Acidifying oceans are predicted to fundamentally alter marine ecosystems. Over the next century, acute studies suggest that the impacts of climate change on marine organisms and ecosystems may be catastrophic. To date, however, little is known about whether the response of marine organisms varies within a species and whether this provides a potential “adaptive capacity”. Here, we show that selectively bred lines of the ecologically and economically important estuarine mollusc, the Sydney rock oyster Saccostrea glomerata, are more resilient to ocean acidification than the wild populations. When reared at elevated pCO2, we found a 25% reduction in shell growth of the selectively bred population of the Sydney rock oyster, Saccostrea glomerata,...
Uptake of increasing anthropogenic CO2 emissions by ocean surface waters is causing an increase of s...
Coastal and estuarine environments are characterised by acute changes in temperature and salinity. O...
BACKGROUND: Human activities have increased atmospheric concentrations of carbon dioxide by 36% duri...
Acidifying oceans are predicted to fundamentally alter marine ecosystems. Over the next century, acu...
Commercial shellfish aquaculture is vulnerable to the impacts of ocean acidification driven by incre...
Bivalve molluscs, such as oysters, are threatened by shifts in seawater chemistry resulti...
Ocean acidification is anticipated to decrease calcification and increase dissolution of shelled mol...
Ocean acidification is anticipated to decrease calcification and increase dissolution of shelled mol...
Ocean acidification is occurring globally through increasing CO2 absorption into the oceans creating...
Ocean acidification is anticipated to decrease calcification and increase dissolution of shelled mol...
Sessile marine molluscs living in the intertidal zone experience periods of internal acidosis when e...
Sessile marine molluscs living in the intertidal zone experience periods of internal acidosis when e...
Ocean acidification (OA), caused by the oceanic uptake of anthropogenic CO2, is predicted to negativ...
It is essential to predict the impact of elevated Pco2 on marine organisms and habitats to anticipat...
Ocean acidification (OA) has had significant negative effects on oyster populations on the west coas...
Uptake of increasing anthropogenic CO2 emissions by ocean surface waters is causing an increase of s...
Coastal and estuarine environments are characterised by acute changes in temperature and salinity. O...
BACKGROUND: Human activities have increased atmospheric concentrations of carbon dioxide by 36% duri...
Acidifying oceans are predicted to fundamentally alter marine ecosystems. Over the next century, acu...
Commercial shellfish aquaculture is vulnerable to the impacts of ocean acidification driven by incre...
Bivalve molluscs, such as oysters, are threatened by shifts in seawater chemistry resulti...
Ocean acidification is anticipated to decrease calcification and increase dissolution of shelled mol...
Ocean acidification is anticipated to decrease calcification and increase dissolution of shelled mol...
Ocean acidification is occurring globally through increasing CO2 absorption into the oceans creating...
Ocean acidification is anticipated to decrease calcification and increase dissolution of shelled mol...
Sessile marine molluscs living in the intertidal zone experience periods of internal acidosis when e...
Sessile marine molluscs living in the intertidal zone experience periods of internal acidosis when e...
Ocean acidification (OA), caused by the oceanic uptake of anthropogenic CO2, is predicted to negativ...
It is essential to predict the impact of elevated Pco2 on marine organisms and habitats to anticipat...
Ocean acidification (OA) has had significant negative effects on oyster populations on the west coas...
Uptake of increasing anthropogenic CO2 emissions by ocean surface waters is causing an increase of s...
Coastal and estuarine environments are characterised by acute changes in temperature and salinity. O...
BACKGROUND: Human activities have increased atmospheric concentrations of carbon dioxide by 36% duri...