Changes in plant composition and diversity in an alpine heath and meadow after 18 years of experimental warming

被引:0
作者
Juha M. Alatalo
Mohammad Bagher Erfanian
Ulf Molau
Shengbin Chen
Yang Bai
Annika K. Jägerbrand
机构
[1] Qatar University,Environmental Science Center
[2] Ferdowsi University of Mashhad,Quantitative Plant Ecology and Biodiversity Research Lab, Department of Biology, Faculty of Science
[3] University of Gothenburg,Department of Biological and Environmental Sciences
[4] Chengdu University of Technology,College of Ecology and Environment
[5] Chinese Academy of Sciences,Xishuangbanna Tropical Botanical Garden
[6] Halmstad University,Department of Environmental and Biosciences, School of Business, Innovation and Sustainability
来源
Alpine Botany | 2022年 / 132卷
关键词
Arctic; Climate change; Species diversity; Species richness; Tundra;
D O I
暂无
中图分类号
学科分类号
摘要
Global warming is expected to have large impacts on high alpine and Arctic ecosystems in the future. Here we report effects of 18 years of experimental warming on two contrasting high alpine plant communities in subarctic Sweden. Using open-top chambers, we analysed effects of long-term passive experimental warming on a heath and a meadow. We determined the impact on species composition, species diversity (at the level of rare, common and dominant species), and phylogenetic and functional diversity. Long-term warming drove differentiation in species composition in both communities; warmed plots, but not control plots, had distinctly different species composition in 2013 compared with 1995. Beta diversity increased in the meadow, while it decreased in the heath. Long-term warming had significant negative effects on the three orders of phylogenetic Hill diversity in the meadow. There was a similar tendency in the heath, but only phylogenetic diversity of dominant species was significantly affected. Long-term warming caused reductions in forbs in the heath, while evergreen shrubs increased. In the meadow, deciduous and evergreen shrubs showed increased abundance from 2001 to 2013 in warmed plots. Responses in species and phylogenetic diversity to experimental warming varied over both time (medium (7 years) vs long-term (18 years)) and space (between two neighbouring plant communities). The meadow community was more negatively affected in terms of species and phylogenetic diversity than the heath community. A potential driver for the changes in the meadow may be decreased soil moisture caused by long-term warming.
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页码:181 / 193
页数:12
相关论文
共 582 条
  • [51] Giesler R(2002)Rapid recent range-margin rise of tree and shrub species in the Swedish Scandes J Ecol 161 1815-315
  • [52] Bonanomi G(2018)Climate change leads to accelerated transformation of high-elevation vegetation in the central Alps New Phytol 115 322-154
  • [53] Stinca A(2016)Coupled long-term summer warming and deeper snow alters species composition and stimulates gross primary productivity in tussock tundra Oecologia 29 422-17
  • [54] Chirico GB(2020)Changes in plant species richness distribution in Tibetan alpine grasslands under different precipitation scenarios Global Ecol Conserv 20 784-562
  • [55] Ciaschetti G(2019)Contrasting impacts of climate change on the vegetation of windy ridges and snowbeds in the Swiss Alps Alp Bot 3 19-416
  • [56] Saracino A(2006)Generalization of heterogeneous alpine vegetation in air photo-based image classification, Latnjajaure catchment, northern Sweden Pirineos 6 547-5003
  • [57] Incerti G(2018)Shifting plant species composition in response to climate change stabilizes grassland primary production Proc Natl Acad Sci 35 1-406
  • [58] Boutin M(2018)Long-term vegetation changes of treeless heath communities in northern Fennoscandia: Links to climate change trends and reindeer grazing J Veg Sci 27 1614-148
  • [59] Corcket E(2006)Disentangling effects of an experimentally imposed extreme temperature event and naturally associated desiccation on Arctic tundra Funct Ecol 92 308-655
  • [60] Alard D(1997)Open-top designs for manipulating field temperature in high-latitude ecosystems Glob Change Biol 85 143-1561