Classification of the European marsh vegetation (Phragmito‐Magnocaricetea) to the association level
Aims To create a comprehensive, consistent and unequivocal phytosociological classification of European marsh vegetation of the class Phragmito‐Magnocaricetea. Location Europe. Methods We applied the Cocktail method to a European data set of 249,800 vegetation plots. We identified the main purposes...
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| Vydáno v: | Applied vegetation science Ročník 23; číslo 2; s. 297 - 316 |
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| Médium: | Journal Article |
| Jazyk: | angličtina |
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Malden
Wiley Subscription Services, Inc
01.04.2020
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| ISSN: | 1402-2001, 1654-109X |
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| Abstract | Aims
To create a comprehensive, consistent and unequivocal phytosociological classification of European marsh vegetation of the class Phragmito‐Magnocaricetea.
Location
Europe.
Methods
We applied the Cocktail method to a European data set of 249,800 vegetation plots. We identified the main purposes and attributes on which to base the classification, defined assignment rules for vegetation plots, and prepared formal definitions for all the associations, alliances and orders of the class Phragmito‐Magnocaricetea using formal logic. Each formula consists of the combination of “functional species groups”, cover values of individual species, and in the case of high‐rank syntaxa also of “discriminating species groups” created using the Group Improvement (GRIMP) method.
Results
The European Phragmito‐Magnocaricetea vegetation was classified into 92 associations grouped in 11 alliances and six orders. New syntaxa (previously invalidly published according to the International Code of Phytosociological Nomenclature) were introduced: Bolboschoeno maritimi‐Schoenoplection tabernaemontani, Glycerio maximae‐Sietum latifolii, Glycerio notatae‐Veronicetum beccabungae, Schoenoplectetum corymbosi and Thelypterido palustris‐Caricetum elongatae. Based on a critical revision, some other syntaxa were rejected or excluded from the class Phragmito‐Magnocaricetea.
Conclusions
This work provides the first consistent classification of the class Phragmito‐Magnocaricetea at the European scale, which is an important tool for nature conservation. Our classification largely respects previously existing concepts of syntaxa, but it also proposes modifications to the recently published EuroVegChecklist. This work also provides a protocol that can be used for extending the current classification to new syntaxa and geographical regions.
This paper presents a comprehensive and formalized classification of European marsh vegetation. The work is based on more than 200,000 vegetation plots and provides a consistent protocol and a hierarchic expert system for the classification of 92 phytosociological associations, 11 alliances and six orders of Phragmito‐Magnocaricetea class. |
|---|---|
| AbstractList | Aims
To create a comprehensive, consistent and unequivocal phytosociological classification of European marsh vegetation of the class Phragmito‐Magnocaricetea.
Location
Europe.
Methods
We applied the Cocktail method to a European data set of 249,800 vegetation plots. We identified the main purposes and attributes on which to base the classification, defined assignment rules for vegetation plots, and prepared formal definitions for all the associations, alliances and orders of the class Phragmito‐Magnocaricetea using formal logic. Each formula consists of the combination of “functional species groups”, cover values of individual species, and in the case of high‐rank syntaxa also of “discriminating species groups” created using the Group Improvement (GRIMP) method.
Results
The European Phragmito‐Magnocaricetea vegetation was classified into 92 associations grouped in 11 alliances and six orders. New syntaxa (previously invalidly published according to the International Code of Phytosociological Nomenclature) were introduced: Bolboschoeno maritimi‐Schoenoplection tabernaemontani, Glycerio maximae‐Sietum latifolii, Glycerio notatae‐Veronicetum beccabungae, Schoenoplectetum corymbosi and Thelypterido palustris‐Caricetum elongatae. Based on a critical revision, some other syntaxa were rejected or excluded from the class Phragmito‐Magnocaricetea.
Conclusions
This work provides the first consistent classification of the class Phragmito‐Magnocaricetea at the European scale, which is an important tool for nature conservation. Our classification largely respects previously existing concepts of syntaxa, but it also proposes modifications to the recently published EuroVegChecklist. This work also provides a protocol that can be used for extending the current classification to new syntaxa and geographical regions.
