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Recent vegetation changes at the high‐latitude tree line ecotone are controlled by geomorphological disturbance,productivity and diversity
Authors:Risto Virtanen  Miska Luoto  Teppo Rämä  Kari Mikkola  Jan Hjort  John‐Arvid Grytnes  H John B Birks
Institution:1. Department of Biology, University of Oulu, PO Box 3000, FI‐90014, Finland,;2. Department of Geosciences and Geography, University of Helsinki, PO Box 64, FI‐00014, Finland,;3. Finnish Forest Research Institute, Etel?ranta 55, FI‐96300 Rovaniemi, Finland,;4. Department of Geography, University of Oulu, PO Box 3000, FI‐90014, Finland,;5. Department of Biology, University of Bergen, Thorm?hlensgt 53A/B, N‐5020 Bergen, Norway,;6. Environmental Change Research Centre, University College London, London WC1E 6BT, UK,;7. School of Geography and the Environment, University of Oxford, Oxford OX1 3QY, UK
Abstract:Aim We test how productivity, disturbance rate, plant functional composition and species richness gradients control changes in the composition of high‐latitude vegetation during recent climatic warming. Location Northern Fennoscandia, Europe. Methods We resampled tree line ecotone vegetation sites sampled 26 years earlier. To quantify compositional changes, we used generalized linear models to test relationships between compositional changes and environmental gradients. Results Compositional changes in species abundances are positively related to the normalized difference vegetation index (NDVI)‐based estimate of productivity gradient and to geomorphological disturbance. Competitive species in fertile sites show the greatest changes in abundance, opposed to negligible changes in infertile sites. Change in species richness is negatively related to initial richness, whereas geomorphological disturbance has positive effects on change in richness. Few lowland species have moved towards higher elevations. Main conclusions The sensitivity of vegetation to climate change depends on a complex interplay between productivity, physical and biotic disturbances, plant functional composition and richness. Our results suggest that vegetation on productive sites, such as herb‐rich deciduous forests at low altitudes, is more sensitive to climate warming than alpine tundra vegetation where grazing may have strong buffering effects. Geomorphological disturbance promotes vegetation change under climatic warming, whereas high diversity has a stabilizing effect.
Keywords:Climate change  CSR theory  disturbance  diversity  Fennoscandia  functional composition  herbivory  productivity  tundra  vegetation dynamics
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