Cargando…

Leaf-level coordination principles propagate to the ecosystem scale

Fundamental axes of variation in plant traits result from trade-offs between costs and benefits of resource-use strategies at the leaf scale. However, it is unclear whether similar trade-offs propagate to the ecosystem level. Here, we test whether trait correlation patterns predicted by three well-k...

Descripción completa

Detalles Bibliográficos
Autores principales: Gomarasca, Ulisse, Migliavacca, Mirco, Kattge, Jens, Nelson, Jacob A., Niinemets, Ülo, Wirth, Christian, Cescatti, Alessandro, Bahn, Michael, Nair, Richard, Acosta, Alicia T. R., Arain, M. Altaf, Beloiu, Mirela, Black, T. Andrew, Bruun, Hans Henrik, Bucher, Solveig Franziska, Buchmann, Nina, Byun, Chaeho, Carrara, Arnaud, Conte, Adriano, da Silva, Ana C., Duveiller, Gregory, Fares, Silvano, Ibrom, Andreas, Knohl, Alexander, Komac, Benjamin, Limousin, Jean-Marc, Lusk, Christopher H., Mahecha, Miguel D., Martini, David, Minden, Vanessa, Montagnani, Leonardo, Mori, Akira S., Onoda, Yusuke, Peñuelas, Josep, Perez-Priego, Oscar, Poschlod, Peter, Powell, Thomas L., Reich, Peter B., Šigut, Ladislav, van Bodegom, Peter M., Walther, Sophia, Wohlfahrt, Georg, Wright, Ian J., Reichstein, Markus
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10319885/
https://www.ncbi.nlm.nih.gov/pubmed/37402725
http://dx.doi.org/10.1038/s41467-023-39572-5
_version_ 1785068336094117888
author Gomarasca, Ulisse
Migliavacca, Mirco
Kattge, Jens
Nelson, Jacob A.
Niinemets, Ülo
Wirth, Christian
Cescatti, Alessandro
Bahn, Michael
Nair, Richard
Acosta, Alicia T. R.
Arain, M. Altaf
Beloiu, Mirela
Black, T. Andrew
Bruun, Hans Henrik
Bucher, Solveig Franziska
Buchmann, Nina
Byun, Chaeho
Carrara, Arnaud
Conte, Adriano
da Silva, Ana C.
Duveiller, Gregory
Fares, Silvano
Ibrom, Andreas
Knohl, Alexander
Komac, Benjamin
Limousin, Jean-Marc
Lusk, Christopher H.
Mahecha, Miguel D.
Martini, David
Minden, Vanessa
Montagnani, Leonardo
Mori, Akira S.
Onoda, Yusuke
Peñuelas, Josep
Perez-Priego, Oscar
Poschlod, Peter
Powell, Thomas L.
Reich, Peter B.
Šigut, Ladislav
van Bodegom, Peter M.
Walther, Sophia
Wohlfahrt, Georg
Wright, Ian J.
Reichstein, Markus
author_facet Gomarasca, Ulisse
Migliavacca, Mirco
Kattge, Jens
Nelson, Jacob A.
Niinemets, Ülo
Wirth, Christian
Cescatti, Alessandro
Bahn, Michael
Nair, Richard
Acosta, Alicia T. R.
Arain, M. Altaf
Beloiu, Mirela
Black, T. Andrew
Bruun, Hans Henrik
Bucher, Solveig Franziska
Buchmann, Nina
Byun, Chaeho
Carrara, Arnaud
Conte, Adriano
da Silva, Ana C.
Duveiller, Gregory
Fares, Silvano
Ibrom, Andreas
Knohl, Alexander
Komac, Benjamin
Limousin, Jean-Marc
Lusk, Christopher H.
Mahecha, Miguel D.
Martini, David
Minden, Vanessa
Montagnani, Leonardo
Mori, Akira S.
Onoda, Yusuke
Peñuelas, Josep
Perez-Priego, Oscar
Poschlod, Peter
Powell, Thomas L.
Reich, Peter B.
Šigut, Ladislav
van Bodegom, Peter M.
Walther, Sophia
Wohlfahrt, Georg
Wright, Ian J.
Reichstein, Markus
author_sort Gomarasca, Ulisse
collection PubMed
description Fundamental axes of variation in plant traits result from trade-offs between costs and benefits of resource-use strategies at the leaf scale. However, it is unclear whether similar trade-offs propagate to the ecosystem level. Here, we test whether trait correlation patterns predicted by three well-known leaf- and plant-level coordination theories – the leaf economics spectrum, the global spectrum of plant form and function, and the least-cost hypothesis – are also observed between community mean traits and ecosystem processes. We combined ecosystem functional properties from FLUXNET sites, vegetation properties, and community mean plant traits into three corresponding principal component analyses. We find that the leaf economics spectrum (90 sites), the global spectrum of plant form and function (89 sites), and the least-cost hypothesis (82 sites) all propagate at the ecosystem level. However, we also find evidence of additional scale-emergent properties. Evaluating the coordination of ecosystem functional properties may aid the development of more realistic global dynamic vegetation models with critical empirical data, reducing the uncertainty of climate change projections.
format Online
Article
Text
id pubmed-10319885
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Nature Publishing Group UK
record_format MEDLINE/PubMed
spelling pubmed-103198852023-07-06 Leaf-level coordination principles propagate to the ecosystem scale Gomarasca, Ulisse Migliavacca, Mirco Kattge, Jens Nelson, Jacob A. Niinemets, Ülo Wirth, Christian Cescatti, Alessandro Bahn, Michael Nair, Richard Acosta, Alicia T. R. Arain, M. Altaf Beloiu, Mirela Black, T. Andrew Bruun, Hans Henrik Bucher, Solveig Franziska Buchmann, Nina Byun, Chaeho Carrara, Arnaud Conte, Adriano da Silva, Ana C. Duveiller, Gregory Fares, Silvano Ibrom, Andreas Knohl, Alexander Komac, Benjamin Limousin, Jean-Marc Lusk, Christopher H. Mahecha, Miguel D. Martini, David Minden, Vanessa Montagnani, Leonardo Mori, Akira S. Onoda, Yusuke Peñuelas, Josep Perez-Priego, Oscar Poschlod, Peter Powell, Thomas L. Reich, Peter B. Šigut, Ladislav van Bodegom, Peter M. Walther, Sophia Wohlfahrt, Georg Wright, Ian J. Reichstein, Markus Nat Commun Article Fundamental axes of variation in plant traits result from trade-offs between costs and benefits of resource-use strategies at the leaf scale. However, it is unclear whether similar trade-offs propagate to the ecosystem level. Here, we test whether trait correlation patterns predicted by three well-known leaf- and plant-level coordination theories – the leaf economics spectrum, the global