Traditional plant functional groups explain variation in economic but not size-related traits across the tundra biome
Aim: Plant functional groups are widely used in community ecology and earth system modelling to describe trait variation within and across plant communities. However, this approach rests on the assumption that functional groups explain a large proportion of trait variation among species. We test whe...
Published in: | Global Ecology and Biogeography |
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Main Authors: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
Format: | Article in Journal/Newspaper |
Language: | English |
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Wiley-Blackwell
2019
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Subjects: | |
Online Access: | https://lup.lub.lu.se/record/886996d2-c1b5-45f4-af78-841b0472ecf6 https://doi.org/10.1111/geb.12783 |
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Open Polar |
collection |
Lund University Publications (LUP) |
op_collection_id |
ftulundlup |
language |
English |
topic |
Ecology Physical Geography cluster analysis community composition ecosystem function plant functional groups plant functional types plant traits tundra biome vegetation change |
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Ecology Physical Geography cluster analysis community composition ecosystem function plant functional groups plant functional types plant traits tundra biome vegetation change Thomas, H. J.D. Myers-Smith, I. H. Bjorkman, A. D. Elmendorf, S. C. Blok, D. Cornelissen, J. H.C. Forbes, B. C. Hollister, R. D. Normand, S. Prevéy, J. S. Rixen, C. Schaepman-Strub, G. Wilmking, M. Wipf, S. Cornwell, W. Kattge, J. Goetz, S. J. Guay, K. C. Alatalo, J. M. Anadon-Rosell, A. Angers-Blondin, S. Berner, L. T. Björk, R. G. Buchwal, A. Buras, A. Carbognani, M. Christie, K. Siegwart Collier, L. Cooper, E. J. Eskelinen, A. Frei, E. R. Grau, O. Grogan, P. Hallinger, M. Heijman, M. M.P.D. Hermanutz, L. Hudson, J. M.G. Hülber, K. Iturrate-Garcia, M. Iversen, C. M. Jaroszynska, F. Johnstone, J. F. Kaarlejärvi, E. Kulonen, A. Lamarque, L. J. Lévesque, E. Little, C. J. Michelsen, A. Milbau, A. Nabe-Nielsen, J. Nielsen, S. S. Ninot, J. M. Oberbauer, S. F. Olofsson, J. Onipchenko, V. G. Petraglia, A. Rumpf, S. B. Semenchuk, P. R. Soudzilovskaia, N. A. Spasojevic, M. J. Speed, J. D.M. Tape, K. D. Te Beest, M. Tomaselli, M. Trant, A. Treier, U. A. Venn, S. Vowles, T. Weijers, S. Zamin, T. Atkin, O. K. Bahn, M. Blonder, B. Campetella, G. Cerabolini, B. E.L. Chapin, F. S. Dainese, M. de Vries, F. T. Díaz, S. Green, W. Jackson, R. Manning, P. Niinemets Ozinga, W. A. Peñuelas, J. Reich, P. B. Schamp, B. Sheremetev, S. van Bodegom, P. M. Traditional plant functional groups explain variation in economic but not size-related traits across the tundra biome |
topic_facet |
Ecology Physical Geography cluster analysis community composition ecosystem function plant functional groups plant functional types plant traits tundra biome vegetation change |
description |
Aim: Plant functional groups are widely used in community ecology and earth system modelling to describe trait variation within and across plant communities. However, this approach rests on the assumption that functional groups explain a large proportion of trait variation among species. We test whether four commonly used plant functional groups represent variation in six ecologically important plant traits. Location: Tundra biome. Time period: Data collected between 1964 and 2016. Major taxa studied: 295 tundra vascular plant species. Methods: We compiled a database of six plant traits (plant height, leaf area, specific leaf area, leaf dry matter content, leaf nitrogen, seed mass) for tundra species. We examined the variation in species-level trait expression explained by four traditional functional groups (evergreen shrubs, deciduous shrubs, graminoids, forbs), and whether variation explained was dependent upon the traits included in analysis. We further compared the explanatory power and species composition of functional groups to alternative classifications generated using post hoc clustering of species-level traits. Results: Traditional functional groups explained significant differences in trait expression, particularly amongst traits associated with resource economics, which were consistent across sites and at the biome scale. However, functional groups explained 19% of overall trait variation and poorly represented differences in traits associated with plant size. Post hoc classification of species did not correspond well with traditional functional groups, and explained twice as much variation in species-level trait expression. Main conclusions: Traditional functional groups only coarsely represent variation in well-measured traits within tundra plant communities, and better explain resource economic traits than size-related traits. We recommend caution when using functional group approaches to predict tundra ecosystem change, or ecosystem functions relating to plant size, such as albedo or carbon ... |
