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1 October 2007 Upward shift of alpine plants increases floristic similarity of mountain summits
Gerald Jurasinski, Jürgen Kreyling
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Abstract

Question: Does the upward shift of species and accompanied increase in species richness, induced by climate change, lead to homogenization of Alpine summit vegetation?

Location: Bernina region of the Swiss Alps.

Methods: Based on a data set from previous literature we expand the analysis from species richness to beta-diversity and spatial heterogeneity. Species compositions of mountain summits are compared using a two-component heterogeneity concept including the mean and the variance of Sørensen similarities calculated between the summits. Non-metric multidimensional scaling is applied to explore developments of single summits in detail.

Results: Both heterogeneity components (mean dissimilarity and variance) decrease over time, indicating a trend towards more homogeneous vegetation among Alpine summits. However, the development on single summits is not strictly unidirectional.

Conclusions: The upward shift of plant species leads to homogenization of alpine summit regions. Thus, increasing alpha-diversity is accompanied by decreasing beta-diversity. Beta-diversity demands higher recognition by scientists as well as nature conservationists as it detects changes which cannot be described using species richness alone.

Gerald Jurasinski and Jürgen Kreyling "Upward shift of alpine plants increases floristic similarity of mountain summits," Journal of Vegetation Science 18(5), 711-718, (1 October 2007). https://doi.org/10.1658/1100-9233(2007)18[711:USOAPI]2.0.CO;2
Received: 9 October 2006; Accepted: 9 February 2007; Published: 1 October 2007
JOURNAL ARTICLE
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KEYWORDS
Bernina
Beta-diversity
climate change
heterogeneity
long-term monitoring
non-metric multidimensional scaling
similarity
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