Shrub-tree interactions and environmental changes drive treeline dynamics in the Subarctic.

Treelines have drawn persistent research interest as they can respond markedly to climate. However, the mechanisms that determine tree seedling recruitment and the response of the forest-tundra ecotone to environmental changes remain poorly understood. We hypothesise that treeline tree seedling perf...

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Published in:Oikos
Main Authors: Grau, O., Ninot, J.M., Blanco-Moreno, J.M., van Logtestijn, R.S.P, Cornelissen, J.H.C., Callaghan, T.V.
Format: Article in Journal/Newspaper
Language:English
Published: 2012
Subjects:
Online Access:https://research.vu.nl/en/publications/0108024f-f02d-4491-9e13-ceb042c4f16a
https://doi.org/10.1111/j.1600-0706.2011.20032.x
https://hdl.handle.net/1871.1/0108024f-f02d-4491-9e13-ceb042c4f16a
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spelling ftvuamstcris:oai:research.vu.nl:publications/0108024f-f02d-4491-9e13-ceb042c4f16a 2024-10-29T17:46:28+00:00 Shrub-tree interactions and environmental changes drive treeline dynamics in the Subarctic. Grau, O. Ninot, J.M. Blanco-Moreno, J.M. van Logtestijn, R.S.P Cornelissen, J.H.C. Callaghan, T.V. 2012 https://research.vu.nl/en/publications/0108024f-f02d-4491-9e13-ceb042c4f16a https://doi.org/10.1111/j.1600-0706.2011.20032.x https://hdl.handle.net/1871.1/0108024f-f02d-4491-9e13-ceb042c4f16a eng eng info:eu-repo/semantics/restrictedAccess Grau , O , Ninot , J M , Blanco-Moreno , J M , van Logtestijn , R S P , Cornelissen , J H C & Callaghan , T V 2012 , ' Shrub-tree interactions and environmental changes drive treeline dynamics in the Subarctic. ' , Oikos , vol. 121 , no. 10 , pp. 1680-1690 . https://doi.org/10.1111/j.1600-0706.2011.20032.x article 2012 ftvuamstcris https://doi.org/10.1111/j.1600-0706.2011.20032.x 2024-10-03T00:23:17Z Treelines have drawn persistent research interest as they can respond markedly to climate. However, the mechanisms that determine tree seedling recruitment and the response of the forest-tundra ecotone to environmental changes remain poorly understood. We hypothesise that treeline tree seedling performance depends on the interplay between climatic and soil nutritional changes and facilitative and competitive interactions between trees and shrubs. We conducted a seedling transplantation experiment with Betula pubescens at a subarctic treeline, in northern Sweden, which followed a full factorial design with four treatment factors relating to environmental regimes of stress and resource availability: site (forest vs treeline); temperature (+/- passive warming); shrub presence (+/-Vaccinium myrtillus removal); and nutrient availability (+/- NPK addition). During three growing seasons we assessed the establishment and performance of Betula. The experimental manipulations caused highly significant effects on seedling performance. Although Vaccinium enhanced seedling survival and reduced the effects of excessive solar radiation and insect herbivory, the seedlings growing with the shrub had a poorer performance by the end of the experimental period. Also, seedlings in the forest had a poorer performance than those at the treeline. Betula seedlings showed a very pronounced and positive response to passive warming and to nutrient addition, but such effects were more evident at the treeline site and often interacted with the presence of Vaccinium. This experiment shows that shrub-tree interactions are important drivers of subarctic treeline dynamics and that they vary with time and space. Facilitation, competition, herbivory and environmental changes at the tree seedling stage act as important filters in structuring the forest-tundra ecotone. We demonstrate that changes in this ecotone cannot be simply predicted from changing temperature patterns alone, and that complex interactions need to be considered, not only between ... Article in Journal/Newspaper Northern Sweden Subarctic Tundra Vrije Universiteit Amsterdam (VU): Research Portal Oikos 121 10 1680 1690
institution Open Polar
