Marine biofouling by the swiftly spreading invasive mussel (Musculista senhousia) has caused serious ecological and economic consequences in the global coastal waters. However, the fate of this highly invasive fouling species in a rapidly acidifying ocean remains unknown. Here, we demonstrated the impacts of ocean acidification within and across generations, to understand whether M. senhousia has the capacity to acclimate to changing ocean conditions. During the gonadal development, exposure of mussels to elevated pCO2 caused significant decreases of survival, growth performance and condition index, and shifted the whole-organism energy budget by inflating energy expenses to fuel compensatory processes, eventually impairing the success of s...
This study evaluated the impact of medium-term exposure to elevated pCO2 levels (750-1200 ppm) on th...
High latitudes are considered particularly vulnerable to ocean acidification, since they are natural...
The effect of CO2-driven ocean acidification (OA) on marine biota has been extensively studied mostl...
The effect of CO2-driven ocean acidification (OA) on marine biota has been extensively studied mostl...
Ocean acidification severely affects bivalves, especially their larval stages. Consequently, the fat...
Ocean acidification severely affects bivalves, especially their larval stages. Consequently, the fat...
The carbonate chemistry of seawater from the Ria Formosa lagoon was experimentally manipulated, by d...
It is essential to predict the impact of elevated Pco2 on marine organisms and habitats to anticipat...
There is a need to understand the responses of marine molluscs in this era of rapid climate change. ...
The effect of CO2-driven ocean acidification (OA) on marine biota has been extensively studied mostl...
It is essential to predict the impact of elevated PCO2 on marine organisms and habitats to anticipat...
Due to rising atmospheric carbon dioxide concentrations, the oceans take up more C02 resulting in a ...
Ocean acidification (OA) is predicted to have widespread implications for marine organisms, yet the ...
Oceanic uptake of atmospheric CO2 is reducing seawater pH and shifting carbonate chemistry within, a...
Ocean acidification (OA) is predicted to have widespread implications for marine organisms, yet the ...
This study evaluated the impact of medium-term exposure to elevated pCO2 levels (750-1200 ppm) on th...
High latitudes are considered particularly vulnerable to ocean acidification, since they are natural...
The effect of CO2-driven ocean acidification (OA) on marine biota has been extensively studied mostl...
The effect of CO2-driven ocean acidification (OA) on marine biota has been extensively studied mostl...
Ocean acidification severely affects bivalves, especially their larval stages. Consequently, the fat...
Ocean acidification severely affects bivalves, especially their larval stages. Consequently, the fat...
The carbonate chemistry of seawater from the Ria Formosa lagoon was experimentally manipulated, by d...
It is essential to predict the impact of elevated Pco2 on marine organisms and habitats to anticipat...
There is a need to understand the responses of marine molluscs in this era of rapid climate change. ...
The effect of CO2-driven ocean acidification (OA) on marine biota has been extensively studied mostl...
It is essential to predict the impact of elevated PCO2 on marine organisms and habitats to anticipat...
Due to rising atmospheric carbon dioxide concentrations, the oceans take up more C02 resulting in a ...
Ocean acidification (OA) is predicted to have widespread implications for marine organisms, yet the ...
Oceanic uptake of atmospheric CO2 is reducing seawater pH and shifting carbonate chemistry within, a...
Ocean acidification (OA) is predicted to have widespread implications for marine organisms, yet the ...
This study evaluated the impact of medium-term exposure to elevated pCO2 levels (750-1200 ppm) on th...
High latitudes are considered particularly vulnerable to ocean acidification, since they are natural...
The effect of CO2-driven ocean acidification (OA) on marine biota has been extensively studied mostl...