Anthropogenic warming and ocean acidification are predicted to negatively affect marine calcifiers. While negative effects of these stressors on physiology and shell calcification have been documented in many species, their effects on shell mineralogical composition remains poorly known, especially over longer time periods. Here, we quantify changes in the shell mineralogy of a foundation species, Mytilus californianus, under 60 y of ocean warming and acidification. Using historical data as a baseline and a resampling of present-day populations, we document a substantial increase in shell calcite and decrease in aragonite. These results indicate that ocean pH and saturation state, not temperature or salinity, play a strong role in mediating...
Biomineral production in marine organisms employs transient phases of amorphous calcium carbonate (A...
Ocean acidification threatens organisms that produce calcium carbonate shells by potentially generat...
Ocean acidification threatens organisms that produce calcium carbonate shells by potentially generat...
Models suggest that marine calcifiers (organisms that precipitate a calcium carbonate exoskeleton) a...
Seawater pH and the availability of carbonate ions are decreasing due to anthropogenic carbon dioxid...
Seawater pH and the availability of carbonate ions is decreasing due to anthropogenic carbon dioxide...
Global climate change threatens the oceans as anthropogenic carbon dioxide causes ocean acidificatio...
Negative impacts of global climate change are predicted for a range of taxa. Projections predict mar...
Ocean acidification (OA) and the resultant changing carbonate saturation states is threatening the f...
Ocean surface pH levels are predicted to fall by 0.3–0.4 pH units by the end of the century and are ...
Ocean surface pH levels are predicted to fall by 0.3-0.4 pH units by the end of the century and are ...
Many marine organisms produce calcareous shells as the key structure for defense, but the functional...
Ocean acidification, a product of increasing atmospheric carbon dioxide, may already have affected c...
Biomineral production in marine organisms employs transient phases of amorphous calcium carbonate (A...
Ocean acidification is altering the oceanic carbonate saturation state and threatening the survival ...
Biomineral production in marine organisms employs transient phases of amorphous calcium carbonate (A...
Ocean acidification threatens organisms that produce calcium carbonate shells by potentially generat...
Ocean acidification threatens organisms that produce calcium carbonate shells by potentially generat...
Models suggest that marine calcifiers (organisms that precipitate a calcium carbonate exoskeleton) a...
Seawater pH and the availability of carbonate ions are decreasing due to anthropogenic carbon dioxid...
Seawater pH and the availability of carbonate ions is decreasing due to anthropogenic carbon dioxide...
Global climate change threatens the oceans as anthropogenic carbon dioxide causes ocean acidificatio...
Negative impacts of global climate change are predicted for a range of taxa. Projections predict mar...
Ocean acidification (OA) and the resultant changing carbonate saturation states is threatening the f...
Ocean surface pH levels are predicted to fall by 0.3–0.4 pH units by the end of the century and are ...
Ocean surface pH levels are predicted to fall by 0.3-0.4 pH units by the end of the century and are ...
Many marine organisms produce calcareous shells as the key structure for defense, but the functional...
Ocean acidification, a product of increasing atmospheric carbon dioxide, may already have affected c...
Biomineral production in marine organisms employs transient phases of amorphous calcium carbonate (A...
Ocean acidification is altering the oceanic carbonate saturation state and threatening the survival ...
Biomineral production in marine organisms employs transient phases of amorphous calcium carbonate (A...
Ocean acidification threatens organisms that produce calcium carbonate shells by potentially generat...
Ocean acidification threatens organisms that produce calcium carbonate shells by potentially generat...