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TRY – a global database of plant traits

  • J. Kattge
  • , S. Diaz
  • , S. Lavorel
  • , I. C. Prentice
  • , P. Leadley
  • , G. Bönisch
  • , E. Garnier
  • , M. Westoby
  • , P. B. Reich
  • , I. J. Wright
  • , J. H. C. Cornelissen
  • , C. Violle
  • , S. P. Harrison
  • , P. M. Van Bodegom
  • , M. Reichstein
  • , B. J. Enquist
  • , N. A. Soudzilovskaia
  • , D. D. Ackerly
  • , M. Anand
  • , O. Atkin
  • M. Bahn, T. R. Baker, D. Baldocchi, R. Bekker, C. C. Blanco, B. Blonder, W. J. Bond, R. Bradstock, D. E. Bunker, F. Casanoves, J. Cavender-Bares, J. Q. Chambers, F. S. Chapin III, J. Chave, D. Coomes, W. K. Cornwell, J. M. Craine, B. H. Dobrin, L. Duarte, W. Durka, J. Elser, G. Esser, M. Estiarte, W. F. Fagan, J. Fang, F. Fernández-Méndez, A. Fidelis, B. Finegan, O. Flores, H. Ford, D. Frank, G. T. Freschet, N. M. Fyllas, R. V. Gallagher, W. A. Green, A. G. Gutierrez, T. Hickler, S. I. Higgins, J. G. Hodgson, A. Jalili, S. Jansen, C. A. Joly, A. J. Kerkhoff, D. Kirkup, K. Kitajima, M. Kleyer, S. Klotz, J. M. H. Knops, K. Kramer, I. Kühn, H. Kurokawa, D. Laughlin, T. D. Lee, M. Leishman, F. Lens, T. Lenz, S. L. Lewis, J. Lloyd, J. Llusia, F. Louault, S. Ma, M. D. Mahecha, P. Manning, T. Massad, B. E. Medlyn, J. Messier, A. T. Moles, S. C. Müller, K. Nadrowski, S. Naeem, Ü. Niinemets, S. Nöllert, A. Nüske, R. Ogaya, J. Oleksyn, V. G. Onipchenko, Y. Onoda, J. Ordonez, G. Overbeck, W. A. Ozinga, S. Patino, S. Paula, J. G. Pausas, J. Penuelas, O. L. Phillips, V. Pillar, H. Poorter, L. Poorter, P. Poschlod, A. Prinzing, R. Proulx, A. Rammig, Sabine Reinsch, B. Reu, L. Sack, B. Salgado-Negret, J. Sardans, S. Shiodera, B. Shipley, A. Siefert, E. Sosinski, J.‐F. Soussana, E. Swaine, N. Swenson, K. Thompson, P. Thornton, M. Waldram, E. Weiher, M. White, S. White, S. J. Wright, B. Yguel, S. Zaehle, A. E. Zanne, C. Wirth
    • Max Planck Institute for Biogeochemistry
    • Universidad Nacional de Córdoba
    • CNRS
    • Macquarie University
    • Université Paris-Sud
    • University of Minnesota Twin Cities
    • Vrije Universiteit Amsterdam
    • University of Arizona
    • University of California at Berkeley
    • University of Guelph
    • Australian National University
    • University of Innsbruck
    • University of California at San Diego
    • Universidade Federal do Rio Grande do Sul
    • University of Wollongong
    • New Jersey Institute of Technology
    • Tropical Agricultural Centre for Research and Higher Education
    • Lawrence Berkeley National Laboratory
    • University of Alaska Fairbanks
    • University of Cambridge
    • University of Kansas
    • Federal University of Rio Grande do Sul
    • Helmholtz Centre for Environmental Research
    • Arizona State University
    • Justus Liebig University Giessen
    • Autonomous University of Barcelona
    • University of Maryland, College Park
    • Universidad del Tolima
    • Université de La Réunion
    • University of York
    • Western Sydney University
    • Harvard University
    • LOEWE Biodiversity and Climate Research Centre
    • Goethe University Frankfurt
    • Research Institute of Forests and Rangelands
    • Ulm University
    • University of Campinas
    • Kenyon College
    • Royal Botanic Gardens, Kew
    • University of Florida
    • University of Oldenburg
    • University of Nebraska
    • Wageningen University & Research
    • Tohoku University
    • University of Wisconsin-Madison
    • Naturalis Biodiversity Center
    • National Institute for Agronomic Research
    • Newcastle University
    • University of New South Wales
    • Leipzig University
    • Columbia University
    • Estonian University of Life Sciences
    • Polish Academy of Sciences
    • Lomonosov Moscow State University
    • Alterra
    • CSIC
    • University of Regensburg
    • Université de Rennes
    • Université du Quebec
    • Potsdam Institute for Climate Impact Research
    • Hokkaido University
    • Université de Sherbrooke
    • Syracuse University
    • Embrapa Agroindústria Tropical
    • University of Aberdeen
    • Michigan State University
    • Oak Ridge National Laboratory
    • University of Leicester
    • Utah State University
    • Smithsonian Tropical Research Institute
    • University of Missouri
    • Kyushu University
    • Jülich Research Centre
    • University of Groningen
    • University of Cape Town
    • University of Leeds
    • Universidade de São Paulo
    • University of Sheffield
    • Northern Arizona University

    Research output: Contribution to journalJournal articleResearchpeer-review

    Abstract

    Plant traits – the morphological, anatomical, physiological, biochemical and phenological characteristics of plants and their organs – determine how primary producers respond to environmental factors, affect other trophic levels, influence ecosystem processes and services and provide a link from species richness to ecosystem functional diversity. Trait data thus represent the raw material for a wide range of research from evolutionary biology, community and functional ecology to biogeography. Here we present the global database initiative named TRY, which has united a wide range of the plant trait research community worldwide and gained an unprecedented buy‐in of trait data: so far 93 trait databases have been contributed. The data repository currently contains almost three million trait entries for 69 000 out of the world's 300 000 plant species, with a focus on 52 groups of traits characterizing the vegetative and regeneration stages of the plant life cycle, including growth, dispersal, establishment and persistence. A first data analysis shows that most plant traits are approximately log‐normally distributed, with widely differing ranges of variation across traits. Most trait variation is between species (interspecific), but significant intraspecific variation is also documented, up to 40% of the overall variation. Plant functional types (PFTs), as commonly used in vegetation models, capture a substantial fraction of the observed variation – but for several traits most variation occurs within PFTs, up to 75% of the overall variation. In the context of vegetation models these traits would better be represented by state variables rather than fixed parameter values. The improved availability of plant trait data in the unified global database is expected to support a paradigm shift from species to trait‐based ecology, offer new opportunities for synthetic plant trait research and enable a more realistic and empirically grounded representation of terrestrial vegetation in Earth system models.
    Original languageEnglish
    JournalGlobal Change Biology
    Volume17
    Issue number9
    Pages (from-to)2905-2935
    ISSN1354-1013
    DOIs
    Publication statusPublished - 2011

    UN SDGs

    This output contributes to the following UN Sustainable Development Goals (SDGs)

    1. SDG 15 - Life on Land
      SDG 15 Life on Land

    Keywords

    • Environment and climate

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