in the northern hemisphere have accumulated more atmospheric carbon (C) during the Holocen...
International audiencePlant communities play an important role in the C-sink function of peatlands. ...
International audiencePlant communities have a key role in regulating greenhouse gas (GHG) emissions...
International audiencePeatlands are wetlands characterised by an accumulation of peat thanks to orga...
International audiencePeatlands have stored a third of the soil organic Carbon (C) in only 3% of the...
International audiencePlant communities play a key role in regulating greenhouse gas (GHG) emissions...
International audiencePeatlands are wetlands acting as carbon (C) sink at a global scale. Even if, i...
International audiencePlant communities play a key role in regulating greenhouse gas (GHG) emissions...
International audiencePlant community modification may play an important role in peatlands’ carbon b...
Globally, peatlands play an important role in the carbon (C) cycle. High water level is a key factor...
• Peatlands in the northern hemisphere have accumulated more atmospheric carbon (C) during the Holoc...
International audienceThe function of peatlands as a large carbon (C) reservoir results from the net...
International audienceClimate change can alter peatland plant community composition by promoting the...
Peatland ecosystems only cover 2-3 % of the Earth‟s surface but they represent significant carbon st...
Peatlands in the northern hemisphere have accumulated more atmospheric carbon (C) during the Holocen...
International audiencePlant communities play an important role in the C-sink function of peatlands. ...
International audiencePlant communities have a key role in regulating greenhouse gas (GHG) emissions...
International audiencePeatlands are wetlands characterised by an accumulation of peat thanks to orga...
International audiencePeatlands have stored a third of the soil organic Carbon (C) in only 3% of the...
International audiencePlant communities play a key role in regulating greenhouse gas (GHG) emissions...
International audiencePeatlands are wetlands acting as carbon (C) sink at a global scale. Even if, i...
International audiencePlant communities play a key role in regulating greenhouse gas (GHG) emissions...
International audiencePlant community modification may play an important role in peatlands’ carbon b...
Globally, peatlands play an important role in the carbon (C) cycle. High water level is a key factor...
• Peatlands in the northern hemisphere have accumulated more atmospheric carbon (C) during the Holoc...
International audienceThe function of peatlands as a large carbon (C) reservoir results from the net...
International audienceClimate change can alter peatland plant community composition by promoting the...
Peatland ecosystems only cover 2-3 % of the Earth‟s surface but they represent significant carbon st...
Peatlands in the northern hemisphere have accumulated more atmospheric carbon (C) during the Holocen...