The Impact of Climate Change on Recent Vegetation Changes on Dovrefjell, Norway
The ongoing climate warming has been reported to affect a broad range of organisms, and mountain ecosystems are considered to be particularly sensitive because they are limited by low temperatures. Meteorological data show an increased temperature for the alpine areas at Dovrefjell, Norway, causing...
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doaj-6075a326841f4e7089c5597b12e64ab32020-11-24T21:05:18ZengMDPI AGDiversity1424-28182011-01-01319111110.3390/d3010091The Impact of Climate Change on Recent Vegetation Changes on Dovrefjell, NorwayJarle Inge HoltenOttar MichelsenBård PedersenAnne Olga SyverhusetThe ongoing climate warming has been reported to affect a broad range of organisms, and mountain ecosystems are considered to be particularly sensitive because they are limited by low temperatures. Meteorological data show an increased temperature for the alpine areas at Dovrefjell, Norway, causing a prolonged growing season and increased temperature sum. As part of the worldwide project Global Observation Research Initiative in Alpine Environments (GLORIA), the short-term changes in vascular plant species richness, species composition of lichen and vascular plant communities, and abundance of single species were studied at four summits representing an altitudinal gradient from the low alpine to the high alpine zone. During the period from 2001 to 2008, an increase in species richness at the lowest summit, as well as a change in the composition of vascular plant communities, was found at the two lowest summits. The results also indicate an increase in abundance of some shrubs and graminoids and a decline in the cover of some species of lichens at the lowest summit. These changes are in accordance with climate induced changes reported in other studies, but other causes for the observed vegetation changes, in particular changes in grazing and trampling pressure, cannot be ruled out. http://www.mdpi.com/1424-2818/3/1/91/vegetation changespecies richnessspecies compositionalpine environmenttemperature increasesoil temperature |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jarle Inge Holten Ottar Michelsen Bård Pedersen Anne Olga Syverhuset |
spellingShingle |
Jarle Inge Holten Ottar Michelsen Bård Pedersen Anne Olga Syverhuset The Impact of Climate Change on Recent Vegetation Changes on Dovrefjell, Norway Diversity vegetation change species richness species composition alpine environment temperature increase soil temperature |
author_facet |
Jarle Inge Holten Ottar Michelsen Bård Pedersen Anne Olga Syverhuset |
author_sort |
Jarle Inge Holten |
title |
The Impact of Climate Change on Recent Vegetation Changes on Dovrefjell, Norway |
title_short |
The Impact of Climate Change on Recent Vegetation Changes on Dovrefjell, Norway |
title_full |
The Impact of Climate Change on Recent Vegetation Changes on Dovrefjell, Norway |
title_fullStr |
The Impact of Climate Change on Recent Vegetation Changes on Dovrefjell, Norway |
title_full_unstemmed |
The Impact of Climate Change on Recent Vegetation Changes on Dovrefjell, Norway |
title_sort |
impact of climate change on recent vegetation changes on dovrefjell, norway |
publisher |
MDPI AG |
series |
Diversity |
issn |
1424-2818 |
publishDate |
2011-01-01 |
description |
The ongoing climate warming has been reported to affect a broad range of organisms, and mountain ecosystems are considered to be particularly sensitive because they are limited by low temperatures. Meteorological data show an increased temperature for the alpine areas at Dovrefjell, Norway, causing a prolonged growing season and increased temperature sum. As part of the worldwide project Global Observation Research Initiative in Alpine Environments (GLORIA), the short-term changes in vascular plant species richness, species composition of lichen and vascular plant communities, and abundance of single species were studied at four summits representing an altitudinal gradient from the low alpine to the high alpine zone. During the period from 2001 to 2008, an increase in species richness at the lowest summit, as well as a change in the composition of vascular plant communities, was found at the two lowest summits. The results also indicate an increase in abundance of some shrubs and graminoids and a decline in the cover of some species of lichens at the lowest summit. These changes are in accordance with climate induced changes reported in other studies, but other causes for the observed vegetation changes, in particular changes in grazing and trampling pressure, cannot be ruled out. |
topic |
vegetation change species richness species composition alpine environment temperature increase soil temperature |
url |
http://www.mdpi.com/1424-2818/3/1/91/ |
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