Studies on the consequences of ocean acidification for the marine ecosystem have revealed behavioural changes in coral reef fishes exposed to sustained near-future CO2 levels. The changes have been linked to altered function of GABAergic neurotransmitter systems, because the behavioural alterations can be reversed rapidly by treatment with the GABAA receptor antagonist gabazine. Characterization of the molecular mechanisms involved would be greatly aided if these can be examined in a well-characterized model organism with a sequenced genome. It was recently shown that CO2-induced behavioural alterations are not confined to tropical species, but also affect the three-spined stickleback, although an involvement of the GABAA receptor was not e...
Abstract Background Exposure to future ocean acidification scenarios may alter the behaviour of mari...
Experimental exposure to ocean and freshwater acidification affects the behaviour of multiple aquati...
Maladaptive behavioural disturbances have been reported in some fishes and aquatic invertebrates exp...
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...
As atmospheric CO2 levels rise, the CO2 concentration in ocean surface waters increases through a pr...
Increased levels of dissolved carbon dioxide (CO2) drive ocean acidification and have been predicted...
Ocean acidification is one of the most pressing environmental concerns of our time, and not surprisi...
Neurosensory and behavioural disruptions are some of the most consistently reported responses upon e...
Recent studies have shown that the behaviour and development of coral reef fish larvae is hampered b...
Projected future carbon dioxide (CO2) levels in the ocean can alter marine animal behaviours. Disrup...
Elevated carbon dioxide (CO2) levels can alter ecologically important behaviors in a range of marine...
Background: Exposure to future ocean acidification scenarios may alter the behaviour of marine teleo...
Elevated carbon dioxide (CO2) has recently been shown to affect chemosensory and auditory behaviour,...
Abstract Background Exposure to future ocean acidification scenarios may alter the behaviour of mari...
Experimental exposure to ocean and freshwater acidification affects the behaviour of multiple aquati...
Maladaptive behavioural disturbances have been reported in some fishes and aquatic invertebrates exp...
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...
As atmospheric CO2 levels rise, the CO2 concentration in ocean surface waters increases through a pr...
Increased levels of dissolved carbon dioxide (CO2) drive ocean acidification and have been predicted...
Ocean acidification is one of the most pressing environmental concerns of our time, and not surprisi...
Neurosensory and behavioural disruptions are some of the most consistently reported responses upon e...
Recent studies have shown that the behaviour and development of coral reef fish larvae is hampered b...
Projected future carbon dioxide (CO2) levels in the ocean can alter marine animal behaviours. Disrup...
Elevated carbon dioxide (CO2) levels can alter ecologically important behaviors in a range of marine...
Background: Exposure to future ocean acidification scenarios may alter the behaviour of marine teleo...
Elevated carbon dioxide (CO2) has recently been shown to affect chemosensory and auditory behaviour,...
Abstract Background Exposure to future ocean acidification scenarios may alter the behaviour of mari...
Experimental exposure to ocean and freshwater acidification affects the behaviour of multiple aquati...
Maladaptive behavioural disturbances have been reported in some fishes and aquatic invertebrates exp...