Ocean acidification has a wide-ranging potential for impacting the physiology and metabolism of zooplankton. Sufficiently elevated CO2 concentrations can alter internal acid-base balance, compromising homeostatic regulation and disrupting internal systems ranging from oxygen transport to ion balance. We assessed feeding and nutrient excretion rates in natural populations of the keystone species Euphausia superba (Antarctic krill) by conducting a CO2 perturbation experiment at ambient and elevated atmospheric CO2 levels in January 2011 along the West Antarctic Peninsula (WAP). Under elevated CO2 conditions (,672 ppm), ingestion rates of krill averaged 78 mg C individual21 d21 and were 3.5 times higher than krill ingestion rates at ambient, p...
Ocean acidification, caused by elevated seawater carbon dioxide levels, may have a deleterious impac...
Marine ecosystems of the Southern Ocean are particularly vulnerable to ocean acidification. Antarcti...
Ocean acidification, caused by elevated seawater carbon dioxide levels, may have a deleterious impac...
Ocean acidification has a wide-ranging potential for impacting the physiology and metabolism of zoop...
Ocean acidification has a wide-ranging potential for impacting the physiology and metabolism of zoop...
Ocean acidification has a wide-ranging potential for impacting the physiology and metabolism of zoop...
Ocean acidification has a wide-ranging potential for impacting the physiology and metabolism of zoop...
Ocean acidification has a wide-ranging potential for impacting the physiology and metabolism of zoop...
Antarctic krill (Euphausia superba) have a keystone role in the Southern Ocean, as the primary prey ...
Antarctic krill (Euphausia superba) have a keystone role in the Southern Ocean, as the primary prey ...
As a consequence of human activity carbon dioxide (CO2) concentration has risen from ~280 parts per...
As a consequence of human activity carbon dioxide (CO2) concentration has risen from ~280 parts per...
Antarctic krill (Euphausia superba) have a keystone role in the Southern Ocean, as the primary prey ...
Euphausia superba (Antarctic krill) is a keystone species in the Southern Ocean, but little is known...
Euphausia superba (Antarctic krill) is a keystone species in the Southern Ocean, but little is known...
Ocean acidification, caused by elevated seawater carbon dioxide levels, may have a deleterious impac...
Marine ecosystems of the Southern Ocean are particularly vulnerable to ocean acidification. Antarcti...
Ocean acidification, caused by elevated seawater carbon dioxide levels, may have a deleterious impac...
Ocean acidification has a wide-ranging potential for impacting the physiology and metabolism of zoop...
Ocean acidification has a wide-ranging potential for impacting the physiology and metabolism of zoop...
Ocean acidification has a wide-ranging potential for impacting the physiology and metabolism of zoop...
Ocean acidification has a wide-ranging potential for impacting the physiology and metabolism of zoop...
Ocean acidification has a wide-ranging potential for impacting the physiology and metabolism of zoop...
Antarctic krill (Euphausia superba) have a keystone role in the Southern Ocean, as the primary prey ...
Antarctic krill (Euphausia superba) have a keystone role in the Southern Ocean, as the primary prey ...
As a consequence of human activity carbon dioxide (CO2) concentration has risen from ~280 parts per...
As a consequence of human activity carbon dioxide (CO2) concentration has risen from ~280 parts per...
Antarctic krill (Euphausia superba) have a keystone role in the Southern Ocean, as the primary prey ...
Euphausia superba (Antarctic krill) is a keystone species in the Southern Ocean, but little is known...
Euphausia superba (Antarctic krill) is a keystone species in the Southern Ocean, but little is known...
Ocean acidification, caused by elevated seawater carbon dioxide levels, may have a deleterious impac...
Marine ecosystems of the Southern Ocean are particularly vulnerable to ocean acidification. Antarcti...
Ocean acidification, caused by elevated seawater carbon dioxide levels, may have a deleterious impac...