This study uses species distribution modeling and physiological and functional traits to predict the impacts of climate change on native freshwater fish in the Murray-Darling Basin, Australia. We modelled future changes in taxonomic and functional diversity in 2050 and 2080 for two scenarios of carbon emissions, identifying areas of great interest for conservation. Climatic-environmental variables were used to model the range of 23 species of native fish under each scenario. The consensus model, followed by the physiological filter of lethal temperature was retained for interpretation. Our study predicts a severe negative impact of climate change on both taxonomic and functional components of ichthyofauna of the Murray-Darling Basin. There ...
International audienceThe assessment of climate change impacts on biodiversity has so far been biase...
International audienceThe assessment of climate change impacts on biodiversity has so far been biase...
Aim: Climate change threatens biodiversity in all ecosystems, and major shifts in species distributi...
This study uses species distribution modeling and physiological and functional traits to predict the...
Freshwater environments and their fishes are particularly vulnerable to climate change because the p...
There are few quantitative predictions for the impacts of climate change on freshwater fish in Austr...
The aim of the present study was to predict future changes in biodiversity attributes (richness, rar...
The aim of the present study was to predict future changes in biodiversity attributes (richness, rar...
Anthropogenic climate change is already apparent and will have significant, ongoing impacts on Austr...
The implications of climate change for terrestrial and aquatic taxa are for their dispersal pole-war...
Climate change and land-use change are having substantial impacts on biodiversity world-wide, but fe...
Climate change poses a severe global threat to freshwater ecosystems. Aestivating freshwater fauna (...
One of the most obvious and expected impacts of climate change is a shift in the distributional rang...
International audienceThe assessment of climate change impacts on biodiversity has so far been biase...
International audienceThe assessment of climate change impacts on biodiversity has so far been biase...
International audienceThe assessment of climate change impacts on biodiversity has so far been biase...
International audienceThe assessment of climate change impacts on biodiversity has so far been biase...
Aim: Climate change threatens biodiversity in all ecosystems, and major shifts in species distributi...
This study uses species distribution modeling and physiological and functional traits to predict the...
Freshwater environments and their fishes are particularly vulnerable to climate change because the p...
There are few quantitative predictions for the impacts of climate change on freshwater fish in Austr...
The aim of the present study was to predict future changes in biodiversity attributes (richness, rar...
The aim of the present study was to predict future changes in biodiversity attributes (richness, rar...
Anthropogenic climate change is already apparent and will have significant, ongoing impacts on Austr...
The implications of climate change for terrestrial and aquatic taxa are for their dispersal pole-war...
Climate change and land-use change are having substantial impacts on biodiversity world-wide, but fe...
Climate change poses a severe global threat to freshwater ecosystems. Aestivating freshwater fauna (...
One of the most obvious and expected impacts of climate change is a shift in the distributional rang...
International audienceThe assessment of climate change impacts on biodiversity has so far been biase...
International audienceThe assessment of climate change impacts on biodiversity has so far been biase...
International audienceThe assessment of climate change impacts on biodiversity has so far been biase...
International audienceThe assessment of climate change impacts on biodiversity has so far been biase...
Aim: Climate change threatens biodiversity in all ecosystems, and major shifts in species distributi...