Hydrologic effects on riparian vegetation in a boreal river: an experiment testing climate change predictions

Abstract Climate change is expected to alter the magnitude and variation of flow in streams and rivers, hence providing new conditions for riverine communities. We evaluated plant ecological responses to climate change by transplanting turfs of riparian vegetation to new elevations in the riparian z...

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Published in:Global Change Biology
Language:English
Published: Wiley-Blackwell 2011
Subjects:
Online Access:http://hdl.handle.net/2262/56625
https://doi.org/10.1111/j.1365-2486.2010.02230.x
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spelling fttrinitycoll:oai:tara.tcd.ie:2262/56625 2023-05-15T17:45:14+02:00 Hydrologic effects on riparian vegetation in a boreal river: an experiment testing climate change predictions 2011-06-10T01:11:18Z http://hdl.handle.net/2262/56625 https://doi.org/10.1111/j.1365-2486.2010.02230.x en eng Wiley-Blackwell 1354-1013 (pISSN) 1365-2486 (eISSN) 13541013 (ISSN) GCB (PII) GCB-10-0021 (manuscript) http://hdl.handle.net/2262/56625 Global Change Biology 17 1 254 doi:10.1111/j.1365-2486.2010.02230.x GCB (abbrev) 6 months Life Sciences 2011 fttrinitycoll https://doi.org/10.1111/j.1365-2486.2010.02230.x 2020-02-16T13:52:18Z Abstract Climate change is expected to alter the magnitude and variation of flow in streams and rivers, hence providing new conditions for riverine communities. We evaluated plant ecological responses to climate change by transplanting turfs of riparian vegetation to new elevations in the riparian zone, thus simulating expected changes in water-level variation, and monitored the results over 6 years. Turfs moved to higher elevations decreased in biomass and increased in species richness, whereas turfs transplanted to lower elevations gained biomass but lost species. Transplanted plant communities were inert in their response to new hydrologic conditions. After 6 years, biomass of transplanted turfs did not differ statistically from target level controls, but species richness and species composition of transplants were intermediate between original and target levels. By using projections of future stream flow according to IPCC climate change scenarios, we predict likely changes to riparian vegetation in boreal rivers. Climate-driven hydrologic changes are predicted to result in narrower riparian zones along the studied Vindel River in northern Sweden towards the end of the 21st century. Present riparian plant communities are projected to be replaced by terrestrial communities at high elevations as a result of lower-magnitude spring floods, and by amphibious or aquatic communities at low elevations as a result of higher autumn and winter flows. Less area available to riparian plants is expected to result in fewer species, even if no species lose their hydrologic niches. Changes to riparian vegetation may be larger in other boreal climate regions: snow-melt fed spring floods are predicted to disappear in southern parts of the boreal zone, which would result in considerable loss of riparian habitat. Our study emphasizes the importance of long-term ecological field experiments given that plant communities often respond slowly and in a non-linear fashion to external pressures. lotta.strom@emg.umu.se (Strom, Lotta) roland.jansson@emg.umu.se (Jansson, Roland) christer.nilsson@emg.umu.se (Nilsson, Christer) mats.e.johansson@lansstyrelsen.se (Johansson, Mats E.) Shaojun.Xiong@btk.slu.se (Xiong, Shaojun) Ume? University, Department of Ecology and Environmental Science - Ume? - SWEDEN (Strom, Lotta) Ume? University, Department of Ecology and Environmental Science - Ume? - SWEDEN (Jansson, Roland) SWEDEN (Nilsson, Christer) Ume? University, Department of Ecology and Environmental Science - Ume? - SWEDEN (Nilsson, Christer) County Administration of Vasterbotten - Ume? - SWEDEN (Johansson, Mats E.) Swedish University of Agricultural Sciences, Unit of Biomass Technology and Chemistry - Ume? - SWEDEN (Xiong, Shaojun) SWEDEN Other/Unknown Material Northern Sweden The University of Dublin, Trinity College: TARA (Trinity's Access to Research Archive) Roland ENVELOPE(-64.050,-64.050,-65.067,-65.067) Lotta ENVELOPE(30.700,30.700,68.700,68.700) Global Change Biology 17 1 254 267
institution Open Polar
collection The University of Dublin, Trinity College: TARA (Trinity's Access to Research Archive)
op_collection_id fttrinitycoll
