Variation in Tundra Plant Traits Across a Latitudinal Gradient

High latitude regions are warming faster than most regions. Studies documenting change in plant cover due to warming have reported that graminoids, deciduous shrubs, and evergreen shrubs are increasing in some regions of the Arctic, but not at others. Mixed responses to warming have caused researche...

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Main Author: Betway, Katlyn Rose
Format: Text
Language:unknown
Published: ScholarWorks@GVSU 2020
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Online Access:https://scholarworks.gvsu.edu/theses/990
https://scholarworks.gvsu.edu/cgi/viewcontent.cgi?article=1984&context=theses
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spelling ftgvstateuniv:oai:scholarworks.gvsu.edu:theses-1984 2023-05-15T14:56:38+02:00 Variation in Tundra Plant Traits Across a Latitudinal Gradient Betway, Katlyn Rose 2020-08-01T07:00:00Z application/pdf https://scholarworks.gvsu.edu/theses/990 https://scholarworks.gvsu.edu/cgi/viewcontent.cgi?article=1984&context=theses unknown ScholarWorks@GVSU https://scholarworks.gvsu.edu/theses/990 https://scholarworks.gvsu.edu/cgi/viewcontent.cgi?article=1984&context=theses Masters Theses Arctic plant functional traits intraspecific variation (ITV) community change specific leaf area (SLA) leaf dry matter Biology Life Sciences text 2020 ftgvstateuniv 2022-12-09T08:16:17Z High latitude regions are warming faster than most regions. Studies documenting change in plant cover due to warming have reported that graminoids, deciduous shrubs, and evergreen shrubs are increasing in some regions of the Arctic, but not at others. Mixed responses to warming have caused researchers to shift towards an emphasis on functional traits of individual species rather than their growth forms. This thesis focuses on ten measured plant functional traits for twelve arctic species at three regions spanning a latitudinal gradient in northern Alaska (Utqiaġvik, Atqasuk, and Toolik Lake). We compare mean trait values across the three regions for each species and find considerable variability within a growth form. Quantification of intraspecific variation (ITV) in the three populations showed high amounts of variation for some traits (>50% for normalized difference vegetation index (NDVI) and photosynthetic capacity (Amax)) but not for other traits (<15% for plant height, leaf area, specific leaf area (SLA), leaf thickness, and leaf dry matter content (LDMC)). Amount of ITV also varied across regions. To better understand why trends in plant cover and functional traits vary across regions, change in cover (measured three times from 2008 to 2018) was also compared with observed trait values (measured in 2018) for twelve dominant species. Canonical correspondence analysis (CCA) suggested a relationship between change in species cover and functional traits. Species increasing in cover were associated with photosynthetic capacity (Amax) and species decreasing in cover were associated with LDMC. Investigation of community-weighted trait means (CWM) showed that whole community rather than species-specific trait values may be more indicative of future change. CWM changed significantly over time for all traits at Utqiaġvik and Atqasuk, but not Toolik Lake. Non-significant results in direct cover-trait relationships also suggest that multiple traits rather than a single trait may be responsible for shifts in ... Text Arctic Tundra Alaska Grand Valley State University: Scholar Works @ GVSU Arctic
institution Open Polar
collection Grand Valley State University: Scholar Works @ GVSU
op_collection_id ftgvstateuniv
language unknown
topic Arctic
plant functional traits
intraspecific variation (ITV)
community change
specific leaf area (SLA)
leaf dry matter
Biology
Life Sciences
spellingShingle Arctic
plant functional traits
intraspecific variation (ITV)
community change
specific leaf area (SLA)
leaf dry matter
Biology
Life Sciences
Betway, Katlyn Rose
Variation in Tundra Plant Traits Across a Latitudinal Gradient
topic_facet Arctic
plant functional traits
intraspecific variation (ITV)
community change
specific leaf area (SLA)
leaf dry matter
Biology
Life Sciences
description High latitude regions are warming faster than most regions. Studies documenting change in plant cover due to warming have reported that graminoids, deciduous shrubs, and evergreen shrubs are increasing in some regions of the Arctic, but not at others. Mixed responses to warming have caused researchers to shift towards an emphasis on functional traits of individual species rather than their growth forms. This thesis focuses on ten measured plant functional traits for twelve arctic species at three regions spanning a latitudinal gradient in northern Alaska (Utqiaġvik, Atqasuk, and Toolik Lake). We compare mean trait values across the three regions for each species and find considerable variability within a growth form. Quantification of intraspecific variation (ITV) in the three populations showed high amounts of variation for some traits (>50% for normalized difference vegetation index (NDVI) and photosynthetic capacity (Amax)) but not for other traits (<15% for plant height, leaf area, specific leaf area (SLA), leaf thickness, and leaf dry matter content (LDMC)). Amount of ITV also varied across regions. To better understand why trends in plant cover and functional traits vary across regions, change in cover (measured three times from 2008 to 2018) was also compared with observed trait values (measured in 2018) for twelve dominant species. Canonical correspondence analysis (CCA) suggested a relationship between change in species cover and functional traits. Species increasing in cover were associated with photosynthetic capacity (Amax) and species decreasing in cover were associated with LDMC. Investigation of community-weighted trait means (CWM) showed that whole community rather than species-specific trait values may be more indicative of future change. CWM changed significantly over time for all traits at Utqiaġvik and Atqasuk, but not Toolik Lake. Non-significant results in direct cover-trait relationships also suggest that multiple traits rather than a single trait may be responsible for shifts in ...
format Text
author Betway, Katlyn Rose
author_facet Betway, Katlyn Rose
author_sort Betway, Katlyn Rose
title Variation in Tundra Plant Traits Across a Latitudinal Gradient
title_short Variation in Tundra Plant Traits Across a Latitudinal Gradient
title_full Variation in Tundra Plant Traits Across a Latitudinal Gradient
title_fullStr Variation in Tundra Plant Traits Across a Latitudinal Gradient
title_full_unstemmed Variation in Tundra Plant Traits Across a Latitudinal Gradient
title_sort variation in tundra plant traits across a latitudinal gradient
publisher ScholarWorks@GVSU
publishDate 2020
url https://scholarworks.gvsu.edu/theses/990
https://scholarworks.gvsu.edu/cgi/viewcontent.cgi?article=1984&context=theses
geographic Arctic
geographic_facet Arctic
genre Arctic
Tundra
Alaska
genre_facet Arctic
Tundra
Alaska
op_source Masters Theses
op_relation https://scholarworks.gvsu.edu/theses/990
https://scholarworks.gvsu.edu/cgi/viewcontent.cgi?article=1984&context=theses
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