Global warming has begun to have a major impact on the species composition and functioning of plant and soil communities. However, long-term community and ecosystem responses to increased temperature are still poorly understood. In this study, we used a well-established elevational gradient in northern Sweden to elucidate how plant, microbial and nematode communities shift with elevation and associated changes in temperature in three highly contrasting vegetation types (i.e. heath, meadow and Salix vegetation). We found that responses of both the abundance and composition of microbial and nematode communities to elevation differed greatly among the vegetation types. Within vegetation types, changes with elevation of plant, microbial and nem...
Alpine ecosystems harbor remarkably diverse and distinct plant communities that are characteristical...
Climate change in the Arctic has profound effects on tundra vegetation, directly through increasing ...
There has been growing recent use of elevational gradients as tools for assessing effects of tempera...
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 ...
Climate change is affecting the species composition and functioning of Arctic and sub-Arctic plant a...
Global climate warming is one of the key forces driving plant community shifts, such as range shifts...
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...
Climate change is altering ecosystems worldwide. Despite advances in our understanding of the effect...
Climate change can alter soil communities and functions, but the consequences are uncertain for most...
Climate change can alter soil communities and functions, but the consequences are uncertain for most...
1. Ecosystem productivity is largely dependent on soil nutrient cycling which, in turn, is driven by...
Alpine ecosystems harbor remarkably diverse and distinct plant communities that are characteristical...
Climate change in the Arctic has profound effects on tundra vegetation, directly through increasing ...
There has been growing recent use of elevational gradients as tools for assessing effects of tempera...
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 ...
Climate change is affecting the species composition and functioning of Arctic and sub-Arctic plant a...
Global climate warming is one of the key forces driving plant community shifts, such as range shifts...
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...
Climate change is altering ecosystems worldwide. Despite advances in our understanding of the effect...
Climate change can alter soil communities and functions, but the consequences are uncertain for most...
Climate change can alter soil communities and functions, but the consequences are uncertain for most...
1. Ecosystem productivity is largely dependent on soil nutrient cycling which, in turn, is driven by...
Alpine ecosystems harbor remarkably diverse and distinct plant communities that are characteristical...
Climate change in the Arctic has profound effects on tundra vegetation, directly through increasing ...
There has been growing recent use of elevational gradients as tools for assessing effects of tempera...