International audienceGlobal change impacts on biogeochemical cycles have been widely studied, but our understanding of whether the responses of plant elemental composition to global change drivers differ between above- and belowground plant organs remains incomplete. We conducted a meta-analysis of 201 reports including 1,687 observations of studies that have analyzed simultaneously N and P concentrations changes in leaves and roots in the same plants in response to drought, elevated [CO2], and N and P fertilization around the world, and contrasted the results within those obtained with a general database (838 reports and 14,772 observations) that analyzed the changes in N and P concentrations in leaves and/or roots of plants submitted to ...
Aims: Disentangling direct and indirect effects of global change drivers on plant nitrogen (N) uptak...
Aims: Disentangling direct and indirect effects of global change drivers on plant nitrogen (N) uptak...
Leaf nitrogen (N) and phosphorus (P) concentrations constrain photosynthetic and metabolic processes...
International audienceGlobal change impacts on biogeochemical cycles have been widely studied, but o...
Global change impacts on biogeochemical cycles have been widely studied, but our understanding of wh...
Global change impacts on biogeochemical cycles have been widely studied, but our understanding of wh...
Foliar-level stoichiometry plays an important role in ecosystem elemental cycling. Shifts in foliar ...
Aims Global change may cause unparalleled supplies of soil nutrients and further lead to stoichiomet...
Aims Global change may cause unparalleled supplies of soil nutrients and further lead to stoichiomet...
Most water and essential soil nutrient uptake is carried out by fine roots in plants. It is therefor...
The quantification of the allocation of nitrogen (N) and phosphorus (P) among plant organs is essent...
Aim We sought to understand how the individual and combined effects of multiple environmental change...
Elevated CO2 affects C cycling processes which in turn can influence the nitrogen (N) and phosphorus...
Aim Root production and turnover play a key role in regulating carbon (C) flow in terrestrial ecosys...
Elevated CO2 affects C cycling processes which in turn can influence the nitrogen (N) and phosphorus...
Aims: Disentangling direct and indirect effects of global change drivers on plant nitrogen (N) uptak...
Aims: Disentangling direct and indirect effects of global change drivers on plant nitrogen (N) uptak...
Leaf nitrogen (N) and phosphorus (P) concentrations constrain photosynthetic and metabolic processes...
International audienceGlobal change impacts on biogeochemical cycles have been widely studied, but o...
Global change impacts on biogeochemical cycles have been widely studied, but our understanding of wh...
Global change impacts on biogeochemical cycles have been widely studied, but our understanding of wh...
Foliar-level stoichiometry plays an important role in ecosystem elemental cycling. Shifts in foliar ...
Aims Global change may cause unparalleled supplies of soil nutrients and further lead to stoichiomet...
Aims Global change may cause unparalleled supplies of soil nutrients and further lead to stoichiomet...
Most water and essential soil nutrient uptake is carried out by fine roots in plants. It is therefor...
The quantification of the allocation of nitrogen (N) and phosphorus (P) among plant organs is essent...
Aim We sought to understand how the individual and combined effects of multiple environmental change...
Elevated CO2 affects C cycling processes which in turn can influence the nitrogen (N) and phosphorus...
Aim Root production and turnover play a key role in regulating carbon (C) flow in terrestrial ecosys...
Elevated CO2 affects C cycling processes which in turn can influence the nitrogen (N) and phosphorus...
Aims: Disentangling direct and indirect effects of global change drivers on plant nitrogen (N) uptak...
Aims: Disentangling direct and indirect effects of global change drivers on plant nitrogen (N) uptak...
Leaf nitrogen (N) and phosphorus (P) concentrations constrain photosynthetic and metabolic processes...