Elevated seawater pCO2, and in turn ocean acidification (OA), is now widely acknowledged to reduce calcification and growth of reef building corals. As with other environmental factors (e. g., temperature and nutrients), light availability fundamentally regulates calcification and is predicted to change for future reef environments alongside elevated pCO2 via altered physical processes (e. g., sea level rise and turbidity); however, any potential role of light in regulating the OA-induced reduction of calcification is still unknown. We employed a multifactorial growth experiment to determine how light intensity and pCO2 together modify calcification for model coral species from two key genera, Acropora horrida and Porites cylindrica, occupy...
Corals are globally important calcifiers that exhibit complex responses to anthropogenic warming and...
Corals and their photosymbionts experience inherent changes in light along depth gradients, leading ...
Rising atmospheric CO2 concentrations threaten coral reefs globally by causing ocean acidification (...
Elevated seawater pCO2, and in turn ocean acidification (OA), is now widely acknowledged to reduce c...
Coral reef organisms are increasingly and simultaneously affected by global and local stressors such...
Ocean acidification (OA) is predicted to reduce reef coral calcification rates and threaten the long...
Ocean acidification (OA) is predicted to reduce reef coral calcification rates and threaten the long...
We tested the effect of light and PCO2 on the calcification and survival of Pocillopora damicornis r...
Ocean acidification (OA) is predicted to reduce reef coral calcification rates and threaten the long...
The effects of light and elevated pCO2 on the growth and photochemical efficiency of the critically ...
Coral reefs are essential to many nations, and are currently in global decline. Although climate mod...
Ocean acidification (OA) is predicted to enhance photosynthesis in many marine taxa. However, photop...
Recently, it has been suggested that there are conditions under which some coral species appear to b...
The absorbtion of human-emitted CO by the oceans (elevated ) is projected to alter the physiological...
Ocean acidification represents a key threat to coral reefs by reducing the calcification rate of fra...
Corals are globally important calcifiers that exhibit complex responses to anthropogenic warming and...
Corals and their photosymbionts experience inherent changes in light along depth gradients, leading ...
Rising atmospheric CO2 concentrations threaten coral reefs globally by causing ocean acidification (...
Elevated seawater pCO2, and in turn ocean acidification (OA), is now widely acknowledged to reduce c...
Coral reef organisms are increasingly and simultaneously affected by global and local stressors such...
Ocean acidification (OA) is predicted to reduce reef coral calcification rates and threaten the long...
Ocean acidification (OA) is predicted to reduce reef coral calcification rates and threaten the long...
We tested the effect of light and PCO2 on the calcification and survival of Pocillopora damicornis r...
Ocean acidification (OA) is predicted to reduce reef coral calcification rates and threaten the long...
The effects of light and elevated pCO2 on the growth and photochemical efficiency of the critically ...
Coral reefs are essential to many nations, and are currently in global decline. Although climate mod...
Ocean acidification (OA) is predicted to enhance photosynthesis in many marine taxa. However, photop...
Recently, it has been suggested that there are conditions under which some coral species appear to b...
The absorbtion of human-emitted CO by the oceans (elevated ) is projected to alter the physiological...
Ocean acidification represents a key threat to coral reefs by reducing the calcification rate of fra...
Corals are globally important calcifiers that exhibit complex responses to anthropogenic warming and...
Corals and their photosymbionts experience inherent changes in light along depth gradients, leading ...
Rising atmospheric CO2 concentrations threaten coral reefs globally by causing ocean acidification (...