Effects of plant-plant interactions on the performance and abundance of Campanula uniflora in Dovre, Norway

Anthropogenic environmental changes cause direct and indirect negative effects on alpine ecosystems. Human activities are accelerating the greenhouse effect and fragmenting and changing habitats. Increased temperature has made it easier for species from lower elevations to increase their habitat to...

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Main Author: Ekeland, Erlend
Other Authors: Aschehoug, Erik, Klanderud, Kari, Rozite-Arina, Ieva
Format: Master Thesis
Language:English
Published: Norwegian University of Life Sciences, Ås 2021
Subjects:
Online Access:https://hdl.handle.net/11250/2789576
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spelling ftunivmob:oai:nmbu.brage.unit.no:11250/2789576 2023-05-15T15:48:46+02:00 Effects of plant-plant interactions on the performance and abundance of Campanula uniflora in Dovre, Norway Effekten av plante-plante interaksjoner på ytelsen og tallrikheten av Campanula uniflora på Dovre Ekeland, Erlend Aschehoug, Erik Klanderud, Kari Rozite-Arina, Ieva Norway, Oppland, Dovre 2021 application/pdf https://hdl.handle.net/11250/2789576 eng eng Norwegian University of Life Sciences, Ås https://hdl.handle.net/11250/2789576 Attribution-NonCommercial-NoDerivatives 4.0 Internasjonal http://creativecommons.org/licenses/by-nc-nd/4.0/deed.no CC-BY-NC-ND Campanula uniflora Master thesis 2021 ftunivmob 2021-10-20T22:37:03Z Anthropogenic environmental changes cause direct and indirect negative effects on alpine ecosystems. Human activities are accelerating the greenhouse effect and fragmenting and changing habitats. Increased temperature has made it easier for species from lower elevations to increase their habitat to higher elevations, which results in novel interactions between species. Plant-plant interactions are a key process driving plant community composition. Species in plant communities can have negative interactions with a neighbor, and positive interactions with another, affecting a third neighbor indirectly. Plants compete for light, space, water, and nutrients. However, we expect facilitation such as enhanced microclimate and improved water and nutrient availability to be more important than competition in alpine plant communities. The aim of this study is to investigate how competition and facilitation affect the performance, abundance and fine spatial-scale distribution of Campanula uniflora L. In the summer of 2020, I conducted a removal experiment where I compared the performance of individuals growing alone naturally, with individuals growing in intact vegetation, and individuals that had their surrounding vegetation removed. Performance was based on recorded growth variables of 122 individuals of C. uniflora from June to August at the mountains Steinhøi and Råtåsjøhøi in the Dovrefjell region of central Norway. The plants occurred in patches on top of wind exposed ridges in calcareous soils. To relate C. uniflora to the rest of the vegetation I did a vegetation analysis where I determined the percentage cover of all species present in C. uniflora’s habitat. In addition, during the analysis I recorded what substrate each individual of C. uniflora grew in. A generalized linear model was used to predict biomass accumulation in different treatments. C. uniflora showed no significant response to removal of neighboring vegetation. Individuals that grew alone naturally had significantly lower biomass than the control and removal group. The vegetation analysis showed that open ground with no vegetation covered 45-60%, lichens 20-40%, mixed plant community 15-25%, Silene acaulis 3.5% and C. uniflora 0.3%. The proportion of C. uniflora growing within S. acaulis was surprisingly high. Nearly 40% of all C. uniflora individuals grew within S. acaulis cushions. This finding emphasizes the importance of positive interactions in harsh environments and suggests a strong positive relationship between S. acaulis and C. uniflora. M-NF Master Thesis Campanula uniflora Dovrefjell Silene acaulis Open archive Norwegian University of Life Sciences: Brage NMBU Norway Dovrefjell ENVELOPE(13.500,13.500,79.000,79.000) Oppland ENVELOPE(12.807,12.807,65.900,65.900)
institution Open Polar
collection Open archive Norwegian University of Life Sciences: Brage NMBU
