Unlike in land plants, photosynthesis in many aquatic plants relies on bicarbonate in addition to carbon dioxide (CO2) to compensate for the low diffusivity and potential depletion of CO2 in water. Concentrations of bicarbonate and CO2 vary greatly with catchment geology. In this study, we investigate whether there is a link between these concentrations and the frequency of freshwater plants possessing the bicarbonate use trait. We show, globally, that the frequency of plant species with this trait increases with bicarbonate concentration. Regionally, however, the frequency of bicarbonate use is reduced at sites where the CO2 concentration is substantially above the air equilibrium, consistent with this trait being an adaptation to carbon l...
In aquatic environments, the concentration of inorganic carbon is spatially and temporally variable ...
Current global change scenarios predict an increase in atmospheric CO2 from the current 380 ppm to a...
The effect of CO2 supply is likely to play an important role in algal ecology. Since inorganic carbo...
Unlike in land plants, photosynthesis in many aquatic plants relies on bicarbonate in addition to ca...
Unlike in land plants, photosynthesis in many aquatic plants relies on bicarbonate in addition to ca...
Freshwater plants can be broadly divided into two major categories according to their photosynthetic...
Abstract Unlike in land plants, photosynthesis in many aquatic plants relies on bicarbonate in addi...
Change in plants as bicarbonate rises Freshwater plants can be broadly divided into two major categ...
Unlike in land plants, photosynthesis in many aquatic plants relies on bicarbonate in addition to ca...
The productivity and ecological distribution of freshwater plants can be controlled by the availabil...
International audienceThe productivity and ecological distribution of freshwater plants can be contr...
International audienceThe productivity and ecological distribution of freshwater plants can be contr...
International audienceThe productivity and ecological distribution of freshwater plants can be contr...
This thesis considers the implications of changes in the supply of resources for photosynthesis, wit...
Intrinsic water use efficiency (iWUE), defined as the ratio of photosynthesis to stomatal conductanc...
In aquatic environments, the concentration of inorganic carbon is spatially and temporally variable ...
Current global change scenarios predict an increase in atmospheric CO2 from the current 380 ppm to a...
The effect of CO2 supply is likely to play an important role in algal ecology. Since inorganic carbo...
Unlike in land plants, photosynthesis in many aquatic plants relies on bicarbonate in addition to ca...
Unlike in land plants, photosynthesis in many aquatic plants relies on bicarbonate in addition to ca...
Freshwater plants can be broadly divided into two major categories according to their photosynthetic...
Abstract Unlike in land plants, photosynthesis in many aquatic plants relies on bicarbonate in addi...
Change in plants as bicarbonate rises Freshwater plants can be broadly divided into two major categ...
Unlike in land plants, photosynthesis in many aquatic plants relies on bicarbonate in addition to ca...
The productivity and ecological distribution of freshwater plants can be controlled by the availabil...
International audienceThe productivity and ecological distribution of freshwater plants can be contr...
International audienceThe productivity and ecological distribution of freshwater plants can be contr...
International audienceThe productivity and ecological distribution of freshwater plants can be contr...
This thesis considers the implications of changes in the supply of resources for photosynthesis, wit...
Intrinsic water use efficiency (iWUE), defined as the ratio of photosynthesis to stomatal conductanc...
In aquatic environments, the concentration of inorganic carbon is spatially and temporally variable ...
Current global change scenarios predict an increase in atmospheric CO2 from the current 380 ppm to a...
The effect of CO2 supply is likely to play an important role in algal ecology. Since inorganic carbo...