1. Changing temperature regimes and precipitation patterns in the Subarctic will impact on vegetation composition and diversity including those of bryophyte and lichen communities, which are major drivers of high-latitude carbon and nutrient cycling and hydrology. 2. We investigated the relative importance of such impacts at different temporal, spatial and plant functional scales in subarctic Sphagnum fuscum -dominated peatlands, comprising both an in situ warming experiment and natural climatic and topographic gradients in northern Sweden and Norway. We applied multivariate analyses to investigate the relationships among cryptogam and vascular plant species composition and abiotic (temperature, moisture) and biotic ( Sphagnum growth) regim...
1. Vascular plant growth forms in northern peatlands differ in their strategies to cope with the har...
Peat mosses (genus Sphagnum) dominate most Northern mires and show distinct distributional limits in...
Abstract In northern peatlands, reduction of Sphagnum dominance in favour of vascular vegetation is ...
1. Changing temperature regimes and precipitation patterns in the Subarctic will impact on vegetatio...
Strong climate warming is predicted at higher latitudes this century, with potentially major consequ...
Little is known about the impact of changing temperature regimes on composition and diversity of cry...
The relative importance of global versus local environmental factors for growth and thus carbon upta...
Strong climate warming is predicted at higher latitudes this century, with potentially major consequ...
Little is known about the impact of changing temperature regimes on composition and diversity of cry...
Little is known about the impact of changing temperature regimes on composition and diversity of cry...
Peat bogs play a large role in the global sequestration of C, and are often dominated by different S...
There is growing recognition that changes in vegetation composition can strongly influence peatland ...
In three Scandinavian peatlands we studied to what extent plant and microbial community compositions...
In three Scandinavian peatlands we studied to what extent plant and microbial community composition ...
1. Vascular plant growth forms in northern peatlands differ in their strategies to cope with the har...
Peat mosses (genus Sphagnum) dominate most Northern mires and show distinct distributional limits in...
Abstract In northern peatlands, reduction of Sphagnum dominance in favour of vascular vegetation is ...
1. Changing temperature regimes and precipitation patterns in the Subarctic will impact on vegetatio...
Strong climate warming is predicted at higher latitudes this century, with potentially major consequ...
Little is known about the impact of changing temperature regimes on composition and diversity of cry...
The relative importance of global versus local environmental factors for growth and thus carbon upta...
Strong climate warming is predicted at higher latitudes this century, with potentially major consequ...
Little is known about the impact of changing temperature regimes on composition and diversity of cry...
Little is known about the impact of changing temperature regimes on composition and diversity of cry...
Peat bogs play a large role in the global sequestration of C, and are often dominated by different S...
There is growing recognition that changes in vegetation composition can strongly influence peatland ...
In three Scandinavian peatlands we studied to what extent plant and microbial community compositions...
In three Scandinavian peatlands we studied to what extent plant and microbial community composition ...
1. Vascular plant growth forms in northern peatlands differ in their strategies to cope with the har...
Peat mosses (genus Sphagnum) dominate most Northern mires and show distinct distributional limits in...
Abstract In northern peatlands, reduction of Sphagnum dominance in favour of vascular vegetation is ...