Human activity is currently changing our environment rapidly, with predicted temperature increases of 1–5°C over the coming century and increased nitrogen and phosphorus inputs in aquatic ecosystems. In the shallow parts of these ecosystems, submerged aquatic plants enhance water clarity by resource competition with phytoplankton, provide habitat, and serve as a food source for other organisms. The carbon:nutrient stoichiometry of submerged aquatic plants can be affected by changes in both temperature and nutrient availability. We hypothesized that elevated temperature leads to higher carbon:nutrient ratios through enhanced nutrient-use efficiency, while nutrient addition leads to lower carbon:nutrient ratios by the luxurious uptake of nutr...
The abundance and stoichiometry of aquatic plants are crucial for nutrient cycling and energy transf...
The abundance and stoichiometry of aquatic plants are crucial for nutrient cycling and energy transf...
Temperatures have been rising throughout recent decades and are predicted to rise further in the com...
Human activity is currently changing our environment rapidly, with predicted temperature increases o...
Human activity is currently changing our environment rapidly, with predicted temperature increases o...
Human activity is currently changing our environment rapidly, with predicted temperature increases o...
Human activity is currently changing our environment rapidly, with predicted temperature increases o...
Human activity is currently changing our environment rapidly, with predicted temperature increases o...
Human activity is currently changing our environment rapidly, with predicted temperature increases o...
Human activity is currently changing our environment rapidly, with predicted temperature increases o...
Human activity is currently changing our environment rapidly, with predicted temperature increases o...
Human activity is currently changing our environment rapidly, with predicted temperature increases o...
The abundance and stoichiometry of aquatic plants are crucial for nutrient cycling and energy transf...
The abundance and stoichiometry of aquatic plants are crucial for nutrient cycling and energy transf...
The abundance and stoichiometry of aquatic plants are crucial for nutrient cycling and energy transf...
The abundance and stoichiometry of aquatic plants are crucial for nutrient cycling and energy transf...
The abundance and stoichiometry of aquatic plants are crucial for nutrient cycling and energy transf...
Temperatures have been rising throughout recent decades and are predicted to rise further in the com...
Human activity is currently changing our environment rapidly, with predicted temperature increases o...
Human activity is currently changing our environment rapidly, with predicted temperature increases o...
Human activity is currently changing our environment rapidly, with predicted temperature increases o...
Human activity is currently changing our environment rapidly, with predicted temperature increases o...
Human activity is currently changing our environment rapidly, with predicted temperature increases o...
Human activity is currently changing our environment rapidly, with predicted temperature increases o...
Human activity is currently changing our environment rapidly, with predicted temperature increases o...
Human activity is currently changing our environment rapidly, with predicted temperature increases o...
Human activity is currently changing our environment rapidly, with predicted temperature increases o...
The abundance and stoichiometry of aquatic plants are crucial for nutrient cycling and energy transf...
The abundance and stoichiometry of aquatic plants are crucial for nutrient cycling and energy transf...
The abundance and stoichiometry of aquatic plants are crucial for nutrient cycling and energy transf...
The abundance and stoichiometry of aquatic plants are crucial for nutrient cycling and energy transf...
The abundance and stoichiometry of aquatic plants are crucial for nutrient cycling and energy transf...
Temperatures have been rising throughout recent decades and are predicted to rise further in the com...