Using a targeted metabolomic approach we investigated the effects of low seawater pH on energy metabolism in two late copepodite stages (CIV and CV) of the keystone Arctic copepod species Calanus glacialis. Exposure to decreasing seawater pH (from 8.0 to 7.0) caused increased ATP, ADP and NAD+ and decreased AMP concentrations in stage CIV, and increased ATP and phospho-L-arginine and decreased AMP concentrations in stage CV. Metabolic pathway enrichment analysis showed enrichment of the TCA cycle and a range of amino acid metabolic pathways in both stages. Concentrations of lactate, malate, fumarate and alpha-ketoglutarate (all involved in the TCA cycle) increased in stage CIV, whereas only alpha-ketoglutarate increased in stage CV. Based o...
The critical role played by copepods in ocean ecology and biogeochemistry warrants an understanding ...
The critical role played by copepods in ocean ecology and biogeochemistry warrants an understanding ...
As the world's oceans continue to absorb anthropogenic CO2 from the atmosphere, the carbonate chemis...
Using a targeted metabolomic approach we investigated the effects of low seawater pH on energy metab...
<div><p>Widespread ocean acidification (OA) is transforming the chemistry of the global ocean, and t...
Widespread ocean acidification (OA) is transforming the chemistry of the global ocean, and the Arcti...
Widespread ocean acidification (OA) is transforming the chemistry of the global ocean, and the Arcti...
Marine copepods are central to the productivity and biogeochemistry of marine ecosystems. Neverthele...
Widespread ocean acidification (OA) is modifying the chemistry of the global ocean, and the Arctic i...
It is currently under debate whether organisms that regulate their acid–base status under environmen...
The Arctic Ocean already experiences areas of low pH and high CO2, and it is expected to be most rap...
The Arctic region is undergoing rapid and significant changes, characterized by high rates of acidi...
Areas of the Arctic Ocean are already experiencing seasonal variation in low pH/elevated pCO2 and ar...
Areas of the Arctic Ocean are already experiencing seasonal variation in low pH/elevated pCO2 and ar...
Ocean acidification (OA) and ocean warming are threatening marine life. Within the framework of the ...
The critical role played by copepods in ocean ecology and biogeochemistry warrants an understanding ...
The critical role played by copepods in ocean ecology and biogeochemistry warrants an understanding ...
As the world's oceans continue to absorb anthropogenic CO2 from the atmosphere, the carbonate chemis...
Using a targeted metabolomic approach we investigated the effects of low seawater pH on energy metab...
<div><p>Widespread ocean acidification (OA) is transforming the chemistry of the global ocean, and t...
Widespread ocean acidification (OA) is transforming the chemistry of the global ocean, and the Arcti...
Widespread ocean acidification (OA) is transforming the chemistry of the global ocean, and the Arcti...
Marine copepods are central to the productivity and biogeochemistry of marine ecosystems. Neverthele...
Widespread ocean acidification (OA) is modifying the chemistry of the global ocean, and the Arctic i...
It is currently under debate whether organisms that regulate their acid–base status under environmen...
The Arctic Ocean already experiences areas of low pH and high CO2, and it is expected to be most rap...
The Arctic region is undergoing rapid and significant changes, characterized by high rates of acidi...
Areas of the Arctic Ocean are already experiencing seasonal variation in low pH/elevated pCO2 and ar...
Areas of the Arctic Ocean are already experiencing seasonal variation in low pH/elevated pCO2 and ar...
Ocean acidification (OA) and ocean warming are threatening marine life. Within the framework of the ...
The critical role played by copepods in ocean ecology and biogeochemistry warrants an understanding ...
The critical role played by copepods in ocean ecology and biogeochemistry warrants an understanding ...
As the world's oceans continue to absorb anthropogenic CO2 from the atmosphere, the carbonate chemis...