Uncertainty surrounds belowground plant responses to rising atmospheric CO2 because roots are difficult to measure, requiring frequent monitoring as a result of fine root dynamics and long-term monitoring as a result of sensitivity to resource availability. We report belowground plant responses of a scrub-oak ecosystem in Florida exposed to 11 yr of elevated atmospheric CO2 using open-top chambers. We measured fine root production, turnover and biomass using minirhizotrons, coarse root biomass using ground-penetrating radar and total root biomass using soil cores. Total root biomass was greater in elevated than in ambient plots, and the absolute difference was larger than the difference aboveground. Fine root biomass fluctuated by more than...
Atmospheric carbon dioxide levels are increasing and predicted to double this century. The implicati...
Disturbance affects most terrestrial ecosystems and has the potential to shape their responses to ch...
As a consequence of land-use change and the burning of fossil fuels, atmospheric concentrations of C...
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...
This study reports the aboveground biomass response of a fire-regenerated Florida scrub-oak ecosyste...
A Florida (USA) scrub-oak ecosystem was exposed to elevated atmospheric CO2 in open-top chambers fro...
This study reports the aboveground biomass response of a fire-regenerated Florida scrub-oak ecosyste...
Fine root dynamics play an important role in the cycling of carbon belowground. Previous studies hav...
Fine root dynamics play an important role in the cycling of carbon belowground. Previous studies hav...
Since May of 1996, we have conducted an experiment in Florida Scrub Oak to determine the impact of e...
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...
A major gap in whole-plant ecology lies with our understanding of root system growth, function and d...
Atmospheric carbon dioxide levels are increasing and predicted to double this century. The implicati...
Disturbance affects most terrestrial ecosystems and has the potential to shape their responses to ch...
As a consequence of land-use change and the burning of fossil fuels, atmospheric concentrations of C...
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...
This study reports the aboveground biomass response of a fire-regenerated Florida scrub-oak ecosyste...
A Florida (USA) scrub-oak ecosystem was exposed to elevated atmospheric CO2 in open-top chambers fro...
This study reports the aboveground biomass response of a fire-regenerated Florida scrub-oak ecosyste...
Fine root dynamics play an important role in the cycling of carbon belowground. Previous studies hav...
Fine root dynamics play an important role in the cycling of carbon belowground. Previous studies hav...
Since May of 1996, we have conducted an experiment in Florida Scrub Oak to determine the impact of e...
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...
A major gap in whole-plant ecology lies with our understanding of root system growth, function and d...
Atmospheric carbon dioxide levels are increasing and predicted to double this century. The implicati...
Disturbance affects most terrestrial ecosystems and has the potential to shape their responses to ch...
As a consequence of land-use change and the burning of fossil fuels, atmospheric concentrations of C...