There has been growing recent use of elevational gradients as tools for assessing effects of temperature changes on vegetation properties, because these gradients enable temperature effects to be considered over larger spatial and temporal scales than is possible through conventional experiments. While many studies have explored the direct effects of temperature, the indirect effects of temperature through its long-term influence on soil abiotic or biotic properties remain essentially unexplored. We performed two climate chamber experiments using soils from a subarctic elevational gradient in Abisko, Sweden to investigate the direct effects of temperature, and indirect effects of temperature via soil legacies, on growth of two grass species...
Climate change in the Arctic has profound effects on tundra vegetation, directly through increasing ...
Global warming has begun to have a major impact on the species composition and functioning of plant ...
Global warming has begun to have a major impact on the species composition and functioning of plant ...
An improved knowledge of how contrasting types of plant communities and their associated soil biota ...
Predicting how plants will respond to global warming necessitates understanding of local plant adapt...
Climate change is altering ecosystems worldwide. Despite advances in our understanding of the effect...
Elevational gradients are increasingly recognized as a valuable tool for understanding how community...
Elevational gradients are increasingly recognized as a valuable tool for understanding how community...
During the past three decades the Earth has warmed with a rate unprecedented during the past 1000 ye...
Temperature and nutrients are major limiting factors in subarctic tundra. Experimental manipulation ...
Temperature change affects many aboveground and belowground ecosystem processes. Here we investigate...
Rising temperatures associated with global climate change are likely to drive major shifts in plant ...
Temperature change affects many aboveground and belowground ecosystem processes. Here we investigate...
The arctic and alpine regions are predicted to experience some of the highest rates of climate chang...
Climate change in the Arctic has profound effects on tundra vegetation, directly through increasing ...
Global warming has begun to have a major impact on the species composition and functioning of plant ...
Global warming has begun to have a major impact on the species composition and functioning of plant ...
An improved knowledge of how contrasting types of plant communities and their associated soil biota ...
Predicting how plants will respond to global warming necessitates understanding of local plant adapt...
Climate change is altering ecosystems worldwide. Despite advances in our understanding of the effect...
Elevational gradients are increasingly recognized as a valuable tool for understanding how community...
Elevational gradients are increasingly recognized as a valuable tool for understanding how community...
During the past three decades the Earth has warmed with a rate unprecedented during the past 1000 ye...
Temperature and nutrients are major limiting factors in subarctic tundra. Experimental manipulation ...
Temperature change affects many aboveground and belowground ecosystem processes. Here we investigate...
Rising temperatures associated with global climate change are likely to drive major shifts in plant ...
Temperature change affects many aboveground and belowground ecosystem processes. Here we investigate...
The arctic and alpine regions are predicted to experience some of the highest rates of climate chang...
Climate change in the Arctic has profound effects on tundra vegetation, directly through increasing ...
Global warming has begun to have a major impact on the species composition and functioning of plant ...
Global warming has begun to have a major impact on the species composition and functioning of plant ...