Ocean-warming and acidification jeopardize Antarctic marine species, adapted to cold and constant conditions and naturally exposed to high pro-oxidant pressures and cadmium (Cd) bioavailability. The aim of this study was to investigate if projected temperature increase and pH reduction may affect the accumulation and the effects of Cd in the rockcod Trematomus bernacchii. Organisms were exposed for 14 days to six scenarios, combining environmental or increased temperature (−1◦ C, +1◦ C) and control or reduced pH (8.05, 7.60), either with or without Cd (40 µg/L). Responses in liver and gills were analyzed at different levels, including mRNA and functional mea-surements of metallothioneins and of a wide battery of antioxidants, integrated wit...
Oxidative challenge is an important factor affecting the adaptive strategies of Antarctic fish, but ...
Trematomus bernacchii is a notothenioid fish found in the Southern Ocean (Davison et al. 1994). The...
Antarctic species possess very low metabolic rates and poor capacities to change their physiological...
Ocean-warming and acidification jeopardize Antarctic marine species, adapted to cold and constant co...
High-latitude marine ecosystems are ranked to be among the most sensitive regions to climate change ...
Abstract: High-latitude marine ecosystems are ranked to be among the most sensitive regions to clim...
Although Antarctica is a pristine environment, organisms are challenged with contaminants either rel...
Despite the great interest in the consequences of climate change on the physiological functioning of...
In its fifth report in 2014 the IPCC reinforced the contribution of anthropogenic CO2 to global clim...
Metal bioaccumulation and metallothionein (MT) expression were investigated in the gills and liver o...
Studies have projected that future changes in sea surface temperature and pCO2 levels will impact hi...
Increases in atmospheric CO2 levels and associated ocean changes are expected to have dramatic impac...
AbstractAntarctic fish (Trematomus bernacchii) are an ideal group for studying the effect of ocean w...
Metal bioaccumulation and metallothionein (MT) expression were investigated in the gills and liver o...
Despite the key importance of Nrf2-Keap1 in regulating antioxidant system in vertebrates, this syste...
Oxidative challenge is an important factor affecting the adaptive strategies of Antarctic fish, but ...
Trematomus bernacchii is a notothenioid fish found in the Southern Ocean (Davison et al. 1994). The...
Antarctic species possess very low metabolic rates and poor capacities to change their physiological...
Ocean-warming and acidification jeopardize Antarctic marine species, adapted to cold and constant co...
High-latitude marine ecosystems are ranked to be among the most sensitive regions to climate change ...
Abstract: High-latitude marine ecosystems are ranked to be among the most sensitive regions to clim...
Although Antarctica is a pristine environment, organisms are challenged with contaminants either rel...
Despite the great interest in the consequences of climate change on the physiological functioning of...
In its fifth report in 2014 the IPCC reinforced the contribution of anthropogenic CO2 to global clim...
Metal bioaccumulation and metallothionein (MT) expression were investigated in the gills and liver o...
Studies have projected that future changes in sea surface temperature and pCO2 levels will impact hi...
Increases in atmospheric CO2 levels and associated ocean changes are expected to have dramatic impac...
AbstractAntarctic fish (Trematomus bernacchii) are an ideal group for studying the effect of ocean w...
Metal bioaccumulation and metallothionein (MT) expression were investigated in the gills and liver o...
Despite the key importance of Nrf2-Keap1 in regulating antioxidant system in vertebrates, this syste...
Oxidative challenge is an important factor affecting the adaptive strategies of Antarctic fish, but ...
Trematomus bernacchii is a notothenioid fish found in the Southern Ocean (Davison et al. 1994). The...
Antarctic species possess very low metabolic rates and poor capacities to change their physiological...