spectrum of plant form and function, and the least-cost hypothesis – are also observed between community mean traits and ecosystem processes. We combined ecosystem functional properties from FLUXNET sites, vegetation properties, and community mean plant traits into three corresponding principal component analyses. We find that the leaf economics spectrum (90 sites), the global spectrum of plant form and function (89 sites), and the least-cost hypothesis (82 sites) all propagate at the ecosystem level. However, we also find evidence of additional scale-emergent properties. Evaluating the coordination of ecosystem functional properties may aid the development of more realistic global dynamic vegetation models with critical empirical data, reducing the uncertainty of climate change projections. Nature Publishing Group UK 2023-07-04 /pmc/articles/PMC10319885/ /pubmed/37402725 http://dx.doi.org/10.1038/s41467-023-39572-5 Text en © The Author(s) 2023 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Gomarasca, Ulisse
Migliavacca, Mirco
Kattge, Jens
Nelson, Jacob A.
Niinemets, Ülo
Wirth, Christian
Cescatti, Alessandro
Bahn, Michael
Nair, Richard
Acosta, Alicia T. R.
Arain, M. Altaf
Beloiu, Mirela
Black, T. Andrew
Bruun, Hans Henrik
Bucher, Solveig Franziska
Buchmann, Nina
Byun, Chaeho
Carrara, Arnaud
Conte, Adriano
da Silva, Ana C.
Duveiller, Gregory
Fares, Silvano
Ibrom, Andreas
Knohl, Alexander
Komac, Benjamin
Limousin, Jean-Marc
Lusk, Christopher H.
Mahecha, Miguel D.
Martini, David
Minden, Vanessa
Montagnani, Leonardo
Mori, Akira S.
Onoda, Yusuke
Peñuelas, Josep
Perez-Priego, Oscar
Poschlod, Peter
Powell, Thomas L.
Reich, Peter B.
Šigut, Ladislav
van Bodegom, Peter M.
Walther, Sophia
Wohlfahrt, Georg
Wright, Ian J.
Reichstein, Markus
Leaf-level coordination principles propagate to the ecosystem scale
title Leaf-level coordination principles propagate to the ecosystem scale
title_full Leaf-level coordination principles propagate to the ecosystem scale
title_fullStr Leaf-level coordination principles propagate to the ecosystem scale
title_full_unstemmed Leaf-level coordination principles propagate to the ecosystem scale
title_short Leaf-level coordination principles propagate to the ecosystem scale
title_sort leaf-level coordination principles propagate to the ecosystem scale
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10319885/
https://www.ncbi.nlm.nih.gov/pubmed/37402725
http://dx.doi.org/10.1038/s41467-023-39572-5
work_keys_str_mv AT gomarascaulisse leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT migliavaccamirco leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT kattgejens leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT nelsonjacoba leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT niinemetsulo leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT wirthchristian leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT cescattialessandro leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT bahnmichael leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT nairrichard leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT acostaaliciatr leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT arainmaltaf leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT beloiumirela leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT blacktandrew leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT bruunhanshenrik leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT buchersolveigfranziska leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT buchmannnina leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT byunchaeho leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT carraraarnaud leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT conteadriano leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT dasilvaanac leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT duveillergregory leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT faressilvano leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT ibromandreas leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT knohlalexander leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT komacbenjamin leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT limousinjeanmarc leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT luskchristopherh leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT mahechamigueld leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT martinidavid leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT mindenvanessa leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT montagnanileonardo leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT moriakiras leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT onodayusuke leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT penuelasjosep leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT perezpriegooscar leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT poschlodpeter leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT powellthomasl leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT reichpeterb leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT sigutladislav leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT vanbodegompeterm leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT walthersophia leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT wohlfahrtgeorg leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT wrightianj leaflevelcoordinationprinciplespropagatetotheecosystemscale
AT reichsteinmarkus leaflevelcoordinationprinciplespropagatetotheecosystemscale