Global change is predicted to cause shifts in species distributions and biodiversity in arctic tundra. We applied factorial warming and nutrient manipulation to a nutrient and species poor alpine/arctic heath community for seven years. Vascular plant abundance in control plots increased by 31%. There were also notable changes in cover in the nutrient and combined nutrient and warming treatments, with deciduous and evergreen shrubs declining, grasses overgrowing these plots. Sedge abundance initially increased significantly with nutrient amendment and then declined, going below initial values in the combined nutrient and warming treatment. Nutrient addition resulted in a change in dominance hierarchy from deciduous shrubs to grasses. We foun...
Rapid environmental change at high latitudes is predicted to greatly alter the diversity, structure,...
Global change is predicted to have major impacts on alpine and arctic ecosystems. Plant fitness and ...
1. Environmental change can affect species directly by altering their physical environment and indir...
Global change is predicted to cause shifts in species distributions and biodiversity in arctic tundr...
We studied the impact of simulated global change on a high alpine meadow plant community. Specifical...
We studied the impact of simulated global change on a high alpine meadow plant community. Specifical...
Global air temperature is unequivocally increasing and will keep rising, more rapidly in the Arctic ...
Macrolichens are important for the functioning and biodiversity of cold northern ecosystems and thei...
Long-term observational studies have detected greening and shrub encroachment in the subarctic attri...
Global warming is expected to have large impacts on high alpine and Arctic ecosystems in the future....
Arctic plant communities are altered by climate changes. The magnitude of these alterations depends ...
Tundra vegetation is responding rapidly to on-going climate warming. The changes in plant abundance ...
Summary: Environmental change can affect species directly by altering their physical environment and...
Rapid environmental change at high latitudes is predicted to greatly alter the diversity, structure,...
Global change is predicted to have major impacts on alpine and arctic ecosystems. Plant fitness and ...
1. Environmental change can affect species directly by altering their physical environment and indir...
Global change is predicted to cause shifts in species distributions and biodiversity in arctic tundr...
We studied the impact of simulated global change on a high alpine meadow plant community. Specifical...
We studied the impact of simulated global change on a high alpine meadow plant community. Specifical...
Global air temperature is unequivocally increasing and will keep rising, more rapidly in the Arctic ...
Macrolichens are important for the functioning and biodiversity of cold northern ecosystems and thei...
Long-term observational studies have detected greening and shrub encroachment in the subarctic attri...
Global warming is expected to have large impacts on high alpine and Arctic ecosystems in the future....
Arctic plant communities are altered by climate changes. The magnitude of these alterations depends ...
Tundra vegetation is responding rapidly to on-going climate warming. The changes in plant abundance ...
Summary: Environmental change can affect species directly by altering their physical environment and...
Rapid environmental change at high latitudes is predicted to greatly alter the diversity, structure,...
Global change is predicted to have major impacts on alpine and arctic ecosystems. Plant fitness and ...
1. Environmental change can affect species directly by altering their physical environment and indir...