Accès ouvert déclaré2025preprint
Beyond species means – the intraspecific contribution to global wood density variation
Fabian Jörg Fischer, Jérôme Chave, Amy E. Zanne, Tommaso Jucker, Alex Fajardo, Adeline Fayolle, Renato A. Ferreira de Lima, Ghislain Vieilledent, Hans Beeckman, Wannes Hubau, Tom De Mil, Daniel Wallenus, Ana M. Aldana, Esteban Álvarez‐Dávila, Luciana F. Alves, Deborah M. G. Apgaua, Fátima A. Arcanjo, Jean‐François Bastin, Andrii Bilous, Philippe Birnbaum, Volodymyr Blyshchyk, Joli R. Borah, Vanessa Boukili, J. Julio Camarero, Luisa Fernanda Casas, Roberto Cazzolla Gatti, Jeffrey Q. Chambers, Ezequiel Fabiano, Brendan Choat, Georgina Conti, William K. Cornwell, Javid Ahmad Dar, Ashesh Kumar Das, Magnus Dobler, Dao Dougabka, D. P. Edwards, Robert Evans, Daniel S. Falster, Philip M. Fearnside, Olivier Flores, Nikolaos M. Fyllas, Jean Gérard, Rosa C. Goodman, Daniel Guibal, L. Francisco Henao‐Díaz, Vincent Hervé, Peter Hietz, Jürgen Homeier, Thomas Ibanez, J. Ilic, Steven Jansen, Rinku Moni Kalita, Tanaka Kenzo, Liana Kindermann, S. Kothandaraman, Martyna M. Kotowska, Yasuhiro Kubota, Patrick Langbour, James R. Lawson, André Luiz Alves de Lima, Roman M. Link, Anja Linstädter, Rosana López, Cate Macinnis‐Ng, Luiz Fernando Silva Magnago, Adam R. Martin, Ashley M. Matheny, James K. McCarthy, Regis B. Miller, Arun Jyoti Nath, Bruce Nelson, Marco Andrew Njana, Euler Melo Nogueira, Alexandre Oliveira, Rafael Augustus de Oliveira, Mark E. Olson, Keryn I. Paul, Daniel Piotto, Phil Radtke, Onja H. Razafindratsima, Tahiana Ramananantoandro, Jennifer Read, Sarah J. Richardson, Enrique G. de la Riva, Oris Rodríguez-Reyes, Samir Rolim, Víctor Rolo, Julieta A. Rosell, Roberto Salguero‐Gómez, Nadia S. Santini, Bernhard Schuldt, Luitgard Schwendenmann, Arne Sellin, Timothy L. Staples, Pablo R. Stevenson, Somaiah Sundarapandian, Masha T. van der Sande, Bernard Thibaut, David Y. P. Tng, José Marcelo Domingues Torezan, Boris Villanueva, Aaron R. Weiskittel, Jessie A. Wells, S. Joseph Wright, Kasia Ziemińska
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Résumé fourni par la source
Abstract Wood density is central for estimating vegetation carbon storage and a plant functional trait of great ecological and evolutionary importance. However, the global extent of wood density variation is unclear, especially at the intraspecific level. We assembled the most comprehensive wood density collection to date (GWDD v.2), including 109,626 records from 16,829 plant species across woody life forms and biomes. Using the GWDD v.2, we explored the sources of variation in wood density within individuals, within species, and across environmental gradients. Intraspecific variation accounted for up to 15% of overall wood density variation (sd = 0.068 g cm -3 ). Sapwood densities varied 50% less than heartwood densities, and branchwood densities varied 30% less than trunkwood densities. Individuals in extreme environments (dry, hot, acidic soils) had higher wood density than conspecifics elsewhere (+0.02 g cm -3 , ∼4% of the mean). Intraspecific environmental effects strongly tracked interspecific patterns (r = 0.83) but were only 20–30% as large and varied considerably among taxa. Individual plant wood density was difficult to predict (RMSE > 0.08 g cm -3 ; single-measurement R 2 = 0.59). We recommend (i) systematic within-species sampling for local applications, and (ii) expanded taxonomic coverage combined with integrative models for robust estimates across ecological scales.
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