This paper presents a comprehensive and formalized classification of European marsh vegetation. The work is based on more than 200,000 vegetation plots and provides a consistent protocol and a hierarchic expert system for the classification of 92 phytosociological associations, 11 alliances and six orders of Phragmito‐Magnocaricetea class. AIMS: To create a comprehensive, consistent and unequivocal phytosociological classification of European marsh vegetation of the class Phragmito‐Magnocaricetea. LOCATION: Europe. METHODS: We applied the Cocktail method to a European data set of 249,800 vegetation plots. We identified the main purposes and attributes on which to base the classification, defined assignment rules for vegetation plots, and prepared formal definitions for all the associations, alliances and orders of the class Phragmito‐Magnocaricetea using formal logic. Each formula consists of the combination of “functional species groups”, cover values of individual species, and in the case of high‐rank syntaxa also of “discriminating species groups” created using the Group Improvement (GRIMP) method. RESULTS: The European Phragmito‐Magnocaricetea vegetation was classified into 92 associations grouped in 11 alliances and six orders. New syntaxa (previously invalidly published according to the International Code of Phytosociological Nomenclature) were introduced: Bolboschoeno maritimi‐Schoenoplection tabernaemontani, Glycerio maximae‐Sietum latifolii, Glycerio notatae‐Veronicetum beccabungae, Schoenoplectetum corymbosi and Thelypterido palustris‐Caricetum elongatae. Based on a critical revision, some other syntaxa were rejected or excluded from the class Phragmito‐Magnocaricetea. CONCLUSIONS: This work provides the first consistent classification of the class Phragmito‐Magnocaricetea at the European scale, which is an important tool for nature conservation. Our classification largely respects previously existing concepts of syntaxa, but it also proposes modifications to the recently published EuroVegChecklist. This work also provides a protocol that can be used for extending the current classification to new syntaxa and geographical regions. AimsTo create a comprehensive, consistent and unequivocal phytosociological classification of European marsh vegetation of the class Phragmito‐Magnocaricetea.LocationEurope.MethodsWe applied the Cocktail method to a European data set of 249,800 vegetation plots. We identified the main purposes and attributes on which to base the classification, defined assignment rules for vegetation plots, and prepared formal definitions for all the associations, alliances and orders of the class Phragmito‐Magnocaricetea using formal logic. Each formula consists of the combination of “functional species groups”, cover values of individual species, and in the case of high‐rank syntaxa also of “discriminating species groups” created using the Group Improvement (GRIMP) method.ResultsThe European Phragmito‐Magnocaricetea vegetation was classified into 92 associations grouped in 11 alliances and six orders. New syntaxa (previously invalidly published according to the International Code of Phytosociological Nomenclature) were introduced: Bolboschoeno maritimi‐Schoenoplection tabernaemontani, Glycerio maximae‐Sietum latifolii, Glycerio notatae‐Veronicetum beccabungae, Schoenoplectetum corymbosi and Thelypterido palustris‐Caricetum elongatae. Based on a critical revision, some other syntaxa were rejected or excluded from the class Phragmito‐Magnocaricetea.ConclusionsThis work provides the first consistent classification of the class Phragmito‐Magnocaricetea at the European scale, which is an important tool for nature conservation. Our classification largely respects previously existing concepts of syntaxa, but it also proposes modifications to the recently published EuroVegChecklist. This work also provides a protocol that can be used for extending the current classification to new syntaxa and geographical regions. |
| Author | Sinkevičienė, Zofija Stančić, Zvjezdana Šumberová, Kateřina Jansen, Florian Aunina, Liene Iemelianova, Svitlana Čarni, Andraž Tzonev, Rossen Papastergiadou, Eva Venanzoni, Roberto Borsukevych, Lyubov Jiménez‐Alfaro, Borja Šilc, Urban Zelnik, Igor Stepanovič, Jazep Chytrý, Milan Hennekens, Stephan Jandt, Ute Bobrov, Alexander Kącki, Zygmunt Golub, Valentin Landucci, Flavia Bie, Els De Lájer, Konrád Tichý, Lubomír Teteryuk, Boris Hrivnák, Richard Biță‐Nicolae, Claudia |
