This is the author accepted manuscript. The final version is available from Springer Nature via the DOI in this recordData availability: All raw sequence data are accessible at the NCBI Sequence Read Archive through accession number SRP097118. Water chemistry, behaviour and electrophysiology data are available through Pangaea (https://doi.pangaea.de/10.1594/PANGAEA.884674).Survival of marine fishes that are exposed to elevated near-future CO2levels is threatened by their altered responses to sensory cues. Here we demonstrate a physiological and molecular mechanism in the olfactory system that helps to explain altered behaviour under elevated CO2. We combine electrophysiology measurements and transcriptomics with behavioural experiments to ...
We tested the effect of near-future CO2 levels (= 490, 570, 700, and 960 µatm CO2) on the olfactory ...
In the past decade, many studies have investigated the effects of low pH/high CO2 as a proxy for oce...
The effects of ocean acidification on fish are only partially understood. Studies on olfaction are m...
Survival of marine fishes exposed to elevated near-future CO2 levels is threatened by their altered ...
Elevated levels of CO2 have been shown to disrupt numerous neurological sensory systems in marine fi...
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...
WOS:000514971500002International audienceThe decrease in ocean pH that results from the increased co...
The levels of carbon dioxide (CO2) predicted for the oceans by the end of this century have recently...
International audienceBackground Progressive CO2-induced ocean acidification (OA) impacts marine lif...
We tested the effect of near-future CO2 levels (= 490, 570, 700, and 960 µatm CO2) on the olfactory ...
In the past decade, many studies have investigated the effects of low pH/high CO2 as a proxy for oce...
The effects of ocean acidification on fish are only partially understood. Studies on olfaction are m...
Survival of marine fishes exposed to elevated near-future CO2 levels is threatened by their altered ...
Elevated levels of CO2 have been shown to disrupt numerous neurological sensory systems in marine fi...
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...
WOS:000514971500002International audienceThe decrease in ocean pH that results from the increased co...
The levels of carbon dioxide (CO2) predicted for the oceans by the end of this century have recently...
International audienceBackground Progressive CO2-induced ocean acidification (OA) impacts marine lif...
We tested the effect of near-future CO2 levels (= 490, 570, 700, and 960 µatm CO2) on the olfactory ...
In the past decade, many studies have investigated the effects of low pH/high CO2 as a proxy for oce...
The effects of ocean acidification on fish are only partially understood. Studies on olfaction are m...