collection Vrije Universiteit Amsterdam (VU): Research Portal
op_collection_id ftvuamstcris
language English
description Treelines have drawn persistent research interest as they can respond markedly to climate. However, the mechanisms that determine tree seedling recruitment and the response of the forest-tundra ecotone to environmental changes remain poorly understood. We hypothesise that treeline tree seedling performance depends on the interplay between climatic and soil nutritional changes and facilitative and competitive interactions between trees and shrubs. We conducted a seedling transplantation experiment with Betula pubescens at a subarctic treeline, in northern Sweden, which followed a full factorial design with four treatment factors relating to environmental regimes of stress and resource availability: site (forest vs treeline); temperature (+/- passive warming); shrub presence (+/-Vaccinium myrtillus removal); and nutrient availability (+/- NPK addition). During three growing seasons we assessed the establishment and performance of Betula. The experimental manipulations caused highly significant effects on seedling performance. Although Vaccinium enhanced seedling survival and reduced the effects of excessive solar radiation and insect herbivory, the seedlings growing with the shrub had a poorer performance by the end of the experimental period. Also, seedlings in the forest had a poorer performance than those at the treeline. Betula seedlings showed a very pronounced and positive response to passive warming and to nutrient addition, but such effects were more evident at the treeline site and often interacted with the presence of Vaccinium. This experiment shows that shrub-tree interactions are important drivers of subarctic treeline dynamics and that they vary with time and space. Facilitation, competition, herbivory and environmental changes at the tree seedling stage act as important filters in structuring the forest-tundra ecotone. We demonstrate that changes in this ecotone cannot be simply predicted from changing temperature patterns alone, and that complex interactions need to be considered, not only between ...
format Article in Journal/Newspaper
author Grau, O.
Ninot, J.M.
Blanco-Moreno, J.M.
van Logtestijn, R.S.P
Cornelissen, J.H.C.
Callaghan, T.V.
spellingShingle Grau, O.
Ninot, J.M.
Blanco-Moreno, J.M.
van Logtestijn, R.S.P
Cornelissen, J.H.C.
Callaghan, T.V.
Shrub-tree interactions and environmental changes drive treeline dynamics in the Subarctic.
author_facet Grau, O.
Ninot, J.M.
Blanco-Moreno, J.M.
van Logtestijn, R.S.P
Cornelissen, J.H.C.
Callaghan, T.V.
author_sort Grau, O.
title Shrub-tree interactions and environmental changes drive treeline dynamics in the Subarctic.
title_short Shrub-tree interactions and environmental changes drive treeline dynamics in the Subarctic.
title_full Shrub-tree interactions and environmental changes drive treeline dynamics in the Subarctic.
title_fullStr Shrub-tree interactions and environmental changes drive treeline dynamics in the Subarctic.
title_full_unstemmed Shrub-tree interactions and environmental changes drive treeline dynamics in the Subarctic.
title_sort shrub-tree interactions and environmental changes drive treeline dynamics in the subarctic.
publishDate 2012
url https://research.vu.nl/en/publications/0108024f-f02d-4491-9e13-ceb042c4f16a
https://doi.org/10.1111/j.1600-0706.2011.20032.x
https://hdl.handle.net/1871.1/0108024f-f02d-4491-9e13-ceb042c4f16a
genre Northern Sweden
Subarctic
Tundra
genre_facet Northern Sweden
Subarctic
Tundra
op_source Grau , O , Ninot , J M , Blanco-Moreno , J M , van Logtestijn , R S P , Cornelissen , J H C & Callaghan , T V 2012 , ' Shrub-tree interactions and environmental changes drive treeline dynamics in the Subarctic. ' , Oikos , vol. 121 , no. 10 , pp. 1680-1690 . https://doi.org/10.1111/j.1600-0706.2011.20032.x
op_rights info:eu-repo/semantics/restrictedAccess
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container_title Oikos
container_volume 121
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