format |
Article in Journal/Newspaper |
author |
Thomas, H. J.D. Myers-Smith, I. H. Bjorkman, A. D. Elmendorf, S. C. Blok, D. Cornelissen, J. H.C. Forbes, B. C. Hollister, R. D. Normand, S. Prevéy, J. S. Rixen, C. Schaepman-Strub, G. Wilmking, M. Wipf, S. Cornwell, W. Kattge, J. Goetz, S. J. Guay, K. C. Alatalo, J. M. Anadon-Rosell, A. Angers-Blondin, S. Berner, L. T. Björk, R. G. Buchwal, A. Buras, A. Carbognani, M. Christie, K. Siegwart Collier, L. Cooper, E. J. Eskelinen, A. Frei, E. R. Grau, O. Grogan, P. Hallinger, M. Heijman, M. M.P.D. Hermanutz, L. Hudson, J. M.G. Hülber, K. Iturrate-Garcia, M. Iversen, C. M. Jaroszynska, F. Johnstone, J. F. Kaarlejärvi, E. Kulonen, A. Lamarque, L. J. Lévesque, E. Little, C. J. Michelsen, A. Milbau, A. Nabe-Nielsen, J. Nielsen, S. S. Ninot, J. M. Oberbauer, S. F. Olofsson, J. Onipchenko, V. G. Petraglia, A. Rumpf, S. B. Semenchuk, P. R. Soudzilovskaia, N. A. Spasojevic, M. J. Speed, J. D.M. Tape, K. D. Te Beest, M. Tomaselli, M. Trant, A. Treier, U. A. Venn, S. Vowles, T. Weijers, S. Zamin, T. Atkin, O. K. Bahn, M. Blonder, B. Campetella, G. Cerabolini, B. E.L. Chapin, F. S. Dainese, M. de Vries, F. T. Díaz, S. Green, W. Jackson, R. Manning, P. Niinemets Ozinga, W. A. Peñuelas, J. Reich, P. B. Schamp, B. Sheremetev, S. van Bodegom, P. M. |
author_facet |
Thomas, H. J.D. Myers-Smith, I. H. Bjorkman, A. D. Elmendorf, S. C. Blok, D. Cornelissen, J. H.C. Forbes, B. C. Hollister, R. D. Normand, S. Prevéy, J. S. Rixen, C. Schaepman-Strub, G. Wilmking, M. Wipf, S. Cornwell, W. Kattge, J. Goetz, S. J. Guay, K. C. Alatalo, J. M. Anadon-Rosell, A. Angers-Blondin, S. Berner, L. T. Björk, R. G. Buchwal, A. Buras, A. Carbognani, M. Christie, K. Siegwart Collier, L. Cooper, E. J. Eskelinen, A. Frei, E. R. Grau, O. Grogan, P. Hallinger, M. Heijman, M. M.P.D. Hermanutz, L. Hudson, J. M.G. Hülber, K. Iturrate-Garcia, M. Iversen, C. M. Jaroszynska, F. Johnstone, J. F. Kaarlejärvi, E. Kulonen, A. Lamarque, L. J. Lévesque, E. Little, C. J. Michelsen, A. Milbau, A. Nabe-Nielsen, J. Nielsen, S. S. Ninot, J. M. Oberbauer, S. F. Olofsson, J. Onipchenko, V. G. Petraglia, A. Rumpf, S. B. Semenchuk, P. R. Soudzilovskaia, N. A. Spasojevic, M. J. Speed, J. D.M. Tape, K. D. Te Beest, M. Tomaselli, M. Trant, A. Treier, U. A. Venn, S. Vowles, T. Weijers, S. Zamin, T. Atkin, O. K. Bahn, M. Blonder, B. Campetella, G. Cerabolini, B. E.L. Chapin, F. S. Dainese, M. de Vries, F. T. Díaz, S. Green, W. Jackson, R. Manning, P. Niinemets Ozinga, W. A. Peñuelas, J. Reich, P. B. Schamp, B. Sheremetev, S. van Bodegom, P. M. |
author_sort |
Thomas, H. J.D. |
title |
Traditional plant functional groups explain variation in economic but not size-related traits across the tundra biome |
title_short |
Traditional plant functional groups explain variation in economic but not size-related traits across the tundra biome |
title_full |
Traditional plant functional groups explain variation in economic but not size-related traits across the tundra biome |
title_fullStr |
Traditional plant functional groups explain variation in economic but not size-related traits across the tundra biome |
title_full_unstemmed |
Traditional plant functional groups explain variation in economic but not size-related traits across the tundra biome |
title_sort |
traditional plant functional groups explain variation in economic but not size-related traits across the tundra biome |
publisher |
Wiley-Blackwell |
publishDate |
2019 |
url |
https://lup.lub.lu.se/record/886996d2-c1b5-45f4-af78-841b0472ecf6 https://doi.org/10.1111/geb.12783 |
genre |
Tundra |
genre_facet |
Tundra |
op_source |
Global Ecology and Biogeography; 28(2), pp 78-95 (2019) ISSN: 1466-822X |
op_relation |
https://lup.lub.lu.se/record/886996d2-c1b5-45f4-af78-841b0472ecf6 http://dx.doi.org/10.1111/geb.12783 scopus:85056643627 pmid:31007605 |
op_doi |
