Changes in olfactory-mediated behaviour caused by elevated CO(2) levels in the ocean could affect recruitment to reef fish populations because larval fish become more vulnerable to predation. However, it is currently unclear how elevated CO(2) will impact the other key part of the predator-prey interaction--the predators. We investigated the effects of elevated CO(2) and reduced pH on olfactory preferences, activity levels and feeding behaviour of a common coral reef meso-predator, the brown dottyback (Pseudochromis fuscus). Predators were exposed to either current-day CO(2) levels or one of two elevated CO(2) levels (∼600 µatm or ∼950 µatm) that may occur by 2100 according to climate change predictions. Exposure to elevated CO(2) and reduc...
Carbon dioxide (CO₂) levels in the atmosphere and surface ocean are rising at an unprecedented rate ...
Recent studies show that ocean acidification impairs sensory functions and alters the behavior of te...
Recent research has shown that exposure to elevated carbon dioxide (CO2) affects how fishes perceive...
Changes in olfactory-mediated behaviour caused by elevated CO2 levels in the ocean could affect recr...
Changes in olfactory-mediated behaviour caused by elevated CO2 levels in the ocean could affect recr...
Experiments have shown that the behaviour of reef fishes can be seriously affected by projected futu...
The amount of carbon dioxide dissolved in the oceans is steadily rising due to a 40% increase in atm...
Ocean acidification has the potential to cause dramatic changes in marine ecosystems. Larval damself...
There is increasing concern that ocean acidification, caused by the uptake of additional CO2 at the ...
Little is known about the impact of ocean acidification on predator-prey dynamics. Herein, we examin...
We tested the effect of near-future CO2 levels (= 490, 570, 700, and 960 µatm CO2) on the olfactory ...
Recent research has shown that exposure to elevated carbon dioxide (CO2) affects how fishes perceive...
Ocean acidification has the potential to cause dramatic changes in marine ecosystems. Larval damself...
Ocean acidification has the potential to cause dramatic changes in marine ecosystems. Larval damself...
Little is known about the impact of ocean acidification on predator–prey dynamics. Herein, we examin...
Carbon dioxide (CO₂) levels in the atmosphere and surface ocean are rising at an unprecedented rate ...
Recent studies show that ocean acidification impairs sensory functions and alters the behavior of te...
Recent research has shown that exposure to elevated carbon dioxide (CO2) affects how fishes perceive...
Changes in olfactory-mediated behaviour caused by elevated CO2 levels in the ocean could affect recr...
Changes in olfactory-mediated behaviour caused by elevated CO2 levels in the ocean could affect recr...
Experiments have shown that the behaviour of reef fishes can be seriously affected by projected futu...
The amount of carbon dioxide dissolved in the oceans is steadily rising due to a 40% increase in atm...
Ocean acidification has the potential to cause dramatic changes in marine ecosystems. Larval damself...
There is increasing concern that ocean acidification, caused by the uptake of additional CO2 at the ...
Little is known about the impact of ocean acidification on predator-prey dynamics. Herein, we examin...
We tested the effect of near-future CO2 levels (= 490, 570, 700, and 960 µatm CO2) on the olfactory ...
Recent research has shown that exposure to elevated carbon dioxide (CO2) affects how fishes perceive...
Ocean acidification has the potential to cause dramatic changes in marine ecosystems. Larval damself...
Ocean acidification has the potential to cause dramatic changes in marine ecosystems. Larval damself...
Little is known about the impact of ocean acidification on predator–prey dynamics. Herein, we examin...
Carbon dioxide (CO₂) levels in the atmosphere and surface ocean are rising at an unprecedented rate ...
Recent studies show that ocean acidification impairs sensory functions and alters the behavior of te...
Recent research has shown that exposure to elevated carbon dioxide (CO2) affects how fishes perceive...