Coral calcification is expected to decline as atmospheric carbon dioxide concentration increases. We assessed the potential of Porites astreoides, Siderastrea siderea and Porites porites to survive and calcify under acidified conditions in a 2-year field transplant experiment around low pH, low aragonite saturation (Omega arag) submarine springs. Slow-growing S. siderea had the highest post-transplantation survival and showed increases in concentrations of Symbiodiniaceae, chlorophyll a and protein at the low Omega arag site. Nubbins of P. astreoides had 20% lower survival and higher chlorophyll a concentration at the low Omega arag site. Only 33% of P. porites nubbins survived at low Omega arag and their linear extension and calcification ...
Rising atmospheric CO 2 and its equilibration with surface ocean seawater is lowering both the pH an...
Rising atmospheric CO 2 and its equilibration with surface ocean seawater is lowering both the pH an...
Anthropogenic elevation of atmospheric pCO2 is predicted to cause the pH of surface seawater to decl...
Coral calcification is expected to decline as atmospheric carbon dioxide concentration increases. We...
Coral calcification is expected to decline as atmospheric carbon dioxide concentration increases. We...
Anthropogenic activities release CO2 to the atmosphere, increasing the CO2 dissolved in the ocean. T...
Ocean acidification is expected to negatively impact calcifying organisms, yet we lack understanding...
Ocean acidification is perceived to be a major threat for many calcifying organisms, including scler...
Anthropogenic activities release CO2 to the atmosphere, increasing the CO2 dissolved in the ocean. T...
Ocean acidification is thought to be a major threat to coral reefs: laboratory evidence and CO2 seep...
Ocean acidification is thought to be a major threat to coral reefs: laboratory evidence and CO2 seep...
Ocean acidification is thought to be a major threat to coral reefs: laboratory evidence and CO2 seep...
Ocean acidification is thought to be a major threat to coral reefs: laboratory evidence and CO2 seep...
As the surface ocean equilibrates with rising atmospheric CO2, the pH of surface seawater is decreas...
As the surface ocean equilibrates with rising atmospheric CO2, the pH of surface seawater is decreas...
Rising atmospheric CO 2 and its equilibration with surface ocean seawater is lowering both the pH an...
Rising atmospheric CO 2 and its equilibration with surface ocean seawater is lowering both the pH an...
Anthropogenic elevation of atmospheric pCO2 is predicted to cause the pH of surface seawater to decl...
Coral calcification is expected to decline as atmospheric carbon dioxide concentration increases. We...
Coral calcification is expected to decline as atmospheric carbon dioxide concentration increases. We...
Anthropogenic activities release CO2 to the atmosphere, increasing the CO2 dissolved in the ocean. T...
Ocean acidification is expected to negatively impact calcifying organisms, yet we lack understanding...
Ocean acidification is perceived to be a major threat for many calcifying organisms, including scler...
Anthropogenic activities release CO2 to the atmosphere, increasing the CO2 dissolved in the ocean. T...
Ocean acidification is thought to be a major threat to coral reefs: laboratory evidence and CO2 seep...
Ocean acidification is thought to be a major threat to coral reefs: laboratory evidence and CO2 seep...
Ocean acidification is thought to be a major threat to coral reefs: laboratory evidence and CO2 seep...
Ocean acidification is thought to be a major threat to coral reefs: laboratory evidence and CO2 seep...
As the surface ocean equilibrates with rising atmospheric CO2, the pH of surface seawater is decreas...
As the surface ocean equilibrates with rising atmospheric CO2, the pH of surface seawater is decreas...
Rising atmospheric CO 2 and its equilibration with surface ocean seawater is lowering both the pH an...
Rising atmospheric CO 2 and its equilibration with surface ocean seawater is lowering both the pH an...
Anthropogenic elevation of atmospheric pCO2 is predicted to cause the pH of surface seawater to decl...