Forecasting the effects of climate change on nitrogen (N) cycling in pastures requires an understanding of changes in tissue N. We examined the effects of elevated atmospheric CO2 concentration, atmospheric warming and simulated grazing (clipping frequency) on aboveground and belowground tissue N concentrations and C : N ratios of a C3 pasture grass. Phalaris aquatica L. cv. 'Holdfast' was grown in the field in six transparent temperature gradient tunnels (18 × 1.5 × 1.5 m each), three at ambient atmospheric CO2 and three at 759 p.p.m. CO2. Within each tunnel, there were three air temperature treatments: ambient control, +2.2/+4.0 °C above ambient day/night warming and +3.0 °C continuous warming. A frequent and an infrequent clipping treatm...
Long-term responses of terrestrial ecosystems to the combined effects of warming and elevated CO 2 (...
Increases in atmospheric carbon dioxide (CO2) and global air temperature affect all terrestrial ecos...
The direct and indirect effects of increasing levels of atmospheric carbon dioxide (CO2) on plant ni...
Forecasting the effects of climate change on nitrogen (N) cycling in pastures requires an understand...
Simulation models indicate that the nitrogen (N) cycle plays a key role in how other ecosystem proce...
Panicum maximum Jacq. 'Mombaça' (Guinea grass) is a C4 forage grass widely used in tropical pastures...
Future ecosystem properties of grasslands will be driven largely by belowground biomass responses to...
Future ecosystem properties of grasslands will be driven largely by belowground biomass responses to...
AbstractGrasslands comprise 70% of all agricultural land worldwide, and provide fodder for life-stoc...
Nitrogen (N) and phosphorus (P) are essential nutrients for primary producers and decomposers in ter...
Determining underlying physiological patterns governing plant productivity and diversity in grasslan...
• This study examined the effects of warming, elevated atmospheric CO2 and cutting regimen on the gr...
Rising atmospheric carbon dioxide concentration ([CO2]) has the potential to stimulate ecosystem pro...
Background and aims: The terrestrial biosphere’s ability to capture carbon is dependent upon soil ni...
Greenhouse gas (GHG) fluxes from grasslands are affected by climate warming and agricultural managem...
Long-term responses of terrestrial ecosystems to the combined effects of warming and elevated CO 2 (...
Increases in atmospheric carbon dioxide (CO2) and global air temperature affect all terrestrial ecos...
The direct and indirect effects of increasing levels of atmospheric carbon dioxide (CO2) on plant ni...
Forecasting the effects of climate change on nitrogen (N) cycling in pastures requires an understand...
Simulation models indicate that the nitrogen (N) cycle plays a key role in how other ecosystem proce...
Panicum maximum Jacq. 'Mombaça' (Guinea grass) is a C4 forage grass widely used in tropical pastures...
Future ecosystem properties of grasslands will be driven largely by belowground biomass responses to...
Future ecosystem properties of grasslands will be driven largely by belowground biomass responses to...
AbstractGrasslands comprise 70% of all agricultural land worldwide, and provide fodder for life-stoc...
Nitrogen (N) and phosphorus (P) are essential nutrients for primary producers and decomposers in ter...
Determining underlying physiological patterns governing plant productivity and diversity in grasslan...
• This study examined the effects of warming, elevated atmospheric CO2 and cutting regimen on the gr...
Rising atmospheric carbon dioxide concentration ([CO2]) has the potential to stimulate ecosystem pro...
Background and aims: The terrestrial biosphere’s ability to capture carbon is dependent upon soil ni...
Greenhouse gas (GHG) fluxes from grasslands are affected by climate warming and agricultural managem...
Long-term responses of terrestrial ecosystems to the combined effects of warming and elevated CO 2 (...
Increases in atmospheric carbon dioxide (CO2) and global air temperature affect all terrestrial ecos...
The direct and indirect effects of increasing levels of atmospheric carbon dioxide (CO2) on plant ni...