Maladaptive behavioural disturbances have been reported in some fishes and aquatic invertebrates exposed to projected future CO2 levels. These disturbances have been linked to altered ion gradients and neurotransmitter function in the brain. Still, it seems surprising that the relatively small ionic changes induced by near-future CO2 levels can have such profound neural effects. Based on recent transcriptomics data, we propose that a vicious cycle can be triggered that amplifies the initial disturbance, explaining howsmall pH regulatory adjustments in response to ocean acidification can lead to major behavioural alterations in fish and other water-breathing animals. The proposed cycle is initiated by a reversal of the function of some inhib...
Increased levels of dissolved carbon dioxide (CO2) drive ocean acidification and have been predicted...
Open ocean surface CO2 levels are projected to reach approximately 800 µatm, and ocean pH to decreas...
CO2-induced aquatic acidification is predicted to affect fish neuronal GABAA receptors leading to wi...
Maladaptive behavioural disturbances have been reported in some fishes and aquatic invertebrates exp...
Neurosensory and behavioural disruptions are some of the most consistently reported responses upon e...
Exposure to future ocean acidification scenarios may alter the behaviour of marine teleosts through ...
Predicted future CO2 levels have been found to alter sensory responses and behaviour of marine fishe...
Predicted future CO₂ levels have been found to alter sensory responses and behaviour of marine fishe...
Ocean acidification is one of the most pressing environmental concerns of our time, and not surprisi...
Ocean acidification (OA) is known to affect the physiology, survival, behaviour and fitness of vario...
Carbon dioxide (CO₂) levels in the atmosphere and surface ocean are rising at an unprecedented rate ...
This is the author accepted manuscript. The final version is available from Springer Nature via the ...
Due to anthropogenic CO2 emissions and the subsequent process of ocean acidification (OA), open ocea...
Survival of marine fishes exposed to elevated near-future CO2 levels is threatened by their altered ...
Elevated carbon dioxide (CO2) levels can alter ecologically important behaviors in a range of marine...
Increased levels of dissolved carbon dioxide (CO2) drive ocean acidification and have been predicted...
Open ocean surface CO2 levels are projected to reach approximately 800 µatm, and ocean pH to decreas...
CO2-induced aquatic acidification is predicted to affect fish neuronal GABAA receptors leading to wi...
Maladaptive behavioural disturbances have been reported in some fishes and aquatic invertebrates exp...
Neurosensory and behavioural disruptions are some of the most consistently reported responses upon e...
Exposure to future ocean acidification scenarios may alter the behaviour of marine teleosts through ...
Predicted future CO2 levels have been found to alter sensory responses and behaviour of marine fishe...
Predicted future CO₂ levels have been found to alter sensory responses and behaviour of marine fishe...
Ocean acidification is one of the most pressing environmental concerns of our time, and not surprisi...
Ocean acidification (OA) is known to affect the physiology, survival, behaviour and fitness of vario...
Carbon dioxide (CO₂) levels in the atmosphere and surface ocean are rising at an unprecedented rate ...
This is the author accepted manuscript. The final version is available from Springer Nature via the ...
Due to anthropogenic CO2 emissions and the subsequent process of ocean acidification (OA), open ocea...
Survival of marine fishes exposed to elevated near-future CO2 levels is threatened by their altered ...
Elevated carbon dioxide (CO2) levels can alter ecologically important behaviors in a range of marine...
Increased levels of dissolved carbon dioxide (CO2) drive ocean acidification and have been predicted...
Open ocean surface CO2 levels are projected to reach approximately 800 µatm, and ocean pH to decreas...
CO2-induced aquatic acidification is predicted to affect fish neuronal GABAA receptors leading to wi...