Since pre-industrial times, uptake of anthropogenic CO2 by surface ocean waters has caused a documented change of 0.1 pH units. Calcifying organisms are sensitive to elevated CO2 concentrations due to their calcium carbonate skeletons. In temperate rocky intertidal environments, calcifying and noncalcifying macroalgae make up diverse benthic photoautotrophic communities. These communities may change as calcifiers and noncalcifiers respond differently to rising CO2 concentrations. In order to test this hypothesis, we conducted an 86 d mesocosm experiment to investigate the physiological and competitive responses of calcifying and noncalcifying temperate marine macroalgae to 385, 665, and 1486 mu atm CO2. We focused on comparing 2 abundant re...
Since the Industrial Revolution, the partial pressure of carbon dioxide (pCO2) has been increasing a...
The concentration of CO2 in global surface ocean waters is increasing due to rising atmospheric CO2 ...
International audiencePredicted ocean acidification and warming are likely to have major implication...
Since pre-industrial times, uptake of anthropogenic CO2 by surface ocean waters has caused a documen...
Future atmospheric CO2 levels will most likely have complex consequences for marine organisms, parti...
Future atmospheric CO2 levels will most likely have complex consequences for marine organisms, parti...
Since the industrial revolution, atmospheric carbon dioxide (CO2) concentrations have been increasin...
Future atmospheric CO2 levels will most likely have complex consequences for marine organisms, parti...
Future atmospheric CO2 levels will most likely have complex consequences for marine organisms, parti...
Increased plant biomass is observed in terrestrial systems due to rising levels of atmospheric CO2, ...
Increased plant biomass is observed in terrestrial systems due to rising levels of atmospheric CO2, ...
Mechanisms for inorganic carbon acquisition in macroalgal assemblages today could indicate how coast...
Increased plant biomass is observed in terrestrial systems due to rising levels of atmospheric CO2, ...
Seaweeds are important components of near‐shore ecosystems as primary producers, foundation species,...
Seaweeds are important components of near‐shore ecosystems as primary producers, foundation species,...
Since the Industrial Revolution, the partial pressure of carbon dioxide (pCO2) has been increasing a...
The concentration of CO2 in global surface ocean waters is increasing due to rising atmospheric CO2 ...
International audiencePredicted ocean acidification and warming are likely to have major implication...
Since pre-industrial times, uptake of anthropogenic CO2 by surface ocean waters has caused a documen...
Future atmospheric CO2 levels will most likely have complex consequences for marine organisms, parti...
Future atmospheric CO2 levels will most likely have complex consequences for marine organisms, parti...
Since the industrial revolution, atmospheric carbon dioxide (CO2) concentrations have been increasin...
Future atmospheric CO2 levels will most likely have complex consequences for marine organisms, parti...
Future atmospheric CO2 levels will most likely have complex consequences for marine organisms, parti...
Increased plant biomass is observed in terrestrial systems due to rising levels of atmospheric CO2, ...
Increased plant biomass is observed in terrestrial systems due to rising levels of atmospheric CO2, ...
Mechanisms for inorganic carbon acquisition in macroalgal assemblages today could indicate how coast...
Increased plant biomass is observed in terrestrial systems due to rising levels of atmospheric CO2, ...
Seaweeds are important components of near‐shore ecosystems as primary producers, foundation species,...
Seaweeds are important components of near‐shore ecosystems as primary producers, foundation species,...
Since the Industrial Revolution, the partial pressure of carbon dioxide (pCO2) has been increasing a...
The concentration of CO2 in global surface ocean waters is increasing due to rising atmospheric CO2 ...
International audiencePredicted ocean acidification and warming are likely to have major implication...