Antarctic species possess very low metabolic rates and poor capacities to change their physiological state, thus making them extremely vulnerable to changing environmental conditions. Mitochondria are a key element in shaping whole organism energy turnover and functional capacity. In my study, the effects of rising temperature and increased seawater PCO2 on the energy metabolism were compared between various nototheniids from sub-Antarctic and cold-temperate and Antarctic waters, and between cephalopods from the Antarctic and temperate latitudes. I determined extra- and intracellular blood carbonate parameters, enzymatic capacities and oxygen consumption at whole animal and mitochondrial level and mitochondrial lipid composition and proton ...
Antarctic notothenioid fish are characterized by their evolutionary adaptation to the cold, thermost...
Mitochondrial plasticity plays a central role in setting the capacity for acclimation of aerobic met...
Antarctic fish of the suborder Notothenioidei display remarkable metabolic adaptations to life in th...
Antarctic species possess very low metabolic rates and poor capacities to change their physiological...
Introduction: Ongoing ocean warming and acidification increasingly affect marine ecosystems, in part...
Introduction Ongoing ocean warming and acidification increasingly affect marine ecosystems, in parti...
Antarctic notothenioid fish are characterized by their evolutionary adaptation to the cold, thermost...
Background: Many Antarctic notothenioid fish are considered losers of global change, due to their lo...
Abstract Introduction Ongoing ocean warming and acidification increasingly affect marine ecosystems,...
The anthropogenic emissions of greenhouse gases are causing an increase in atmospheric and oceanic t...
Antarctic fauna are highly adapted to the frigid waters of the Southern Ocean. This study describes ...
The anthropogenic emissions of greenhouse gases are causing an increase in atmospheric and oceanic ...
Ongoing ocean warming and acidification have been found to particularly affect polar marine ecosyste...
Background: Ocean acidification and warming are happening fast in the Arctic but little is known abo...
Studies in temperate fishes provide evidence that cardiac mitochondrial function and the capacity to...
Antarctic notothenioid fish are characterized by their evolutionary adaptation to the cold, thermost...
Mitochondrial plasticity plays a central role in setting the capacity for acclimation of aerobic met...
Antarctic fish of the suborder Notothenioidei display remarkable metabolic adaptations to life in th...
Antarctic species possess very low metabolic rates and poor capacities to change their physiological...
Introduction: Ongoing ocean warming and acidification increasingly affect marine ecosystems, in part...
Introduction Ongoing ocean warming and acidification increasingly affect marine ecosystems, in parti...
Antarctic notothenioid fish are characterized by their evolutionary adaptation to the cold, thermost...
Background: Many Antarctic notothenioid fish are considered losers of global change, due to their lo...
Abstract Introduction Ongoing ocean warming and acidification increasingly affect marine ecosystems,...
The anthropogenic emissions of greenhouse gases are causing an increase in atmospheric and oceanic t...
Antarctic fauna are highly adapted to the frigid waters of the Southern Ocean. This study describes ...
The anthropogenic emissions of greenhouse gases are causing an increase in atmospheric and oceanic ...
Ongoing ocean warming and acidification have been found to particularly affect polar marine ecosyste...
Background: Ocean acidification and warming are happening fast in the Arctic but little is known abo...
Studies in temperate fishes provide evidence that cardiac mitochondrial function and the capacity to...
Antarctic notothenioid fish are characterized by their evolutionary adaptation to the cold, thermost...
Mitochondrial plasticity plays a central role in setting the capacity for acclimation of aerobic met...
Antarctic fish of the suborder Notothenioidei display remarkable metabolic adaptations to life in th...