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Ellenberg-type indicator values for European vascular plant species

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  • Lubomír Tichý, Masaryk University
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  • Irena Axmanová, Masaryk University
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  • Jürgen Dengler, Zurich University of Applied Sciences, University of Bayreuth, German Centre for Integrative Biodiversity Research Halle-Jena-Leipzig
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  • Riccardo Guarino, University of Palermo
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  • Florian Jansen, University of Rostock
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  • Gabriele Midolo, Masaryk University
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  • Michael P. Nobis, Swiss Federal Institute for Forest, Snow and Landscape Research
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  • Koenraad Van Meerbeek, KU Leuven
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  • Svetlana Aćić, University of Belgrade
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  • Fabio Attorre, University of Rome La Sapienza
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  • Erwin Bergmeier, University of Göttingen
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  • Idoia Biurrun, University of the Basque Country
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  • Gianmaria Bonari, Free University of Bozen-Bolzano
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  • Helge Bruelheide, German Centre for Integrative Biodiversity Research Halle-Jena-Leipzig, Martin Luther University Halle-Wittenberg
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  • Juan Antonio Campos, University of the Basque Country
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  • Andraž Čarni, Scientific Research Centre of the Slovenian Academy of Sciences and Arts, University of Nova Gorica
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  • Alessandro Chiarucci, University of Bologna
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  • Mirjana Ćuk, University of Novi Sad
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  • Renata Ćušterevska, SS Cyril and Methodius University in Skopje
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  • Yakiv Didukh, M.G. Kholodny Institute of Botany
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  • Daniel Dítě, Slovak Academy of Sciences
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  • Zuzana Dítě, Slovak Academy of Sciences
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  • Tetiana Dziuba, M.G. Kholodny Institute of Botany
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  • Giuliano Fanelli, University of Rome La Sapienza
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  • Eduardo Fernández-Pascual, University of Oviedo
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  • Emmanuel Garbolino, Climpact Data Science
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  • Rosario G. Gavilán, Complutense University of Madrid
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  • Jean Claude Gégout, Universite de Lorraine
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  • Ulrich Graf, Swiss Federal Institute for Forest, Snow and Landscape Research
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  • Behlül Güler, Dokuz Eylul University
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  • Michal Hájek, Masaryk University
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  • Stephan M. Hennekens, Wageningen University & Research
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  • Ute Jandt, German Centre for Integrative Biodiversity Research Halle-Jena-Leipzig, Martin Luther University Halle-Wittenberg
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  • Anni Jašková, Masaryk University
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  • Borja Jiménez-Alfaro, University of Oviedo
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  • Philippe Julve, Universite Catholique de Lille
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  • Stephan Kambach, Martin Luther University Halle-Wittenberg
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  • Dirk Nikolaus Karger, Swiss Federal Institute for Forest, Snow and Landscape Research
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  • Gerhard Karrer, University of Natural Resources and Life Sciences, Vienna
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  • Ali Kavgacı, Mehmet Akif Ersoy University
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  • Ilona Knollová, Masaryk University
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  • Anna Kuzemko, Masaryk University, M.G. Kholodny Institute of Botany
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  • Filip Küzmič, Scientific Research Centre of the Slovenian Academy of Sciences and Arts
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  • Flavia Landucci, Masaryk University
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  • Attila Lengyel, Hungarian Academy of Sciences
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  • Jonathan Lenoir, Universite de Picardie Jules Verne
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  • Corrado Marcenò, University of Perugia
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  • Jesper Erenskjold Moeslund
  • Pavel Novák, Masaryk University
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  • Aaron Pérez-Haase, Pompeu Fabra University
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  • Tomáš Peterka, Masaryk University
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  • Remigiusz Pielech, University of Agriculture in Krakow, Foundation for Biodiversity Research
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  • Alessandro Pignatti, University of Rome La Sapienza
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  • Valerijus Rašomavičius, Institute of Botany Lithuanian
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  • Solvita Rūsiņa, University of Latvia
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  • Arne Saatkamp, Conservatoire Botanique National Méditerranéen, Universite d'Avignon et des Pays du Vaucluse
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  • Urban Šilc, Scientific Research Centre of the Slovenian Academy of Sciences and Arts
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  • Željko Škvorc, University of Zagreb
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  • Jean Paul Theurillat, Fondation J.-M. Aubert, University of Geneva
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  • Thomas Wohlgemuth, Swiss Federal Institute for Forest, Snow and Landscape Research
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  • Milan Chytrý, Masaryk University

Aims: Ellenberg-type indicator values are expert-based rankings of plant species according to their ecological optima on main environmental gradients. Here we extend the indicator-value system proposed by Heinz Ellenberg and co-authors for Central Europe by incorporating other systems of Ellenberg-type indicator values (i.e., those using scales compatible with Ellenberg values) developed for other European regions. Our aim is to create a harmonized data set of Ellenberg-type indicator values applicable at the European scale. Methods: We collected European data sets of indicator values for vascular plants and selected 13 data sets that used the nine-, ten- or twelve-degree scales defined by Ellenberg for light, temperature, moisture, reaction, nutrients and salinity. We compared these values with the original Ellenberg values and used those that showed consistent trends in regression slope and coefficient of determination. We calculated the average value for each combination of species and indicator values from these data sets. Based on species’ co-occurrences in European vegetation plots, we also calculated new values for species that were not assigned an indicator value. Results: We provide a new data set of Ellenberg-type indicator values for 8908 European vascular plant species (8168 for light, 7400 for temperature, 8030 for moisture, 7282 for reaction, 7193 for nutrients, and 7507 for salinity), of which 398 species have been newly assigned to at least one indicator value. Conclusions: The newly introduced indicator values are compatible with the original Ellenberg values. They can be used for large-scale studies of the European flora and vegetation or for gap-filling in regional data sets. The European indicator values and the original and taxonomically harmonized regional data sets of Ellenberg-type indicator values are available in the Supporting Information and the Zenodo repository.

Original languageEnglish
Article numbere13168
JournalJournal of Vegetation Science
Volume34
Issue1
ISSN1100-9233
DOIs
Publication statusPublished - Jan 2023

Bibliographical note

Publisher Copyright:
© 2022 The Authors. Journal of Vegetation Science published by John Wiley & Sons Ltd on behalf of International Association for Vegetation Science.

    Research areas

  • bioindication, Ellenberg indicator values, light, moisture, nutrients, reaction, salinity, temperature, vascular plants

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