Predicted future CO2 levels have been found to alter sensory responses and behaviour of marine fishes. Changes include increased boldness and activity, loss of behavioural lateralization, altered auditory preferences and impaired olfactory function. Impaired olfactory function makes larval fish attracted to odours they normally avoid, including ones from predators and unfavourable habitats. These behavioural alterations have significant effects on mortality that may have far-reaching implications for population replenishment, community structure and ecosystem function. However, the underlying mechanism linking high CO2 to these diverse responses has been unknown. Here we show that abnormal olfactory preferences and loss of behavioural later...
Changes in olfactory-mediated behaviour caused by elevated CO2 levels in the ocean could affect recr...
We tested the effect of near-future CO2 levels (= 490, 570, 700, and 960 µatm CO2) on the olfactory ...
Elevated carbon dioxide (CO2) has recently been shown to affect chemosensory and auditory behaviour,...
Predicted future CO₂ levels have been found to alter sensory responses and behaviour of marine fishe...
Studies on the consequences of ocean acidification for the marine ecosystem have revealed behavioura...
Ocean acidification is one of the most pressing environmental concerns of our time, and not surprisi...
Survival of marine fishes exposed to elevated near-future CO2 levels is threatened by their altered ...
This is the author accepted manuscript. The final version is available from Springer Nature via the ...
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...
The average surface pH of the ocean is dropping at a rapid rate due to the dissolution of anthropoge...
Changes in olfactory-mediated behaviour caused by elevated CO2 levels in the ocean could affect recr...
Maladaptive behavioural disturbances have been reported in some fishes and aquatic invertebrates exp...
Changes in olfactory-mediated behaviour caused by elevated CO2 levels in the ocean could affect recr...
We tested the effect of near-future CO2 levels (= 490, 570, 700, and 960 µatm CO2) on the olfactory ...
Elevated carbon dioxide (CO2) has recently been shown to affect chemosensory and auditory behaviour,...
Predicted future CO₂ levels have been found to alter sensory responses and behaviour of marine fishe...
Studies on the consequences of ocean acidification for the marine ecosystem have revealed behavioura...
Ocean acidification is one of the most pressing environmental concerns of our time, and not surprisi...
Survival of marine fishes exposed to elevated near-future CO2 levels is threatened by their altered ...
This is the author accepted manuscript. The final version is available from Springer Nature via the ...
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...
The average surface pH of the ocean is dropping at a rapid rate due to the dissolution of anthropoge...
Changes in olfactory-mediated behaviour caused by elevated CO2 levels in the ocean could affect recr...
Maladaptive behavioural disturbances have been reported in some fishes and aquatic invertebrates exp...
Changes in olfactory-mediated behaviour caused by elevated CO2 levels in the ocean could affect recr...
We tested the effect of near-future CO2 levels (= 490, 570, 700, and 960 µatm CO2) on the olfactory ...
Elevated carbon dioxide (CO2) has recently been shown to affect chemosensory and auditory behaviour,...