Understanding and predicting how biological communities respond to climate change is critical for assessing biodiversity vulnerability and guiding conservation efforts. Glacier‐ and snow‐fed rivers are one of the most sensitive ecosystems to climate change, and can provide early warning of wider‐scale changes. These rivers are frequently used for hydropower production but there is minimal understanding of how biological communities are influenced by climate change in a context of flow regulation. This study sheds light on this issue by disentangling structural (water temperature preference, taxonomic composition, alpha, beta and gamma diversities) and functional (functional traits, diversity, richness, evenness, dispersion and redundancy) e...
Land‐use intensification is a major driver of local species extinction and homogenization. Temperate...
Global warming is predicted to significantly alter species physiology, biotic interactions and thus ...
Understanding how climate change and other environmental stressors will affect species is a fundamen...
The aim of this study was to explore the effects of anthropogenic climate change on the dwarf succul...
Scenario-based biodiversity modelling is a powerful approach to evaluate how possible future socio-e...
To limit warming to well below 2°C, most scenario projections rely on greenhouse gas removal technol...
Scenario-based biodiversity modelling is a powerful approach to evaluate how possible future socio-e...
AimGeographic variation in dispersal abilities is widespread and likely to affect species’ range dyn...
Presented at the Environmental justice in the Anthropocene symposium held on April 24-25, 2017 at th...
Climate change can influence soil microorganisms directly by altering their growth and activity but ...
Priorities in addressing research gaps and challenges should follow the order of importance, which...
The ecological consequences of climate change have been recognized in numerous species, with perhaps...
Environmental gradients are caused by gradual changes in abiotic factors, which affect species abun...
Understanding the climatic and historical factors shaping species richness is a major goal of ecolog...
Understanding the climatic and historical factors shaping species richness is a major goal of ecolog...
Land‐use intensification is a major driver of local species extinction and homogenization. Temperate...
Global warming is predicted to significantly alter species physiology, biotic interactions and thus ...
Understanding how climate change and other environmental stressors will affect species is a fundamen...
The aim of this study was to explore the effects of anthropogenic climate change on the dwarf succul...
Scenario-based biodiversity modelling is a powerful approach to evaluate how possible future socio-e...
To limit warming to well below 2°C, most scenario projections rely on greenhouse gas removal technol...
Scenario-based biodiversity modelling is a powerful approach to evaluate how possible future socio-e...
AimGeographic variation in dispersal abilities is widespread and likely to affect species’ range dyn...
Presented at the Environmental justice in the Anthropocene symposium held on April 24-25, 2017 at th...
Climate change can influence soil microorganisms directly by altering their growth and activity but ...
Priorities in addressing research gaps and challenges should follow the order of importance, which...
The ecological consequences of climate change have been recognized in numerous species, with perhaps...
Environmental gradients are caused by gradual changes in abiotic factors, which affect species abun...
Understanding the climatic and historical factors shaping species richness is a major goal of ecolog...
Understanding the climatic and historical factors shaping species richness is a major goal of ecolog...
Land‐use intensification is a major driver of local species extinction and homogenization. Temperate...
Global warming is predicted to significantly alter species physiology, biotic interactions and thus ...
Understanding how climate change and other environmental stressors will affect species is a fundamen...