https://doi.org/10.1111/geb.12783 |
container_title |
Global Ecology and Biogeography |
container_volume |
28 |
container_issue |
2 |
container_start_page |
78 |
op_container_end_page |
95 |
_version_ |
1799468100087709696 |
spelling |
ftulundlup:oai:lup.lub.lu.se:886996d2-c1b5-45f4-af78-841b0472ecf6 2024-05-19T07:49:35+00:00 Traditional plant functional groups explain variation in economic but not size-related traits across the tundra biome Thomas, H. J.D. Myers-Smith, I. H. Bjorkman, A. D. Elmendorf, S. C. Blok, D. Cornelissen, J. H.C. Forbes, B. C. Hollister, R. D. Normand, S. Prevéy, J. S. Rixen, C. Schaepman-Strub, G. Wilmking, M. Wipf, S. Cornwell, W. Kattge, J. Goetz, S. J. Guay, K. C. Alatalo, J. M. Anadon-Rosell, A. Angers-Blondin, S. Berner, L. T. Björk, R. G. Buchwal, A. Buras, A. Carbognani, M. Christie, K. Siegwart Collier, L. Cooper, E. J. Eskelinen, A. Frei, E. R. Grau, O. Grogan, P. Hallinger, M. Heijman, M. M.P.D. Hermanutz, L. Hudson, J. M.G. Hülber, K. Iturrate-Garcia, M. Iversen, C. M. Jaroszynska, F. Johnstone, J. F. Kaarlejärvi, E. Kulonen, A. Lamarque, L. J. Lévesque, E. Little, C. J. Michelsen, A. Milbau, A. Nabe-Nielsen, J. Nielsen, S. S. Ninot, J. M. Oberbauer, S. F. Olofsson, J. Onipchenko, V. G. Petraglia, A. Rumpf, S. B. Semenchuk, P. R. Soudzilovskaia, N. A. Spasojevic, M. J. Speed, J. D.M. Tape, K. D. Te Beest, M. Tomaselli, M. Trant, A. Treier, U. A. Venn, S. Vowles, T. Weijers, S. Zamin, T. Atkin, O. K. Bahn, M. Blonder, B. Campetella, G. Cerabolini, B. E.L. Chapin, F. S. Dainese, M. de Vries, F. T. Díaz, S. Green, W. Jackson, R. Manning, P. Niinemets Ozinga, W. A. Peñuelas, J. Reich, P. B. Schamp, B. Sheremetev, S. van Bodegom, P. M. 2019 https://lup.lub.lu.se/record/886996d2-c1b5-45f4-af78-841b0472ecf6 https://doi.org/10.1111/geb.12783 eng eng Wiley-Blackwell https://lup.lub.lu.se/record/886996d2-c1b5-45f4-af78-841b0472ecf6 http://dx.doi.org/10.1111/geb.12783 scopus:85056643627 pmid:31007605 Global Ecology and Biogeography; 28(2), pp 78-95 (2019) ISSN: 1466-822X Ecology Physical Geography cluster analysis community composition ecosystem function plant functional groups plant functional types plant traits tundra biome vegetation change contributiontojournal/article info:eu-repo/semantics/article text 2019 ftulundlup https://doi.org/10.1111/geb.12783 2024-04-30T23:40:47Z Aim: Plant functional groups are widely used in community ecology and earth system modelling to describe trait variation within and across plant communities. However, this approach rests on the assumption that functional groups explain a large proportion of trait variation among species. We test whether four commonly used plant functional groups represent variation in six ecologically important plant traits. Location: Tundra biome. Time period: Data collected between 1964 and 2016. Major taxa studied: 295 tundra vascular plant species. Methods: We compiled a database of six plant traits (plant height, leaf area, specific leaf area, leaf dry matter content, leaf nitrogen, seed mass) for tundra species. We examined the variation in species-level trait expression explained by four traditional functional groups (evergreen shrubs, deciduous shrubs, graminoids, forbs), and whether variation explained was dependent upon the traits included in analysis. We further compared the explanatory power and species composition of functional groups to alternative classifications generated using post hoc clustering of species-level traits. Results: Traditional functional groups explained significant differences in trait expression, particularly amongst traits associated with resource economics, which were consistent across sites and at the biome scale. However, functional groups explained 19% of overall trait variation and poorly represented differences in traits associated with plant size. Post hoc classification of species did not correspond well with traditional functional groups, and explained twice as much variation in species-level trait expression. Main conclusions: Traditional functional groups only coarsely represent variation in well-measured traits within tundra plant communities, and better explain resource economic traits than size-related traits. We recommend caution when using functional group approaches to predict tundra ecosystem change, or ecosystem functions relating to plant size, such as albedo or carbon ... Article in Journal/Newspaper Tundra Lund University Publications (LUP) Global Ecology and Biogeography 28 2 78 95 |