language English
topic Life Sciences
spellingShingle Life Sciences
Hydrologic effects on riparian vegetation in a boreal river: an experiment testing climate change predictions
topic_facet Life Sciences
description Abstract Climate change is expected to alter the magnitude and variation of flow in streams and rivers, hence providing new conditions for riverine communities. We evaluated plant ecological responses to climate change by transplanting turfs of riparian vegetation to new elevations in the riparian zone, thus simulating expected changes in water-level variation, and monitored the results over 6 years. Turfs moved to higher elevations decreased in biomass and increased in species richness, whereas turfs transplanted to lower elevations gained biomass but lost species. Transplanted plant communities were inert in their response to new hydrologic conditions. After 6 years, biomass of transplanted turfs did not differ statistically from target level controls, but species richness and species composition of transplants were intermediate between original and target levels. By using projections of future stream flow according to IPCC climate change scenarios, we predict likely changes to riparian vegetation in boreal rivers. Climate-driven hydrologic changes are predicted to result in narrower riparian zones along the studied Vindel River in northern Sweden towards the end of the 21st century. Present riparian plant communities are projected to be replaced by terrestrial communities at high elevations as a result of lower-magnitude spring floods, and by amphibious or aquatic communities at low elevations as a result of higher autumn and winter flows. Less area available to riparian plants is expected to result in fewer species, even if no species lose their hydrologic niches. Changes to riparian vegetation may be larger in other boreal climate regions: snow-melt fed spring floods are predicted to disappear in southern parts of the boreal zone, which would result in considerable loss of riparian habitat. Our study emphasizes the importance of long-term ecological field experiments given that plant communities often respond slowly and in a non-linear fashion to external pressures. lotta.strom@emg.umu.se (Strom, Lotta) roland.jansson@emg.umu.se (Jansson, Roland) christer.nilsson@emg.umu.se (Nilsson, Christer) mats.e.johansson@lansstyrelsen.se (Johansson, Mats E.) Shaojun.Xiong@btk.slu.se (Xiong, Shaojun) Ume? University, Department of Ecology and Environmental Science - Ume? - SWEDEN (Strom, Lotta) Ume? University, Department of Ecology and Environmental Science - Ume? - SWEDEN (Jansson, Roland) SWEDEN (Nilsson, Christer) Ume? University, Department of Ecology and Environmental Science - Ume? - SWEDEN (Nilsson, Christer) County Administration of Vasterbotten - Ume? - SWEDEN (Johansson, Mats E.) Swedish University of Agricultural Sciences, Unit of Biomass Technology and Chemistry - Ume? - SWEDEN (Xiong, Shaojun) SWEDEN
title Hydrologic effects on riparian vegetation in a boreal river: an experiment testing climate change predictions
title_short Hydrologic effects on riparian vegetation in a boreal river: an experiment testing climate change predictions
title_full Hydrologic effects on riparian vegetation in a boreal river: an experiment testing climate change predictions
title_fullStr Hydrologic effects on riparian vegetation in a boreal river: an experiment testing climate change predictions
title_full_unstemmed Hydrologic effects on riparian vegetation in a boreal river: an experiment testing climate change predictions
title_sort hydrologic effects on riparian vegetation in a boreal river: an experiment testing climate change predictions
publisher Wiley-Blackwell
publishDate 2011
url http://hdl.handle.net/2262/56625
https://doi.org/10.1111/j.1365-2486.2010.02230.x
long_lat ENVELOPE(-64.050,-64.050,-65.067,-65.067)
ENVELOPE(30.700,30.700,68.700,68.700)
geographic Roland
Lotta
geographic_facet Roland
Lotta
genre Northern Sweden
genre_facet Northern Sweden
op_relation 1354-1013 (pISSN)
1365-2486 (eISSN)
13541013 (ISSN)
GCB (PII)
GCB-10-0021 (manuscript)
http://hdl.handle.net/2262/56625
Global Change Biology
17
1
254
doi:10.1111/j.1365-2486.2010.02230.x
GCB (abbrev)
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container_title Global Change Biology
container_volume 17
container_issue 1
container_start_page 254
op_container_end_page 267
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