Altitudinal treelines are typically temperature limited such that increasing temperatures linked to global climate change are causing upslope shifts of treelines worldwide. While such elevational increases are readily predicted based on shifting isotherms, at the regional level the realized response is often much more complex, with topography and local environmental conditions playing an important modifying role. Here, we used repeated aerial photographs in combination with forest inventory data to investigate changes in treeline position in the Central Mountain Range of Taiwan over the last 60years. A highly spatially variable upslope advance of treeline was identified in which topography is a major driver of both treeline form and advance...
Treeline shift and tree growth often respond to climatic changes and it is critical to identify and ...
Aim: Climate change is causing shifts in the range of species worldwide. In high altitude areas fore...
Treeline shift and tree growth often respond to climatic changes and it is critical to identify and ...
Altitudinal treelines are typically temperature limited such that increasing temperatures linked to ...
Aim: At the elevational limit of forest distribution, montane forests show diverse responses to envi...
Rapid climate change is impacting forest distribution, species composition and function globally. Al...
Altitudinal treeline advance represents a sensitive and well-studied example of species response to ...
Rapid environmental changes are driving shifts in forest distribution across the globe with signific...
Aim: At the elevational limit of forest distribution, montane forests show diverse responses to env...
Mountain systems throughout the globe are characterized by high levels of species richness and speci...
Treelines have been found to be lower in small isolated hilltops, but the specific dynamics behind t...
Ongoing global climate change is driving widespread shifts in species distributions. Trends show fre...
Climate change could cause alpine treelines to shift in altitude or to change their spatial pattern,...
Forest growth is sensitive to interannual climatic change in the alpine treeline ecotone (ATE). Whet...
The alpine treeline is commonly regarded as being sensitive to climatic warming because regeneration...
Treeline shift and tree growth often respond to climatic changes and it is critical to identify and ...
Aim: Climate change is causing shifts in the range of species worldwide. In high altitude areas fore...
Treeline shift and tree growth often respond to climatic changes and it is critical to identify and ...
Altitudinal treelines are typically temperature limited such that increasing temperatures linked to ...
Aim: At the elevational limit of forest distribution, montane forests show diverse responses to envi...
Rapid climate change is impacting forest distribution, species composition and function globally. Al...
Altitudinal treeline advance represents a sensitive and well-studied example of species response to ...
Rapid environmental changes are driving shifts in forest distribution across the globe with signific...
Aim: At the elevational limit of forest distribution, montane forests show diverse responses to env...
Mountain systems throughout the globe are characterized by high levels of species richness and speci...
Treelines have been found to be lower in small isolated hilltops, but the specific dynamics behind t...
Ongoing global climate change is driving widespread shifts in species distributions. Trends show fre...
Climate change could cause alpine treelines to shift in altitude or to change their spatial pattern,...
Forest growth is sensitive to interannual climatic change in the alpine treeline ecotone (ATE). Whet...
The alpine treeline is commonly regarded as being sensitive to climatic warming because regeneration...
Treeline shift and tree growth often respond to climatic changes and it is critical to identify and ...
Aim: Climate change is causing shifts in the range of species worldwide. In high altitude areas fore...
Treeline shift and tree growth often respond to climatic changes and it is critical to identify and ...