Some aquatic plants present high biomass production with serious consequences on ecosystem functioning. Such mass development can be favored by environmental factors. Temperature increases are expected to modify individual species responses that could shape future communities. We explored the impact of rising water temperature on the growth, phenology, and metabolism of six macrophytes belonging to two biogeographic origins (exotic, native) and two growth forms (submerged, emergent). From June to October, they were exposed to ambient temperatures and a 3 °C warming in outdoor mesocosms. Percent cover and canopy height were favored by warmer water for the exotic emergent Ludwigia hexapetala. Warming did not modify total final biomass for any...
Freshwater plants affect the ecosystem functioning of shallow aquatic ecosystems. However, because n...
Freshwater plants affect the ecosystem functioning of shallow aquatic ecosystems. However, because n...
The abundance and stoichiometry of aquatic plants are crucial for nutrient cycling and energy transf...
International audienceSome aquatic plants present high biomass production with serious consequences ...
International audienceThe rise of global surface temperature by between 1.2 °C and 4 °C by 2100 is e...
Extreme climatic events, such as heat waves, are predicted to increase in frequency and intensity du...
Anthropogenic activities have led to global environmental change, resulting in the deterioration of ...
Anthropogenic activities have led to global environmental change, resulting in the deterioration of ...
Climate warming and eutrophication caused by anthropogenic activities strongly affect aquatic ecosys...
Environmental conditions and human activities play a significant role in structuring novel assemblag...
Warming and higher nitrogen loading induced by increasing precipitation are expected scenarios in no...
International audienceClimate changes will promote the growth of invasive aquatic macrophytes. The a...
In many aquatic ecosystems, free-floating plants compete with submerged plants for nutrients and lig...
Contemporary evidence suggests that submerged macrophytes are experiencing a global decline due to t...
The abundance and stoichiometry of aquatic plants are crucial for nutrient cycling and energy transf...
Freshwater plants affect the ecosystem functioning of shallow aquatic ecosystems. However, because n...
Freshwater plants affect the ecosystem functioning of shallow aquatic ecosystems. However, because n...
The abundance and stoichiometry of aquatic plants are crucial for nutrient cycling and energy transf...
International audienceSome aquatic plants present high biomass production with serious consequences ...
International audienceThe rise of global surface temperature by between 1.2 °C and 4 °C by 2100 is e...
Extreme climatic events, such as heat waves, are predicted to increase in frequency and intensity du...
Anthropogenic activities have led to global environmental change, resulting in the deterioration of ...
Anthropogenic activities have led to global environmental change, resulting in the deterioration of ...
Climate warming and eutrophication caused by anthropogenic activities strongly affect aquatic ecosys...
Environmental conditions and human activities play a significant role in structuring novel assemblag...
Warming and higher nitrogen loading induced by increasing precipitation are expected scenarios in no...
International audienceClimate changes will promote the growth of invasive aquatic macrophytes. The a...
In many aquatic ecosystems, free-floating plants compete with submerged plants for nutrients and lig...
Contemporary evidence suggests that submerged macrophytes are experiencing a global decline due to t...
The abundance and stoichiometry of aquatic plants are crucial for nutrient cycling and energy transf...
Freshwater plants affect the ecosystem functioning of shallow aquatic ecosystems. However, because n...
Freshwater plants affect the ecosystem functioning of shallow aquatic ecosystems. However, because n...
The abundance and stoichiometry of aquatic plants are crucial for nutrient cycling and energy transf...