Ocean acidification (OA) effects on larvae are partially attributed for the rapidly declining oyster production in the Pacific Northwest region of the United States. This OA effect is a serious concern in SE Asia, which produces >80% of the world’s oysters. Because climate-related stressors rarely act alone, we need to consider OA effects on oysters in combination with warming and reduced salinity. Here, the interactive effects of these three climate-related stressors on the larval growth of the Pacific oyster, Crassostrea gigas, were examined. Larvae were cultured in combinations of temperature (24 and 30 °C), pH (8.1 and 7.4), and salinity (15 psu and 25 psu) for 58 days to the early juvenile stage. Decreased pH (pH 7.4), elevated tempera...
00000 ăWOS:000372685800014International audienceIncreasing atmospheric carbon dioxide results in oce...
Ocean acidification is a great concern worldwide. It has important impacts on the shellfish industry...
Climate change will increase energetic demands on marine invertebrate larvae and make planktonic foo...
Ocean acidification (OA) effects on larvae are partially attributed for the rapidly declining oyster...
Ocean acidification, rising temperatures, and increased intensity of rain events are occurring due t...
Rising anthropogenic carbon dioxide (CO 2) dissolving into coastal waters is decreasing the pH and c...
International audienceAbstract Ocean acidification and warming (OAW) are pressing contemporary issue...
The majority of common edible oysters are projected to grow more slowly and have smaller impaired sh...
Ocean acidification (OA) has had significant negative effects on oyster populations on the west coas...
The Eastern oyster, Crassostrea virginica (Gmelin, 1791), is an ecologically and economically import...
As negative effects of ocean acidification are experienced by coastal ecosystems, there is a growing...
Rising anthropogenic carbon dioxide (CO2) dissolving into coastal waters is decreasing the pH and ca...
As negative effects of ocean acidification are experienced by coastal ecosystems, there is a growing...
Climate change will increase energetic demands on marine invertebrate larvae and make planktonic foo...
Anthropogenic influence and increased atmospheric CO2 are creating a myriad of changing conditions f...
00000 ăWOS:000372685800014International audienceIncreasing atmospheric carbon dioxide results in oce...
Ocean acidification is a great concern worldwide. It has important impacts on the shellfish industry...
Climate change will increase energetic demands on marine invertebrate larvae and make planktonic foo...
Ocean acidification (OA) effects on larvae are partially attributed for the rapidly declining oyster...
Ocean acidification, rising temperatures, and increased intensity of rain events are occurring due t...
Rising anthropogenic carbon dioxide (CO 2) dissolving into coastal waters is decreasing the pH and c...
International audienceAbstract Ocean acidification and warming (OAW) are pressing contemporary issue...
The majority of common edible oysters are projected to grow more slowly and have smaller impaired sh...
Ocean acidification (OA) has had significant negative effects on oyster populations on the west coas...
The Eastern oyster, Crassostrea virginica (Gmelin, 1791), is an ecologically and economically import...
As negative effects of ocean acidification are experienced by coastal ecosystems, there is a growing...
Rising anthropogenic carbon dioxide (CO2) dissolving into coastal waters is decreasing the pH and ca...
As negative effects of ocean acidification are experienced by coastal ecosystems, there is a growing...
Climate change will increase energetic demands on marine invertebrate larvae and make planktonic foo...
Anthropogenic influence and increased atmospheric CO2 are creating a myriad of changing conditions f...
00000 ăWOS:000372685800014International audienceIncreasing atmospheric carbon dioxide results in oce...
Ocean acidification is a great concern worldwide. It has important impacts on the shellfish industry...
Climate change will increase energetic demands on marine invertebrate larvae and make planktonic foo...