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author van der Sande, Masha T.
Bruelheide, Helge
Dawson, Wayne
Dengler, Jürgen
Essl, Franz
Field, Richard
Haider, Sylvia
van Kleunen, Mark
Kreft, Holger
Pagel, Joern
Pergl, Jan
Purschke, Oliver
Pyšek, Petr
Weigelt, Patrick
Winter, Marten
Attorre, Fabio
Aubin, Isabelle
Bergmeier, Erwin
Chytrý, Milan
Dainese, Matteo
De Sanctis, Michele
Fagundez, Jaime
Golub, Valentin
Guerin, Greg R.
Gutiérrez, Alvaro G.
Jandt, Ute
Jansen, Florian
Jiménez‐Alfaro, Borja
Kattge, Jens
Kearsley, Elizabeth
Klotz, Stefan
Kramer, Koen
Moretti, Marco
Niinemets, Ülo
Peet, Robert K.
Penuelas, Josep
Petřík, Petr
Reich, Peter B.
Sandel, Brody
Schmidt, Marco
Sibikova, Maria
Violle, Cyrille
Whitfeld, Timothy J. S.
Wohlgemuth, Thomas
Knight, Tiffany M.
author_facet van der Sande, Masha T.
Bruelheide, Helge
Dawson, Wayne
Dengler, Jürgen
Essl, Franz
Field, Richard
Haider, Sylvia
van Kleunen, Mark
Kreft, Holger
Pagel, Joern
Pergl, Jan
Purschke, Oliver
Pyšek, Petr
Weigelt, Patrick
Winter, Marten
Attorre, Fabio
Aubin, Isabelle
Bergmeier, Erwin
Chytrý, Milan
Dainese, Matteo
De Sanctis, Michele
Fagundez, Jaime
Golub, Valentin
Guerin, Greg R.
Gutiérrez, Alvaro G.
Jandt, Ute
Jansen, Florian
Jiménez‐Alfaro, Borja
Kattge, Jens
Kearsley, Elizabeth
Klotz, Stefan
Kramer, Koen
Moretti, Marco
Niinemets, Ülo
Peet, Robert K.
Penuelas, Josep
Petřík, Petr
Reich, Peter B.
Sandel, Brody
Schmidt, Marco
Sibikova, Maria
Violle, Cyrille
Whitfeld, Timothy J. S.
Wohlgemuth, Thomas
Knight, Tiffany M.
author_sort van der Sande, Masha T.
collection PubMed
description AIM: Alien plant species can cause severe ecological and economic problems, and therefore attract a lot of research interest in biogeography and related fields. To identify potential future invasive species, we need to better understand the mechanisms underlying the abundances of invasive tree species in their new ranges, and whether these mechanisms differ between their native and alien ranges. Here, we test two hypotheses: that greater relative abundance is promoted by (a) functional difference from locally co‐occurring trees, and (b) higher values than locally co‐occurring trees for traits linked to competitive ability. LOCATION: Global. TIME PERIOD: Recent. MAJOR TAXA STUDIED: Trees. METHODS: We combined three global plant databases: sPlot vegetation‐plot database, TRY plant trait database and Global Naturalized Alien Flora (GloNAF) database. We used a hierarchical Bayesian linear regression model to assess the factors associated with variation in local abundance, and how these relationships vary between native and alien ranges and depend on species’ traits. RESULTS: In both ranges, species reach highest abundance if they are functionally similar to co‐occurring species, yet are taller and have higher seed mass and wood density than co‐occurring species. MAIN CONCLUSIONS: Our results suggest that light limitation leads to strong environmental and biotic filtering, and that it is advantageous to be taller and have denser wood. The striking similarities in abundance between native and alien ranges imply that information from tree species’ native ranges can be used to predict in which habitats introduced species may become dominant.
