The absorbtion of human-emitted CO by the oceans (elevated ) is projected to alter the physiological performance of coral reef organisms by perturbing seawater chemistry (i.e. ocean acidification). Simultaneously, greenhouse gas emissions are driving ocean warming and changes in irradiance (through turbidity and cloud cover), which have the potential to influence the effects of ocean acidification on coral reefs. Here, we explored whether physiological impacts of elevated \ua0on a coral-algal symbiosis (Symbiodiniaceae) are mediated by light and/or temperature levels. In a 39 day experiment, elevated \ua0(962 versus 431 µatm ) had an interactive effect with midday light availability (400 versus 800 µmol\ua0photons\ua0m\ua0s) and temperature...
Epilithic algal communities play critical ecological roles on coral reefs, but their response to ind...
Increasing carbon dioxide (CO₂) emissions are raising sea surface temperature (SST) and causing ocea...
Ocean acidification (OA) is predicted to enhance photosynthesis in many marine taxa. However, photop...
Elevated seawater pCO2, and in turn ocean acidification (OA), is now widely acknowledged to reduce c...
WOS:000479136400001International audienceWhile research on ocean acidification (OA) impacts on coral...
Coral reef organisms are increasingly and simultaneously affected by global and local stressors such...
Corals are globally important calcifiers that exhibit complex responses to anthropogenic warming and...
Ocean acidification (OA) is predicted to reduce reef coral calcification rates and threaten the long...
In this study we analyzed the physiological responses of coralline algae to ocean acidification (OA)...
While research on ocean acidification (OA) impacts on coral reefs has focused on calcification, rela...
Ocean acidification represents a key threat to coral reefs by reducing the calcification rate of fra...
Turf algal assemblages are ubiquitous primary producers on coral reefs, but little is known about th...
Corals host a community of microbes, comprised of endosymbiotic algae, Symbiodinium, bacteria, Archa...
The objective of this study was to test whether elevated pCO2 predicted for the year 2100 (85.1 Pa) ...
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...
Increasing carbon dioxide (CO₂) emissions are raising sea surface temperature (SST) and causing ocea...
Ocean acidification (OA) is predicted to enhance photosynthesis in many marine taxa. However, photop...
Elevated seawater pCO2, and in turn ocean acidification (OA), is now widely acknowledged to reduce c...
WOS:000479136400001International audienceWhile research on ocean acidification (OA) impacts on coral...
Coral reef organisms are increasingly and simultaneously affected by global and local stressors such...
Corals are globally important calcifiers that exhibit complex responses to anthropogenic warming and...
Ocean acidification (OA) is predicted to reduce reef coral calcification rates and threaten the long...
In this study we analyzed the physiological responses of coralline algae to ocean acidification (OA)...
While research on ocean acidification (OA) impacts on coral reefs has focused on calcification, rela...
Ocean acidification represents a key threat to coral reefs by reducing the calcification rate of fra...
Turf algal assemblages are ubiquitous primary producers on coral reefs, but little is known about th...
Corals host a community of microbes, comprised of endosymbiotic algae, Symbiodinium, bacteria, Archa...
The objective of this study was to test whether elevated pCO2 predicted for the year 2100 (85.1 Pa) ...
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...
Increasing carbon dioxide (CO₂) emissions are raising sea surface temperature (SST) and causing ocea...
Ocean acidification (OA) is predicted to enhance photosynthesis in many marine taxa. However, photop...