Ocean acidification (OA) and hypoxic events are increasing worldwide problems, their interactive effects have not been well clarified, although their co-occurrence is prevalent. The East China Sea (the Yangtze River estuary area) suffers from not only coastal hypoxia but also pH fluctuation, representing an ideal study site to explore the combined effect of OA and hypoxia on marine bivalves. We experimentally evaluated the antioxidant response of the mussel Mytilus coruscus exposed to three pH levels (8.1, 7.7 and 7.3) at two dissolved oxygen (DO) levels (2.0 mg L−1 and 6.0 mg L−1) for 72 h. Activities of superoxide dismutase, catalase, glutathione peroxidase, acid phosphatase, and alkaline phosphatase and levels of malondialdehyde were mea...
CO2-driven acidification and emerging contaminants, such as pharmaceuticals, pose new threats for th...
Intertidal blue mussels, Mytilus edulis, experience hypoxia reoxygenation during tidal emersion and ...
Aquatic invertebrates use antioxidant systems to endure intertidal environments, where temperature, ...
Ocean acidification (OA) and hypoxic events are increasing worldwide problems, their interactive eff...
Hypoxia and ocean acidification are two consequences of anthropogenic activities. These global trend...
This study evaluated the combined effects of seawater pH decrease and temperature increase on the ac...
Hypoxia and ocean acidification are two consequences of anthropogenic activities. These global trend...
The rising anthropogenic atmospheric CO2 results in the reduction of seawater pH, namely ocean acidi...
Hypoxia often intensifies with rising dissolved CO2, but the concurrent effects of hypoxia and acidi...
The combined effects of decreased pH and increased temperature values on antioxidant enzyme activiti...
Physiological responses of Mytilus galloprovincialis against environmental dissolved oxygen partial ...
The impacts of seawater acidification and salinity shifts on metabolism, energy reserves, and oxidat...
The impacts of seawater acidification and salinity shifts on metabolism, energy reserves, and oxidat...
The impacts of seawater acidification and salinity shifts on metabolism, energy reserves, and oxidat...
The impacts of seawater acidification and salinity shifts on metabolism, energy reserves, and oxidat...
CO2-driven acidification and emerging contaminants, such as pharmaceuticals, pose new threats for th...
Intertidal blue mussels, Mytilus edulis, experience hypoxia reoxygenation during tidal emersion and ...
Aquatic invertebrates use antioxidant systems to endure intertidal environments, where temperature, ...
Ocean acidification (OA) and hypoxic events are increasing worldwide problems, their interactive eff...
Hypoxia and ocean acidification are two consequences of anthropogenic activities. These global trend...
This study evaluated the combined effects of seawater pH decrease and temperature increase on the ac...
Hypoxia and ocean acidification are two consequences of anthropogenic activities. These global trend...
The rising anthropogenic atmospheric CO2 results in the reduction of seawater pH, namely ocean acidi...
Hypoxia often intensifies with rising dissolved CO2, but the concurrent effects of hypoxia and acidi...
The combined effects of decreased pH and increased temperature values on antioxidant enzyme activiti...
Physiological responses of Mytilus galloprovincialis against environmental dissolved oxygen partial ...
The impacts of seawater acidification and salinity shifts on metabolism, energy reserves, and oxidat...
The impacts of seawater acidification and salinity shifts on metabolism, energy reserves, and oxidat...
The impacts of seawater acidification and salinity shifts on metabolism, energy reserves, and oxidat...
The impacts of seawater acidification and salinity shifts on metabolism, energy reserves, and oxidat...
CO2-driven acidification and emerging contaminants, such as pharmaceuticals, pose new threats for th...
Intertidal blue mussels, Mytilus edulis, experience hypoxia reoxygenation during tidal emersion and ...
Aquatic invertebrates use antioxidant systems to endure intertidal environments, where temperature, ...