Disturbance affects most terrestrial ecosystems and has the potential to shape their responses to chronic environmental change. Scrub-oak vegetation regenerating from fire disturbance in subtropical Florida was exposed to experimentally elevated carbon dioxide (CO2) concentration (+350ll-1) using open-top chambers for 11yr, punctuated by hurricane disturbance in year 8. Here, we report the effects of elevated CO2 on aboveground and belowground net primary productivity (NPP) and nitrogen (N) cycling during this experiment. The stimulation of NPP and N uptake by elevated CO2 peaked within 2yr after disturbance by fire and hurricane, when soil nutrient availability was high. The stimulation subsequently declined and disappeared, coincident wit...
Uncertainty surrounds belowground plant responses to rising atmospheric CO2 because roots are diffic...
Uncertainty surrounds belowground plant responses to rising atmospheric CO2 because roots are diffic...
Uncertainty surrounds belowground plant responses to rising atmospheric CO2 because roots are diffic...
Disturbance affects most terrestrial ecosystems and has the potential to shape their responses to ch...
Disturbance affects most terrestrial ecosystems and has the potential to shape their responses to ch...
Disturbance affects most terrestrial ecosystems and has the potential to shape their responses to ch...
Disturbance affects most terrestrial ecosystems and has the potential to shape their responses to ch...
Disturbance affects most terrestrial ecosystems and has the potential to shape their responses to ch...
This study reports the aboveground biomass response of a fire-regenerated Florida scrub-oak ecosyste...
This study reports the aboveground biomass response of a fire-regenerated Florida scrub-oak ecosyste...
·Rising atmospheric carbon dioxide (CO2) could alter the carbon (C) and nitrogen (N) content of ecos...
·Rising atmospheric carbon dioxide (CO2) could alter the carbon (C) and nitrogen (N) content of ecos...
·Rising atmospheric carbon dioxide (CO2) could alter the carbon (C) and nitrogen (N) content of ecos...
Uncertainty surrounds belowground plant responses to rising atmospheric CO2 because roots are diffic...
Uncertainty surrounds belowground plant responses to rising atmospheric CO2 because roots are diffic...
Uncertainty surrounds belowground plant responses to rising atmospheric CO2 because roots are diffic...
Uncertainty surrounds belowground plant responses to rising atmospheric CO2 because roots are diffic...
Uncertainty surrounds belowground plant responses to rising atmospheric CO2 because roots are diffic...
Disturbance affects most terrestrial ecosystems and has the potential to shape their responses to ch...
Disturbance affects most terrestrial ecosystems and has the potential to shape their responses to ch...
Disturbance affects most terrestrial ecosystems and has the potential to shape their responses to ch...
Disturbance affects most terrestrial ecosystems and has the potential to shape their responses to ch...
Disturbance affects most terrestrial ecosystems and has the potential to shape their responses to ch...
This study reports the aboveground biomass response of a fire-regenerated Florida scrub-oak ecosyste...
This study reports the aboveground biomass response of a fire-regenerated Florida scrub-oak ecosyste...
·Rising atmospheric carbon dioxide (CO2) could alter the carbon (C) and nitrogen (N) content of ecos...
·Rising atmospheric carbon dioxide (CO2) could alter the carbon (C) and nitrogen (N) content of ecos...
·Rising atmospheric carbon dioxide (CO2) could alter the carbon (C) and nitrogen (N) content of ecos...
Uncertainty surrounds belowground plant responses to rising atmospheric CO2 because roots are diffic...
Uncertainty surrounds belowground plant responses to rising atmospheric CO2 because roots are diffic...
Uncertainty surrounds belowground plant responses to rising atmospheric CO2 because roots are diffic...
Uncertainty surrounds belowground plant responses to rising atmospheric CO2 because roots are diffic...
Uncertainty surrounds belowground plant responses to rising atmospheric CO2 because roots are diffic...