| Author_xml | – sequence: 1 givenname: Flavia orcidid: 0000-0002-6848-0384 surname: Landucci fullname: Landucci, Flavia email: flavia.landucci@gmail.com organization: Masaryk University – sequence: 2 givenname: Kateřina orcidid: 0000-0002-6815-6517 surname: Šumberová fullname: Šumberová, Kateřina organization: Czech Academy of Sciences – sequence: 3 givenname: Lubomír orcidid: 0000-0001-8400-7741 surname: Tichý fullname: Tichý, Lubomír organization: Masaryk University – sequence: 4 givenname: Stephan orcidid: 0000-0003-1221-0323 surname: Hennekens fullname: Hennekens, Stephan organization: Wageningen Environmental Research – sequence: 5 givenname: Liene orcidid: 0000-0002-3430-5668 surname: Aunina fullname: Aunina, Liene organization: University of Latvia – sequence: 6 givenname: Claudia orcidid: 0000-0003-3949-1989 surname: Biță‐Nicolae fullname: Biță‐Nicolae, Claudia organization: Romanian Academy – sequence: 7 givenname: Lyubov orcidid: 0000-0001-7316-0310 surname: Borsukevych fullname: Borsukevych, Lyubov organization: Ivan Franco National University of Lviv – sequence: 8 givenname: Alexander orcidid: 0000-0002-5840-8995 surname: Bobrov fullname: Bobrov, Alexander organization: Russian Academy of Sciences – sequence: 9 givenname: Andraž orcidid: 0000-0002-8909-4298 surname: Čarni fullname: Čarni, Andraž organization: Slovenian Academy of Sciences and Arts – sequence: 10 givenname: Els De orcidid: 0000-0001-7679-743X surname: Bie fullname: Bie, Els De organization: Research Institute for Nature and Forest Biotope Diversity – sequence: 11 givenname: Valentin orcidid: 0000-0003-3973-6608 surname: Golub fullname: Golub, Valentin organization: Russian Academy of Sciences – sequence: 12 givenname: Richard orcidid: 0000-0003-0716-4553 surname: Hrivnák fullname: Hrivnák, Richard organization: Slovak Academy of Sciences – sequence: 13 givenname: Svitlana orcidid: 0000-0001-5885-3186 surname: Iemelianova fullname: Iemelianova, Svitlana organization: M. G. Kholodny Institute of Botany, NAS of Ukraine – sequence: 14 givenname: Ute orcidid: 0000-0002-3177-3669 surname: Jandt fullname: Jandt, Ute organization: Martin Luther University Halle‐Wittenberg – sequence: 15 givenname: Florian orcidid: 0000-0002-0331-5185 surname: Jansen fullname: Jansen, Florian organization: University of Rostock – sequence: 16 givenname: Zygmunt orcidid: 0000-0002-2241-1631 surname: Kącki fullname: Kącki, Zygmunt organization: University of Wrocław – sequence: 17 givenname: Konrád surname: Lájer fullname: Lájer, Konrád organization: Óbuda University – sequence: 18 givenname: Eva orcidid: 0000-0003-4430-878X surname: Papastergiadou fullname: Papastergiadou, Eva organization: University of Patras – sequence: 19 givenname: Urban orcidid: 0000-0002-3052-699X surname: Šilc fullname: Šilc, Urban organization: Slovenian Academy of Sciences and Arts – sequence: 20 givenname: Zofija orcidid: 0000-0003-2163-9922 surname: Sinkevičienė fullname: Sinkevičienė, Zofija organization: Nature Research Centre – sequence: 21 givenname: Zvjezdana orcidid: 0000-0002-6124-811X surname: Stančić fullname: Stančić, Zvjezdana organization: University of Zagreb – sequence: 22 givenname: Jazep surname: Stepanovič fullname: Stepanovič, Jazep organization: National Academy of Sciences of Belarus – sequence: 23 givenname: Boris orcidid: 0000-0002-7207-9956 surname: Teteryuk fullname: Teteryuk, Boris organization: Russian Academy of Sciences – sequence: 24 givenname: Rossen surname: Tzonev fullname: Tzonev, Rossen organization: Sofia University – sequence: 25 givenname: Roberto orcidid: 0000-0002-7768-0468 surname: Venanzoni fullname: Venanzoni, Roberto organization: University of Perugia – sequence: 26 givenname: Igor orcidid: 0000-0002-8497-2661 surname: Zelnik fullname: Zelnik, Igor organization: University of Ljubljana – sequence: 27 givenname: Milan orcidid: 0000-0002-8122-3075 surname: Chytrý fullname: Chytrý, Milan organization: Masaryk University – sequence: 28 givenname: Borja surname: Jiménez‐Alfaro fullname: Jiménez‐Alfaro, Borja |
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| Copyright | 2020 International Association for Vegetation Science Copyright © 2020 International Association for Vegetation Science |
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To create a comprehensive, consistent and unequivocal phytosociological classification of European marsh vegetation of the class Phragmito‐Magnocaricetea.... AimsTo create a comprehensive, consistent and unequivocal phytosociological classification of European marsh vegetation of the class... AIMS: To create a comprehensive, consistent and unequivocal phytosociological classification of European marsh vegetation of the class... |
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| SubjectTerms | Association Classification cocktail method consistency data collection discriminating species groups Europe functional species group Marshes Mathematical logic natural resources conservation Nature conservation Nomenclature physiognomy phytosociology sociological species group Species Vegetation vegetation classification vegetation database wetland vegetation |
| Title | Classification of the European marsh vegetation (Phragmito‐Magnocaricetea) to the association level |
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