Classification of European and Mediterranean coastal dune vegetation

Aims: Although many phytosociological studies have provided detailed local and regional descriptions of coastal dune vegetation, a unified classification of this vegetation in Europe and the Mediterranean Basin has been missing. Our aim is to produce a formalized classification of this vegetation an...

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Published in:Applied vegetation science Vol. 21; no. 3; pp. 533 - 559
Main Authors: Marcenò, Corrado, Guarino, Riccardo, Loidi, Javier, Herrera, Mercedes, Isermann, Maike, Knollová, Ilona, Tichý, Lubomír, Tzonev, Rossen T., Acosta, Alicia Teresa Rosario, FitzPatrick, Úna, Iakushenko, Dmytro, Janssen, John A. M., Jiménez-Alfaro, Borja, Kącki, Zygmunt, Keizer-Sedláková, Iva, Kolomiychuk, Vitaliy, Rodwell, John S., Schaminée, Joop H. J., Šilc, Urban, Chytrý, Milan
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Language:English
Published: Malden John Wiley & Sons Ltd 01.07.2018
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ISSN:1402-2001, 1654-109X
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Abstract Aims: Although many phytosociological studies have provided detailed local and regional descriptions of coastal dune vegetation, a unified classification of this vegetation in Europe and the Mediterranean Basin has been missing. Our aim is to produce a formalized classification of this vegetation and to identify the main factors driving its plant species composition at a continental scale. Location: Atlantic and Baltic coasts of Europe, Mediterranean Basin and the Black Sea region. Methods: We compiled a database of 30,759 plots of coastal vegetation, which were resampled to reduce unbalanced sampling effort, obtaining a data set of 11,769 plots. We classified these plots with TWINSPAN, interpreted the resulting clusters and used them for developing formal definitions of phytosociological alliances of coastal dune vegetation, which were included in an expert system for automatic vegetation classification. We related the alliances to climatic factors and described their biogeographic features and their position in the coastal vegetation zonation. We examined and visualized the floristic relationships among these alliances by means of DCA ordination. Results: We defined 18 alliances of coastal dune vegetation, including the newly described Centaureo cuneifoliae-Verbascion pinnatifidi from the Aegean region. The main factors underlying the differentiation of these alliances were biogeographic and macroclimatic contrasts between the Atlantic-Baltic, Mediterranean and Black Sea regions, along with ecological differences between shifting and stable dunes. The main difference in species composition was between the Atlantic–Baltic and Mediterranean–Black Sea regions. Within the former region, the main difference was driven by the different ecological conditions between shifting and stable dunes, whereas within the latter, the main difference was biogeographic between the Mediterranean and the Black Sea. Conclusions: The first formal classification of the European coastal dune vegetation was established, accompanied by an expert system containing the formal definitions of alliances, which can be applied to new data sets. The new classification system critically revised the previous concepts and integrated them into a consistent framework, which reflects the main gradients in species composition driven by biogeographic influences, macroclimate and the position of the sites in the coast–inland zonation of the dune systems. A revision of the class concept used in EuroVegChecklist is also proposed.
