Dieback and expansions: species-specific responses during 20 years of amplified warming in the high Alps

被引:26
作者
Steinbauer, Klaus [1 ,2 ]
Lamprecht, Andrea [1 ,2 ]
Semenchuk, Philipp [3 ]
Winkler, Manuela [1 ,2 ]
Pauli, Harald [1 ,2 ]
机构
[1] Austrian Acad Sci, Inst Interdisciplinary Mt Res, GLORIA Coordinat, Silbergasse 30-3, A-1190 Vienna, Austria
[2] Univ Nat Resources & Life Sci Vienna, Dept Integrat Biol & Biodivers Res, Silbergasse 30-3, A-1190 Vienna, Austria
[3] Univ Vienna, Dept Bot & Biodivers Res, A-1030 Vienna, Austria
关键词
Alpine; Biodiversity; Climate change; Ecotone; Migration; Nival; Schrankogel; Species; HIGH-MOUNTAIN PLANTS; CLIMATE-CHANGE IMPACTS; RANGE SHIFTS; ALPINE; COMMUNITIES; DIVERSITY; ACCLIMATION; RESPIRATION; REGRESSION; VEGETATION;
D O I
10.1007/s00035-019-00230-6
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
The largest alpine-nival vegetation permanent plot site in the Alps, the GLORIA mastersite Schrankogel (Tirol, Austria), provided evidence of warming-driven vegetation changes already 10 years after its establishment in 1994. Another decade later, in 2014, substantial compositional changes with increasing ratios of warmth-demanding to cold-adapted species have been found. The current study deals with species-specific responses involved in an ongoing vegetation transformation across the alpine-nival ecotone on Schrankogel by using presence/absence as well as cover data from permanent plots, situated between 2900 and 3400 masl. The number of occupied plots per species remained constant or even increased during the first decade, whereas disappearance events became more frequent during the second one, especially for cold-adapted specialists (subnival-nival species). Remarkably, the latter was accompanied by continued strong losses in cover of all subnival-nival species. These losses were more frequent in plots with a more thermophilous species composition, suggesting an increasing maladaptation of subnival-nival species to warmer habitat conditions and a successive trailing-edge decline. Several species with a distribution centre at lower elevations (alpine-subnival) markedly increased in cover, comparatively more so in colder plots, indicating a leading-edge expansion. Moreover, our findings show an increase in occupied plots and cover of almost all snowbed species, suggesting that areas previously with a too long snowpack period are now becoming suitable snowbed habitats. Vegetation gaps arising from population dieback of cold-adapted species, however, could only be partly filled by advancing species, indicating that species declines have occurred already before the onset of strong competition pressure.
引用
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页码:1 / 11
页数:11
相关论文
共 59 条
  • [21] Upward shift in elevational plant species ranges in Sikkilsdalen, central Norway
    Felde, Vivian Astrup
    Kapfer, Jutta
    Grytnes, John-Arvid
    [J]. ECOGRAPHY, 2012, 35 (10) : 922 - 932
  • [22] Fischer M A., 2008, Exkursionsflora fur Osterreich, Liechtenstein und Sudtirol, ed
  • [23] Underestimated diversity in one of the world's best studied mountain ranges: The polyploid complex of Senecio carniolicus (Asteraceae) contains four species in the European Alps
    Flatscher, Ruth
    Garcia, Pedro Escobar
    Huelber, Karl
    Sonnleitner, Michaela
    Winkler, Manuela
    Saukel, Johannes
    Schneeweiss, Gerald M.
    Schoenswetter, Peter
    [J]. PHYTOTAXA, 2015, 213 (01) : 1 - 21
  • [24] Expanding, shifting and shrinking: The impact of global warming on species' elevational distributions
    Freeman, Benjamin G.
    Lee-Yaw, Julie A.
    Sunday, Jennifer M.
    Hargreaves, Anna L.
    [J]. GLOBAL ECOLOGY AND BIOGEOGRAPHY, 2018, 27 (11): : 1268 - 1276
  • [25] Disentangling observer error and climate change effects in long-term monitoring of alpine plant species composition and cover
    Futschik, Andreas
    Winkler, Manuela
    Steinbauer, Klaus
    Lamprecht, Andrea
    Rumpf, Sabine B.
    Barancok, Peter
    Palaj, Andrej
    Gottfried, Michael
    Pauli, Harald
    [J]. JOURNAL OF VEGETATION SCIENCE, 2020, 31 (01) : 14 - 25
  • [26] How does climate change affect regeneration of Mediterranean high-mountain plants? An integration and synthesis of current knowledge
    Gimenez-Benavides, L.
    Escudero, A.
    Garcia-Camacho, R.
    Garcia-Fernandez, A.
    Iriondo, J. M.
    Lara-Romero, C.
    Morente-Lopez, J.
    [J]. PLANT BIOLOGY, 2018, 20 : 50 - 62
  • [27] Gottfried M, 2002, MOUNTAIN BIODIVERSITY: A GLOBAL ASSESSMENT, P213
  • [28] Gottfried M, 2012, NAT CLIM CHANGE, V2, P111, DOI [10.1038/nclimate1329, 10.1038/NCLIMATE1329]
  • [29] CLIMATE EFFECTS ON MOUNTAIN PLANTS
    GRABHERR, G
    GOTTFRIED, M
    PAULI, H
    [J]. NATURE, 1994, 369 (6480) : 448 - 448
  • [30] Identifying the driving factors behind observed elevational range shifts on European mountains
    Grytnes, John-Arvid
    Kapfer, Jutta
    Jurasinski, Gerald
    Birks, Hilary H.
    Henriksen, Hanne
    Klanderud, Kari
    Odland, Arvid
    Ohlson, Mikael
    Wipf, Sonja
    Birks, H. John B.
    [J]. GLOBAL ECOLOGY AND BIOGEOGRAPHY, 2014, 23 (08): : 876 - 884