op_collection_id ftunivmob
language English
topic Campanula uniflora
spellingShingle Campanula uniflora
Ekeland, Erlend
Effects of plant-plant interactions on the performance and abundance of Campanula uniflora in Dovre, Norway
topic_facet Campanula uniflora
description Anthropogenic environmental changes cause direct and indirect negative effects on alpine ecosystems. Human activities are accelerating the greenhouse effect and fragmenting and changing habitats. Increased temperature has made it easier for species from lower elevations to increase their habitat to higher elevations, which results in novel interactions between species. Plant-plant interactions are a key process driving plant community composition. Species in plant communities can have negative interactions with a neighbor, and positive interactions with another, affecting a third neighbor indirectly. Plants compete for light, space, water, and nutrients. However, we expect facilitation such as enhanced microclimate and improved water and nutrient availability to be more important than competition in alpine plant communities. The aim of this study is to investigate how competition and facilitation affect the performance, abundance and fine spatial-scale distribution of Campanula uniflora L. In the summer of 2020, I conducted a removal experiment where I compared the performance of individuals growing alone naturally, with individuals growing in intact vegetation, and individuals that had their surrounding vegetation removed. Performance was based on recorded growth variables of 122 individuals of C. uniflora from June to August at the mountains Steinhøi and Råtåsjøhøi in the Dovrefjell region of central Norway. The plants occurred in patches on top of wind exposed ridges in calcareous soils. To relate C. uniflora to the rest of the vegetation I did a vegetation analysis where I determined the percentage cover of all species present in C. uniflora’s habitat. In addition, during the analysis I recorded what substrate each individual of C. uniflora grew in. A generalized linear model was used to predict biomass accumulation in different treatments. C. uniflora showed no significant response to removal of neighboring vegetation. Individuals that grew alone naturally had significantly lower biomass than the control and removal group. The vegetation analysis showed that open ground with no vegetation covered 45-60%, lichens 20-40%, mixed plant community 15-25%, Silene acaulis 3.5% and C. uniflora 0.3%. The proportion of C. uniflora growing within S. acaulis was surprisingly high. Nearly 40% of all C. uniflora individuals grew within S. acaulis cushions. This finding emphasizes the importance of positive interactions in harsh environments and suggests a strong positive relationship between S. acaulis and C. uniflora. M-NF
author2 Aschehoug, Erik
Klanderud, Kari
Rozite-Arina, Ieva
format Master Thesis
author Ekeland, Erlend
author_facet Ekeland, Erlend
author_sort Ekeland, Erlend
title Effects of plant-plant interactions on the performance and abundance of Campanula uniflora in Dovre, Norway
title_short Effects of plant-plant interactions on the performance and abundance of Campanula uniflora in Dovre, Norway
title_full Effects of plant-plant interactions on the performance and abundance of Campanula uniflora in Dovre, Norway
title_fullStr Effects of plant-plant interactions on the performance and abundance of Campanula uniflora in Dovre, Norway
title_full_unstemmed Effects of plant-plant interactions on the performance and abundance of Campanula uniflora in Dovre, Norway
title_sort effects of plant-plant interactions on the performance and abundance of campanula uniflora in dovre, norway
publisher Norwegian University of Life Sciences, Ås
publishDate 2021
url https://hdl.handle.net/11250/2789576
op_coverage Norway, Oppland, Dovre
long_lat ENVELOPE(13.500,13.500,79.000,79.000)
ENVELOPE(12.807,12.807,65.900,65.900)
geographic Norway
Dovrefjell
Oppland
geographic_facet Norway
Dovrefjell
Oppland
genre Campanula uniflora
Dovrefjell
Silene acaulis
genre_facet Campanula uniflora
Dovrefjell
Silene acaulis
op_relation https://hdl.handle.net/11250/2789576
op_rights Attribution-NonCommercial-NoDerivatives 4.0 Internasjonal
http://creativecommons.org/licenses/by-nc-nd/4.0/deed.no
op_rightsnorm CC-BY-NC-ND
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