AbstractList AimsAlthough many phytosociological studies have provided detailed local and regional descriptions of coastal dune vegetation, a unified classification of this vegetation in Europe and the Mediterranean Basin has been missing. Our aim is to produce a formalized classification of this vegetation and to identify the main factors driving its plant species composition at a continental scale.LocationAtlantic and Baltic coasts of Europe, Mediterranean Basin and the Black Sea region.MethodsWe compiled a database of 30,759 plots of coastal vegetation, which were resampled to reduce unbalanced sampling effort, obtaining a data set of 11,769 plots. We classified these plots with TWINSPAN, interpreted the resulting clusters and used them for developing formal definitions of phytosociological alliances of coastal dune vegetation, which were included in an expert system for automatic vegetation classification. We related the alliances to climatic factors and described their biogeographic features and their position in the coastal vegetation zonation. We examined and visualized the floristic relationships among these alliances by means of DCA ordination.ResultsWe defined 18 alliances of coastal dune vegetation, including the newly described Centaureo cuneifoliae‐Verbascion pinnatifidi from the Aegean region. The main factors underlying the differentiation of these alliances were biogeographic and macroclimatic contrasts between the Atlantic–Baltic, Mediterranean and Black Sea regions, along with ecological differences between shifting and stable dunes. The main difference in species composition was between the Atlantic–Baltic and Mediterranean–Black Sea regions. Within the former region, the main difference was driven by the different ecological conditions between shifting and stable dunes, whereas within the latter, the main difference was biogeographic between the Mediterranean and the Black Sea.ConclusionsThe first formal classification of the European coastal dune vegetation was established, accompanied by an expert system containing the formal definitions of alliances, which can be applied to new data sets. The new classification system critically revised the previous concepts and integrated them into a consistent framework, which reflects the main gradients in species composition driven by biogeographic influences, macroclimate and the position of the sites in the coast–inland zonation of the dune systems. A revision of the class concept used in EuroVegChecklist is also proposed.
Aims Although many phytosociological studies have provided detailed local and regional descriptions of coastal dune vegetation, a unified classification of this vegetation in Europe and the Mediterranean Basin has been missing. Our aim is to produce a formalized classification of this vegetation and to identify the main factors driving its plant species composition at a continental scale. Location Atlantic and Baltic coasts of Europe, Mediterranean Basin and the Black Sea region. Methods We compiled a database of 30,759 plots of coastal vegetation, which were resampled to reduce unbalanced sampling effort, obtaining a data set of 11,769 plots. We classified these plots with TWINSPAN, interpreted the resulting clusters and used them for developing formal definitions of phytosociological alliances of coastal dune vegetation, which were included in an expert system for automatic vegetation classification. We related the alliances to climatic factors and described their biogeographic features and their position in the coastal vegetation zonation. We examined and visualized the floristic relationships among these alliances by means of DCA ordination. Results We defined 18 alliances of coastal dune vegetation, including the newly described Centaureo cuneifoliae‐Verbascion pinnatifidi from the Aegean region. The main factors underlying the differentiation of these alliances were biogeographic and macroclimatic contrasts between the Atlantic–Baltic, Mediterranean and Black Sea regions, along with ecological differences between shifting and stable dunes. The main difference in species composition was between the Atlantic–Baltic and Mediterranean–Black Sea regions. Within the former region, the main difference was driven by the different ecological conditions between shifting and stable dunes, whereas within the latter, the main difference was biogeographic between the Mediterranean and the Black Sea. Conclusions The first formal classification of the European coastal dune vegetation was established, accompanied by an expert system containing the formal definitions of alliances, which can be applied to new data sets. The new classification system critically revised the previous concepts and integrated them into a consistent framework, which reflects the main gradients in species composition driven by biogeographic influences, macroclimate and the position of the sites in the coast–inland zonation of the dune systems. A revision of the class concept used in EuroVegChecklist is also proposed. The first formal classification of the European coastal dune vegetation was established, accompanied by an expert system containing the formal definitions of alliances. The new classification critically revised the previous concepts and integrated them into a consistent framework which reflects the main gradients in species composition driven by biogeographical influences of the dune systems.
