Ellenberg‐type indicator values for European vascular plant species

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‐ty...

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Published inJournal of vegetation science Vol. 34; no. 1
Main Authors Tichý, Lubomír, Axmanová, Irena, Dengler, Jürgen, Guarino, Riccardo, Jansen, Florian, Midolo, Gabriele, Nobis, Michael P., Van Meerbeek, Koenraad, Aćić, Svetlana, Attorre, Fabio, Bergmeier, Erwin, Biurrun, Idoia, Bonari, Gianmaria, Bruelheide, Helge, Campos, Juan Antonio, Čarni, Andraž, Chiarucci, Alessandro, Ćuk, Mirjana, Ćušterevska, Renata, Didukh, Yakiv, Dítě, Daniel, Dítě, Zuzana, Dziuba, Tetiana, Fanelli, Giuliano, Fernández‐Pascual, Eduardo, Garbolino, Emmanuel, Gavilán, Rosario G., Gégout, Jean‐Claude, Graf, Ulrich, Güler, Behlül, Hájek, Michal, Hennekens, Stephan M., Jandt, Ute, Jašková, Anni, Jiménez‐Alfaro, Borja, Julve, Philippe, Kambach, Stephan, Karger, Dirk Nikolaus, Karrer, Gerhard, Kavgacı, Ali, Knollová, Ilona, Kuzemko, Anna, Küzmič, Filip, Landucci, Flavia, Lengyel, Attila, Lenoir, Jonathan, Marcenò, Corrado, Moeslund, Jesper Erenskjold, Novák, Pavel, Pérez‐Haase, Aaron, Peterka, Tomáš, Pielech, Remigiusz, Pignatti, Alessandro, Rašomavičius, Valerijus, Rūsiņa, Solvita, Saatkamp, Arne, Šilc, Urban, Škvorc, Željko, Theurillat, Jean‐Paul, Wohlgemuth, Thomas, Chytrý, Milan
Format Journal Article
LanguageEnglish
Published Wiley 01.01.2023
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Abstract 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. This paper introduces a harmonized data set of Ellenberg‐type indicator values applicable at the European scale. We collected 13 regional data sets of indicator values for vascular plants compatible with Ellenberg scales and calculated a new data set of Ellenberg‐type indicator values for 8,908 European vascular plant species.
AbstractList 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.
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. This paper introduces a harmonized data set of Ellenberg‐type indicator values applicable at the European scale. We collected 13 regional data sets of indicator values for vascular plants compatible with Ellenberg scales and calculated a new data set of Ellenberg‐type indicator values for 8,908 European vascular plant species.
Author Biurrun, Idoia
Ćuk, Mirjana
Peterka, Tomáš
Aćić, Svetlana
Gégout, Jean‐Claude
Dengler, Jürgen
Rašomavičius, Valerijus
Gavilán, Rosario G.
Van Meerbeek, Koenraad
Campos, Juan Antonio
Graf, Ulrich
Pignatti, Alessandro
Fernández‐Pascual, Eduardo
Chiarucci, Alessandro
Ćušterevska, Renata
Kavgacı, Ali
Midolo, Gabriele
Fanelli, Giuliano
Dítě, Daniel
Garbolino, Emmanuel
Lengyel, Attila
Chytrý, Milan
Kambach, Stephan
Hennekens, Stephan M.
Attorre, Fabio
Rūsiņa, Solvita
Bonari, Gianmaria
Škvorc, Željko
Marcenò, Corrado
Guarino, Riccardo
Karger, Dirk Nikolaus
Jansen, Florian
Julve, Philippe
Bergmeier, Erwin
Hájek, Michal
Güler, Behlül
Novák, Pavel
Čarni, Andraž
Theurillat, Jean‐Paul
Pérez‐Haase, Aaron
Karrer, Gerhard
Bruelheide, Helge
Jiménez‐Alfaro, Borja
Kuzemko, Anna
Saatkamp, Arne
Šilc, Urban
Dítě, Zuzana
Pielech, Remigiusz
Nobis, Michael P.
Jandt, Ute
Didukh, Yakiv
Jašková, Anni
Landucci, Flavia
Tichý, Lubomír
Dziuba, Tetiana
Wohlgemuth, Thomas
Axmanová, Irena
Lenoir, Jonathan
Moeslund, Jesper Erenskjold
Küzmič, Filip
Knollová, Ilona
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BackLink https://u-picardie.hal.science/hal-04001980$$DView record in HAL
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Issue 1
Keywords salinity
bioindication
reaction
vascular plants
light
Ellenberg indicator values
temperature
moisture
nutrients
Language English
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Snippet Aims Ellenberg‐type indicator values are expert‐based rankings of plant species according to their ecological optima on main environmental gradients. Here we...
AIMS: Ellenberg‐type indicator values are expert‐based rankings of plant species according to their ecological optima on main environmental gradients. Here we...
Aims: Ellenberg-type indicator values are expert-based rankings of plant species according to their ecological optima on main environmental gradients. Here we...
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SourceType Open Access Repository
Aggregation Database
Enrichment Source
Index Database
Publisher
SubjectTerms bioindication
Central European region
data collection
Ellenberg indicator values
Environmental Sciences
flora
Life Sciences
light
moisture
nutrients
reaction
salinity
temperature
vascular plants
Vegetal Biology
vegetation
Title Ellenberg‐type indicator values for European vascular plant species
URI https://onlinelibrary.wiley.com/doi/abs/10.1111%2Fjvs.13168
https://www.proquest.com/docview/2811984775
https://u-picardie.hal.science/hal-04001980
Volume 34
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