Rising levels of CO2 in the atmosphere have led to increased CO2 concentrations in the oceans. This enhanced carbon availability to the marine primary producers has the potential to change their nutrient stoichiometry, and higher carbon to nutrient ratios are expected. As a result, the quality of the primary producers as food for herbivores may change. Here, we present experimental work showing the effect of feeding Rhodomonas salina grown under different pCO2 (200, 400 and 800 µatm) on the copepod Acartia tonsa. The rate of development of copepodites decreased with increasing CO2 availability to the algae. The surplus carbon in the algae was excreted by the copepods, with younger stages (copepodites) excreting most of their surplus carbon ...
Rising levels of atmospheric CO2 are responsible for a change in the carbonate chemistry of seawater...
Plankton communities play a key role in the marine food web and are expected to be highly sensitive ...
<div><p>Our present understanding of ocean acidification (OA) impacts on marine organisms caused by ...
Rising levels of CO2 in the atmosphere have led to increased CO2 concentrations in the oceans. This ...
Change in the nutritional quality of phytoplankton is a key mechanism through which ocean acidificat...
Change in the nutritional quality of phytoplankton is a key mechanism through which ocean acidificat...
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 ...
The critical role played by copepods in ocean ecology and biogeochemistry warrants an understanding ...
Climate change mediates marine chemical and physical environments and therefore influences marine or...
Plankton communities play a key role in the marine food web and are expected to be highly sensitive ...
Plankton communities play a key role in the marine food web and are expected to be highly sensitive ...
The increasing CO2 concentration in the atmosphere caused by burning fossil fuels leads to increasin...
Our present understanding of ocean acidification (OA) impacts on marine organisms caused by rapidly ...
Our present understanding of ocean acidification (OA) impacts on marine organisms caused by rapidly ...
Rising levels of atmospheric CO2 are responsible for a change in the carbonate chemistry of seawater...
Plankton communities play a key role in the marine food web and are expected to be highly sensitive ...
<div><p>Our present understanding of ocean acidification (OA) impacts on marine organisms caused by ...
Rising levels of CO2 in the atmosphere have led to increased CO2 concentrations in the oceans. This ...
Change in the nutritional quality of phytoplankton is a key mechanism through which ocean acidificat...
Change in the nutritional quality of phytoplankton is a key mechanism through which ocean acidificat...
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 ...
The critical role played by copepods in ocean ecology and biogeochemistry warrants an understanding ...
Climate change mediates marine chemical and physical environments and therefore influences marine or...
Plankton communities play a key role in the marine food web and are expected to be highly sensitive ...
Plankton communities play a key role in the marine food web and are expected to be highly sensitive ...
The increasing CO2 concentration in the atmosphere caused by burning fossil fuels leads to increasin...
Our present understanding of ocean acidification (OA) impacts on marine organisms caused by rapidly ...
Our present understanding of ocean acidification (OA) impacts on marine organisms caused by rapidly ...
Rising levels of atmospheric CO2 are responsible for a change in the carbonate chemistry of seawater...
Plankton communities play a key role in the marine food web and are expected to be highly sensitive ...
<div><p>Our present understanding of ocean acidification (OA) impacts on marine organisms caused by ...