Endemic species in mountains are vulnerable to rapid climate change. We elucidated distributional overlaps and related climatic variables for two endemic sister taxa of Rhododendron and a generalist with respect to current and future climate conditions. Our research questions are: (i) Which climate factors separate the distributions of Rhododendron cowanianum, R. lepidotum and R. lowndesii? (ii) How large is the geographic overlap in current and future distributions? (iii) Is it likely that the species are able to track their niches in the future? To answer these questions, we performed species distribution modelling on binomial Rhododendron occurrences accompanied by random pseudo-absences and absences constrained by other Rhododendron tax...
Tropical montane systems are characterized by a high plant species diversity and complex environment...
textModeling the distribution of species, especially of invasive species in non-native ranges, has m...
Aim: At the macroscale, climate strongly correlates with species richness gradients, resulting from ...
Endemic species in mountains are vulnerable to rapid climate change. We elucidated distributional ov...
Endemic species in mountains are vulnerable to rapid climate change. We elucidated distributional ov...
Introduction: Climate change and land-use (intensity) change are factors that force biological organ...
Understanding the environmental factors determining the distribution of species with different range...
Biodiversity loss and variation in species responses to climate and land use change have been found ...
Rapid temperature changes in mountain ecosystems pose a great threat to alpine plant species and com...
Alpine plants' distribution is being pushed higher towards mountaintops due to global warming, final...
AbstractThe tree rhododendrons include the most widely distributed Himalayan Rhododendron species be...
The combination of climate change and land use change may have profound effects on terrestrial biodi...
The tree rhododendrons include the most widely distributed Himalayan Rhododendron species belonging ...
Aim: Understanding the evolution of the latitudinal diversity gradient (i.e. increase in species div...
As plant species expand their upper limit of distribution under current warming, some retain both tr...
Tropical montane systems are characterized by a high plant species diversity and complex environment...
textModeling the distribution of species, especially of invasive species in non-native ranges, has m...
Aim: At the macroscale, climate strongly correlates with species richness gradients, resulting from ...
Endemic species in mountains are vulnerable to rapid climate change. We elucidated distributional ov...
Endemic species in mountains are vulnerable to rapid climate change. We elucidated distributional ov...
Introduction: Climate change and land-use (intensity) change are factors that force biological organ...
Understanding the environmental factors determining the distribution of species with different range...
Biodiversity loss and variation in species responses to climate and land use change have been found ...
Rapid temperature changes in mountain ecosystems pose a great threat to alpine plant species and com...
Alpine plants' distribution is being pushed higher towards mountaintops due to global warming, final...
AbstractThe tree rhododendrons include the most widely distributed Himalayan Rhododendron species be...
The combination of climate change and land use change may have profound effects on terrestrial biodi...
The tree rhododendrons include the most widely distributed Himalayan Rhododendron species belonging ...
Aim: Understanding the evolution of the latitudinal diversity gradient (i.e. increase in species div...
As plant species expand their upper limit of distribution under current warming, some retain both tr...
Tropical montane systems are characterized by a high plant species diversity and complex environment...
textModeling the distribution of species, especially of invasive species in non-native ranges, has m...
Aim: At the macroscale, climate strongly correlates with species richness gradients, resulting from ...