Aims: Although many phytosociological studies have provided detailed local and regional descriptions of coastal dune vegetation, a unified classification of this vegetation in Europe and the Mediterranean Basin has been missing. Our aim is to produce a formalized classification of this vegetation and to identify the main factors driving its plant species composition at a continental scale. Location: Atlantic and Baltic coasts of Europe, Mediterranean Basin and the Black Sea region. Methods: We compiled a database of 30,759 plots of coastal vegetation, which were resampled to reduce unbalanced sampling effort, obtaining a data set of 11,769 plots. We classified these plots with TWINSPAN, interpreted the resulting clusters and used them for developing formal definitions of phytosociological alliances of coastal dune vegetation, which were included in an expert system for automatic vegetation classification. We related the alliances to climatic factors and described their biogeographic features and their position in the coastal vegetation zonation. We examined and visualized the floristic relationships among these alliances by means of DCA ordination. Results: We defined 18 alliances of coastal dune vegetation, including the newly described Centaureo cuneifoliae-Verbascion pinnatifidi from the Aegean region. The main factors underlying the differentiation of these alliances were biogeographic and macroclimatic contrasts between the Atlantic-Baltic, Mediterranean and Black Sea regions, along with ecological differences between shifting and stable dunes. The main difference in species composition was between the Atlantic–Baltic and Mediterranean–Black Sea regions. Within the former region, the main difference was driven by the different ecological conditions between shifting and stable dunes, whereas within the latter, the main difference was biogeographic between the Mediterranean and the Black Sea. Conclusions: The first formal classification of the European coastal dune vegetation was established, accompanied by an expert system containing the formal definitions of alliances, which can be applied to new data sets. The new classification system critically revised the previous concepts and integrated them into a consistent framework, which reflects the main gradients in species composition driven by biogeographic influences, macroclimate and the position of the sites in the coast–inland zonation of the dune systems. A revision of the class concept used in EuroVegChecklist is also proposed.
Author Kolomiychuk, Vitaliy
Marcenò, Corrado
Guarino, Riccardo
Isermann, Maike
Šilc, Urban
Rodwell, John S.
Herrera, Mercedes
Janssen, John A. M.
Jiménez-Alfaro, Borja
Chytrý, Milan
Schaminée, Joop H. J.
Tzonev, Rossen T.
Kącki, Zygmunt
Iakushenko, Dmytro
Keizer-Sedláková, Iva
Tichý, Lubomír
Acosta, Alicia Teresa Rosario
FitzPatrick, Úna
Loidi, Javier
Knollová, Ilona
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Copyright Copyright © 2018 International Association for Vegetation Science
2018 International Association for Vegetation Science
Wageningen University & Research
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2017; 47
2002; 13
2003; 14
1988; 77
2011; 15
2011; 18
2014; 136
2014; 23
1979
1933
2005; 25
1997; 8
2013; 16
2006; 67
2013; 119
1943; 84
1993; 70
2015; 42
2000; 11
2013; 50
1999; 13
1999; 56
2011; 22
1981; 37
2008; 24
2008; 21
2014; 51
2001; 12
2011; 27
1952; 28
1996; 2
2007; 23
1971; 6
2016; 46
2009; 15
2009; 17
2017; 20
2006; 94
2015; 19
2000; 27
2016; 19
2015; 18
2009; 20
1986; 10
2006; 17
1997; 23
1998
1999; 68
1957; 9
2008
1986; 17
1997
1952
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2002; 3
1996
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1995
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1999; 1–2
2001; 22
1996; 54
1987; 18
2003; 33
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1974; 24
1946; 7
2002; 29
1997; 32
1988; 9
1988; 21
1952; 3
2005; 4
1994; 13
2017
1974; 7–8
2016
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1959; 16
2005; 18
1989; 14
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Snippet Aims: Although many phytosociological studies have provided detailed local and regional descriptions of coastal dune vegetation, a unified classification of...
Aims Although many phytosociological studies have provided detailed local and regional descriptions of coastal dune vegetation, a unified classification of...
AimsAlthough many phytosociological studies have provided detailed local and regional descriptions of coastal dune vegetation, a unified classification of this...
AIMS: Although many phytosociological studies have provided detailed local and regional descriptions of coastal dune vegetation, a unified classification of...
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Enrichment Source
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SubjectTerms Ammophiletea
Biogeography
Black Sea
Classification
climatic factors
coasts
Composition
data collection
Dunes
Ecological conditions
Europe
Expert system
Expert systems
Honckenyo-Elymetea
Koelerio-Corynephoretea canescentis
Mediterranean region
Ordination
Phytosociology
Plant species
Sand dune
Species composition
species diversity
Vegetation
Vegetation classification
VEGETATION SURVEY
Zonation
Title Classification of European and Mediterranean coastal dune vegetation
URI https://www.jstor.org/stable/26634178
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Volume 21
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