Range dynamics of mountain plants decrease with elevation.
Sabine B. Rumpf,Karl Hülber,Günther Klonner,Dietmar Moser,Martin Schütz,Johannes Wessely,Wolfgang Willner,Niklaus E. Zimmermann,Stefan Dullinger +8 more
TL;DR: It is demonstrated that, over recent decades, increases in abundance were more pronounced than range shifts, suggesting an in-filling process which decreases in intensity with increasing elevation.
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Abstract: Many studies report that mountain plant species are shifting upward in elevation. However, the majority of these reports focus on shifts of upper limits. Here, we expand the focus and simultaneously analyze changes of both range limits, optima, and abundances of 183 mountain plant species. We therefore resurveyed 1,576 vegetation plots first recorded before 1970 in the European Alps. We found that both range limits and optima shifted upward in elevation, but the most pronounced trend was a mean increase in species abundance. Despite huge species-specific variation, range dynamics showed a consistent trend along the elevational gradient: Both range limits and optima shifted upslope faster the lower they were situated historically, and species' abundance increased more for species from lower elevations. Traits affecting the species' dispersal and persistence capacity were not related to their range dynamics. Using indicator values to stratify species by their thermal and nutrient demands revealed that elevational ranges of thermophilic species tended to expand, while those of cold-adapted species tended to contract. Abundance increases were strongest for nutriphilous species. These results suggest that recent climate warming interacted with airborne nitrogen deposition in driving the observed dynamics. So far, the majority of species appear as "winners" of recent changes, yet "losers" are overrepresented among high-elevation, cold-adapted species with low nutrient demands. In the decades to come, high-alpine species may hence face the double pressure of climatic changes and novel, superior competitors that move up faster than they themselves can escape to even higher elevations.
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Citations
Preliminary evidence for upward elevational range shifts by Eastern Himalayan birds
TL;DR: Citizen science data from birding hotspots along an elevational gradient in the Eastern Himalayas over a 13-year period is used to evaluate whether 39 eastern Himalayan bird species might be shifting to higher elevations over time, by analyzing changes in the frequency of reporting of these species at birdwatching hotspots.
Modellierung der Vegetationshöhenstufen und der Areale von Buche und Tanne für die Schweiz
TL;DR: In this paper, the modellierten Projektionen der Vegetationshohenstufen in die Zukunft sind the Grundlage fur die Berucksichtigung des Klimawandels bei the Baumartenwahl.
3
A new method to explicitly estimate the shift of optimum along gradients in multispecies studies
Bastien Mourguiart,Benoit Liquet,Kerrie Mengersen,Thibaut Couturier,Jérôme Mansons,Y Braud,Aurélien Besnard +6 more
TL;DR: In this paper , an explicit hierarchical model of optimum shifts for multiple species having symmetrical response curves was proposed. But, to the best of our knowledge, none explicitly estimate it.
3
Climate Warming Alters Nutrient Storage in Seasonally Dry Forests: Insights From a 2,300 m Elevation Gradient
TL;DR: This paper investigated how warming might alter stocks of C, nitrogen (N), and phosphorus (P) in vegetation and the entire regolith using a space-for-time substitution along a bioclimatic gradient in the Sierra Nevada, California.
3
Improved photosynthesis by leaf nutrient content enhances water use efficiency in Juniperus tibetica along elevation gradients above 4000 m a.s.l.
Wenjing Tao,Tsam Ju,Richard I. Milne,Georg Miehe,Wentao Wang,Jialiang Li,Lei Chen,Lei Chen,Kangshan Mao,Kangshan Mao +9 more
TL;DR: In this article, the authors studied the influence of leaf functional traits on plant growth in high-mountain environments. But little is known about the relationship between plant functional traits and climate change.
3
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