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spelling pubmed-70067952020-02-13 Similar factors underlie tree abundance in forests in native and alien ranges van der Sande, Masha T. Bruelheide, Helge Dawson, Wayne Dengler, Jürgen Essl, Franz Field, Richard Haider, Sylvia van Kleunen, Mark Kreft, Holger Pagel, Joern Pergl, Jan Purschke, Oliver Pyšek, Petr Weigelt, Patrick Winter, Marten Attorre, Fabio Aubin, Isabelle Bergmeier, Erwin Chytrý, Milan Dainese, Matteo De Sanctis, Michele Fagundez, Jaime Golub, Valentin Guerin, Greg R. Gutiérrez, Alvaro G. Jandt, Ute Jansen, Florian Jiménez‐Alfaro, Borja Kattge, Jens Kearsley, Elizabeth Klotz, Stefan Kramer, Koen Moretti, Marco Niinemets, Ülo Peet, Robert K. Penuelas, Josep Petřík, Petr Reich, Peter B. Sandel, Brody Schmidt, Marco Sibikova, Maria Violle, Cyrille Whitfeld, Timothy J. S. Wohlgemuth, Thomas Knight, Tiffany M. Glob Ecol Biogeogr Research Papers AIM: Alien plant species can cause severe ecological and economic problems, and therefore attract a lot of research interest in biogeography and related fields. To identify potential future invasive species, we need to better understand the mechanisms underlying the abundances of invasive tree species in their new ranges, and whether these mechanisms differ between their native and alien ranges. Here, we test two hypotheses: that greater relative abundance is promoted by (a) functional difference from locally co‐occurring trees, and (b) higher values than locally co‐occurring trees for traits linked to competitive ability. LOCATION: Global. TIME PERIOD: Recent. MAJOR TAXA STUDIED: Trees. METHODS: We combined three global plant databases: sPlot vegetation‐plot database, TRY plant trait database and Global Naturalized Alien Flora (GloNAF) database. We used a hierarchical Bayesian linear regression model to assess the factors associated with variation in local abundance, and how these relationships vary between native and alien ranges and depend on species’ traits. RESULTS: In both ranges, species reach highest abundance if they are functionally similar to co‐occurring species, yet are taller and have higher seed mass and wood density than co‐occurring species. MAIN CONCLUSIONS: Our results suggest that light limitation leads to strong environmental and biotic filtering, and that it is advantageous to be taller and have denser wood. The striking similarities in abundance between native and alien ranges imply that information from tree species’ native ranges can be used to predict in which habitats introduced species may become dominant. John Wiley and Sons Inc. 2019-12-01 2020-02 /pmc/articles/PMC7006795/ /pubmed/32063745 http://dx.doi.org/10.1111/geb.13027 Text en © 2019 The Authors. Global Ecology and Biogeography published by John Wiley & Sons Ltd This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Papers
van der Sande, Masha T.
Bruelheide, Helge
Dawson, Wayne
Dengler, Jürgen
Essl, Franz
Field, Richard
Haider, Sylvia
van Kleunen, Mark
Kreft, Holger
Pagel, Joern
Pergl, Jan
Purschke, Oliver
Pyšek, Petr
Weigelt, Patrick
Winter, Marten
Attorre, Fabio
Aubin, Isabelle
Bergmeier, Erwin
Chytrý, Milan
Dainese, Matteo
De Sanctis, Michele
Fagundez, Jaime
Golub, Valentin
Guerin, Greg R.
Gutiérrez, Alvaro G.
Jandt, Ute
Jansen, Florian
Jiménez‐Alfaro, Borja
Kattge, Jens
Kearsley, Elizabeth
Klotz, Stefan
Kramer, Koen
Moretti, Marco
Niinemets, Ülo
Peet, Robert K.
Penuelas, Josep
Petřík, Petr
Reich, Peter B.
Sandel, Brody
Schmidt, Marco
Sibikova, Maria
Violle, Cyrille
Whitfeld, Timothy J. S.
Wohlgemuth, Thomas
Knight, Tiffany M.
Similar factors underlie tree abundance in forests in native and alien ranges
title Similar factors underlie tree abundance in forests in native and alien ranges
title_full Similar factors underlie tree abundance in forests in native and alien ranges
title_fullStr Similar factors underlie tree abundance in forests in native and alien ranges
title_full_unstemmed Similar factors underlie tree abundance in forests in native and alien ranges
title_short Similar factors underlie tree abundance in forests in native and alien ranges
title_sort similar factors underlie tree abundance in forests in native and alien ranges
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7006795/
https://www.ncbi.nlm.nih.gov/pubmed/32063745
http://dx.doi.org/10.1111/geb.13027
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