Turf algal assemblages are ubiquitous primary producers on coral reefs, but little is known about the response of this diverse group to ocean acidification (OA) across different temperatures. We tested the hypothesis that CO2 influences the functional response of epilithic and endolithic turf assemblages to increasing temperature. Replicate carbonate plugs covered by turf were collected from the reef and exposed to ambient and high pCO2 (1000 µatm) conditions for 3 weeks. Each pCO2 treatment was replicated across six temperatures (24.0–31.5 °C) that spanned the full seasonal temperature range on a fringing reef in Moorea, French Polynesia, and included one warming treatment (3 °C above daily average temperatures). Temperature and CO2 enrich...
Ocean acidification (OA) has important implications for the persistence of coral reef ecosystems, du...
The absorbtion of human-emitted CO by the oceans (elevated ) is projected to alter the physiological...
In this study we analyzed the physiological responses of coralline algae to ocean acidification (OA)...
Turf algal assemblages are ubiquitous primary producers on coral reefs, but little is known about th...
Epilithic algal communities play critical ecological roles on coral reefs, but their response to ind...
Projected ocean acidification will have a detrimental impact on coral reef ecosystems, where fleshy ...
Anthropogenic CO2 emissions have exacerbated two environmental stressors, global climate warming and...
As marine ecosystems are predicted to be facing increases in both temperature and CO2 levels, result...
Ocean acidification represents a key threat to coral reefs by reducing the calcification rate of fra...
International audiencePredicted ocean acidification and warming are likely to have major implication...
Increasing atmospheric CO2 is driving major environmental changes in the ocean, such as an increase ...
Despite the heightened awareness of ocean acidification (OA) effects on marine organisms, few studie...
Climate change is a global phenomenon that is considered an important threat to marine ecosystems. O...
Ocean acidification (OA) has important implications for the persistence of coral reef ecosystems, du...
Ocean acidification (OA) has important implications for the persistence of coral reef ecosystems, du...
Ocean acidification (OA) has important implications for the persistence of coral reef ecosystems, du...
The absorbtion of human-emitted CO by the oceans (elevated ) is projected to alter the physiological...
In this study we analyzed the physiological responses of coralline algae to ocean acidification (OA)...
Turf algal assemblages are ubiquitous primary producers on coral reefs, but little is known about th...
Epilithic algal communities play critical ecological roles on coral reefs, but their response to ind...
Projected ocean acidification will have a detrimental impact on coral reef ecosystems, where fleshy ...
Anthropogenic CO2 emissions have exacerbated two environmental stressors, global climate warming and...
As marine ecosystems are predicted to be facing increases in both temperature and CO2 levels, result...
Ocean acidification represents a key threat to coral reefs by reducing the calcification rate of fra...
International audiencePredicted ocean acidification and warming are likely to have major implication...
Increasing atmospheric CO2 is driving major environmental changes in the ocean, such as an increase ...
Despite the heightened awareness of ocean acidification (OA) effects on marine organisms, few studie...
Climate change is a global phenomenon that is considered an important threat to marine ecosystems. O...
Ocean acidification (OA) has important implications for the persistence of coral reef ecosystems, du...
Ocean acidification (OA) has important implications for the persistence of coral reef ecosystems, du...
Ocean acidification (OA) has important implications for the persistence of coral reef ecosystems, du...
The absorbtion of human-emitted CO by the oceans (elevated ) is projected to alter the physiological...
In this study we analyzed the physiological responses of coralline algae to ocean acidification (OA)...