Impact of climate change on alpine vegetation of mountain summits in Norway
Climate change is affecting the composition and functioning of ecosystems across the globe. Mountain ecosystems are particularly sensitive to climate warming since their biota is generally limited by low temperatures. Cryptogams such as lichens and bryophytes are important for the biodiversity and f...
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Published in | Ecological research Vol. 32; no. 4; pp. 579 - 593 |
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Main Authors | , , , , , , , , |
Format | Journal Article |
Language | English |
Published |
Tokyo
Springer Japan
01.07.2017
Blackwell Publishing Ltd |
Subjects | |
Online Access | Get full text |
ISSN | 0912-3814 1440-1703 |
DOI | 10.1007/s11284-017-1472-1 |
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Abstract | Climate change is affecting the composition and functioning of ecosystems across the globe. Mountain ecosystems are particularly sensitive to climate warming since their biota is generally limited by low temperatures. Cryptogams such as lichens and bryophytes are important for the biodiversity and functioning of these ecosystems, but have not often been incorporated in vegetation resurvey studies. Hence, we lack a good understanding of how vascular plants, lichens and bryophytes respond interactively to climate warming in alpine communities. Here we quantified long-term changes in species richness, cover, composition and thermophilization (i.e. the increasing dominance of warm-adapted species) of vascular plants, lichens and bryophytes on four summits at Dovrefjell, Norway. These summits are situated along an elevational gradient from the low alpine to high alpine zone and were surveyed for all species in 2001, 2008 and 2015. During the 15-year period, a decline in lichen richness and increase in bryophyte richness was detected, whereas no change in vascular plant richness was found. Dwarf-shrub abundance progressively increased at the expense of lichens, and thermophilization was most pronounced for vascular plants, but occurred only on the lowest summits and northern aspects. Lichens showed less thermophilization and, for the bryophytes, no significant thermophilization was found. Although recent climate change may have primarily caused the observed changes in vegetation, combined effects with non-climatic factors (e.g. grazing and trampling) are likely important as well. At a larger scale, alpine vegetation shifts could have a profound impact on biosphere functioning with feedbacks to the global climate. |
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AbstractList | Climate change is affecting the composition and functioning of ecosystems across the globe. Mountain ecosystems are particularly sensitive to climate warming since their biota is generally limited by low temperatures. Cryptogams such as lichens and bryophytes are important for the biodiversity and functioning of these ecosystems, but have not often been incorporated in vegetation resurvey studies. Hence, we lack a good understanding of how vascular plants, lichens and bryophytes respond interactively to climate warming in alpine communities. Here we quantified long‐term changes in species richness, cover, composition and thermophilization (i.e. the increasing dominance of warm‐adapted species) of vascular plants, lichens and bryophytes on four summits at Dovrefjell, Norway. These summits are situated along an elevational gradient from the low alpine to high alpine zone and were surveyed for all species in 2001, 2008 and 2015. During the 15‐year period, a decline in lichen richness and increase in bryophyte richness was detected, whereas no change in vascular plant richness was found. Dwarf‐shrub abundance progressively increased at the expense of lichens, and thermophilization was most pronounced for vascular plants, but occurred only on the lowest summits and northern aspects. Lichens showed less thermophilization and, for the bryophytes, no significant thermophilization was found. Although recent climate change may have primarily caused the observed changes in vegetation, combined effects with non‐climatic factors (e.g. grazing and trampling) are likely important as well. At a larger scale, alpine vegetation shifts could have a profound impact on biosphere functioning with feedbacks to the global climate. |
Author | Lindmo, Sigrid De Frenne, Pieter Michelsen, Ottar Vanneste, Thomas Kapás, Rozália Erzsebet Holien, Håkon Graae, Bente Jessen Hassel, Kristian Kyrkjeeide, Magni Olsen |
Author_xml | – sequence: 1 givenname: Thomas orcidid: 0000-0001-5296-917X surname: Vanneste fullname: Vanneste, Thomas email: thomas.vanneste@ugent.be organization: Forest and Nature Lab, Department of Forest and Water Management, Ghent University, Department of Plant Production, Ghent University – sequence: 2 givenname: Ottar surname: Michelsen fullname: Michelsen, Ottar organization: NTNU Sustainability, Norwegian University of Science and Technology – sequence: 3 givenname: Bente Jessen surname: Graae fullname: Graae, Bente Jessen organization: Department of Biology, Norwegian University of Science and Technology – sequence: 4 givenname: Magni Olsen surname: Kyrkjeeide fullname: Kyrkjeeide, Magni Olsen organization: Norwegian Institute for Nature Research – sequence: 5 givenname: Håkon surname: Holien fullname: Holien, Håkon organization: Faculty of Bioscience and Aquaculture, Nord University – sequence: 6 givenname: Kristian surname: Hassel fullname: Hassel, Kristian organization: Department of Natural History, NTNU University Museum, Norwegian University of Science and Technology – sequence: 7 givenname: Sigrid surname: Lindmo fullname: Lindmo, Sigrid organization: Department of Biology, Norwegian University of Science and Technology – sequence: 8 givenname: Rozália Erzsebet surname: Kapás fullname: Kapás, Rozália Erzsebet organization: Department of Biology, Norwegian University of Science and Technology – sequence: 9 givenname: Pieter surname: De Frenne fullname: De Frenne, Pieter organization: Forest and Nature Lab, Department of Forest and Water Management, Ghent University, Department of Plant Production, Ghent University |
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Copyright | The Author(s) 2018 2017 The Ecological Society of Japan Ecological Research is a copyright of Springer, (2018). All Rights Reserved. |
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Keywords | Alpine vegetation Climate change Cryptogams Resurvey study Thermophilization |
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Notes | Electronic supplementary material The online version of this article (doi:10.1007/s11284‐017‐1472‐1) contains supplementary material, which is available to authorized users. The original version of this article was revised due to a retrospective Open Access. . A correction to this article is available online at https://doi.org/10.1007/s11284‐018‐1596‐y ObjectType-Article-1 SourceType-Scholarly Journals-1 ObjectType-Feature-2 content type line 14 content type line 23 |
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SubjectTerms | Abundance Alpine environments Alpine vegetation Behavioral Sciences Biodiversity Biomedical and Life Sciences Biosphere Biota Bryophyta Bryophytes Climate Climate change Composition Cryptogams Ecology Ecosystems Environmental impact Evolutionary Biology Flowers & plants Forestry Global climate Global warming Grazing Lichens Life Sciences Long-term changes Low temperature Mountain ecosystems Norway Original Article Plant Sciences Plants Plants (botany) Resurvey study species diversity Species richness temperature Thermophilization Trampling trampling damage vascular plants Vegetation Zoology |
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Title | Impact of climate change on alpine vegetation of mountain summits in Norway |
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