The ultimate effect that ocean acidification (OA) and warming will have on the physiology of calcifying algae is still largely uncertain. Responses depend on the complex interactions between seawater chemistry, global/local stressors and species-specific physiologies. There is a significant gap regarding the effect that metabolic interactions between coexisting species may have on local seawater chemistry and the concurrent effect of OA. Here, we manipulated CO2 and temperature to evaluate the physiological responses of two common photoautotrophs from shallow tropical marine coastal ecosystems in Brazil: the calcifying alga Halimeda cuneata, and the seagrass Halodule wrightii. We tested whether or not seagrass presence can influence the cal...
Anthropogenic carbon dioxide levels have increased rapidly in the last 300 years, leading to climate...
Turf algal assemblages are ubiquitous primary producers on coral reefs, but little is known about th...
International audienceSurface ocean pH is likely to decrease by up to 0.4 units by 2100 due to the u...
The ultimate effect that ocean acidification (OA) and warming will have on the physiology of calcify...
The effects of elevated CO2 and temperature on photosynthesis and calcification of two important cal...
The effects of elevated CO2 and temperature on photosynthesis and calcification of two important cal...
The effects of elevated CO2 and temperature on photosynthesis and calcification of two important cal...
Climate change is a global phenomenon that is considered an important threat to marine ecosystems. O...
Although seagrasses and marine macroalgae (macro-autotrophs) play critical ecological roles in reef,...
We investigated ecological, physiological, and skeletal characteristics of the calcifying green alga...
Ocean acidification (OA), resulting from increasing dissolved carbon dioxide (CO2) in surface waters...
The effects of elevated CO2 and temperature on photosynthesis and calcification in the calcifying al...
The effects of elevated CO2 and temperature on photosynthesis and calcification in the calcifying al...
Concurrent anthropogenic global climate change and ocean acidification are expected to have a negati...
Concurrent anthropogenic global climate change and ocean acidification are expected to have a negati...
Anthropogenic carbon dioxide levels have increased rapidly in the last 300 years, leading to climate...
Turf algal assemblages are ubiquitous primary producers on coral reefs, but little is known about th...
International audienceSurface ocean pH is likely to decrease by up to 0.4 units by 2100 due to the u...
The ultimate effect that ocean acidification (OA) and warming will have on the physiology of calcify...
The effects of elevated CO2 and temperature on photosynthesis and calcification of two important cal...
The effects of elevated CO2 and temperature on photosynthesis and calcification of two important cal...
The effects of elevated CO2 and temperature on photosynthesis and calcification of two important cal...
Climate change is a global phenomenon that is considered an important threat to marine ecosystems. O...
Although seagrasses and marine macroalgae (macro-autotrophs) play critical ecological roles in reef,...
We investigated ecological, physiological, and skeletal characteristics of the calcifying green alga...
Ocean acidification (OA), resulting from increasing dissolved carbon dioxide (CO2) in surface waters...
The effects of elevated CO2 and temperature on photosynthesis and calcification in the calcifying al...
The effects of elevated CO2 and temperature on photosynthesis and calcification in the calcifying al...
Concurrent anthropogenic global climate change and ocean acidification are expected to have a negati...
Concurrent anthropogenic global climate change and ocean acidification are expected to have a negati...
Anthropogenic carbon dioxide levels have increased rapidly in the last 300 years, leading to climate...
Turf algal assemblages are ubiquitous primary producers on coral reefs, but little is known about th...
International audienceSurface ocean pH is likely to decrease by up to 0.4 units by 2100 due to the u...