Family imprint reveals basin-wide patterns of Amazon forest embolism resistance
Publication date
2026-12
Authors
Tavares, Julia Valentim
Gloor, Emanuel
Silva, Thiago S.F.
Oliveira, Rafael S.
Coelho de Souza, Fernanda
Signori-Müller, Caroline
Diniz, Francisco Carvalho
Pereira, Luciano
Acosta, Martin
Gilpin, Martin
Editors
Advisors
Supervisors
Document Type
Article
Metadata
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cc_by
Abstract
Amazon rainforests face intensifying water stress due to increases in vapour pressure deficit and changing hydrological regimes. Embolism resistance (Ψ50) is a critical metric of tree survival under drought conditions, it is defined as a plant’s capacity to resist disruption of xylem water flow due to air bubble formation from water stress. However, measurements of Ψ50 are only available for a limited number of Amazon locations and species. Conversely, data on forest taxonomic composition are abundant across Amazonia, and if Ψ50 is conserved phylogenetically, these data could provide a way to scale-up drought resistance patterns. Here we evaluate Ψ50 measurements across non-flooded Amazonian tree taxa and reveal a moderate phylogenetic signal, with phylogenetic conservatism evident at the family-level. Notably, Fabaceae is amongst the most embolism-resistant tree families in Amazonia. Leveraging the phylogenetic signal we use species composition and tree size data from 448 forest plots across Amazonia to produce a macroecological assessment of Amazonian vulnerability to embolism. The resulting estimate spatial pattern reveals that forests in the Brazilian and Guiana Shield regions, where Fabaceae abundance is high, show strong resistance to embolism. In contrast, tree communities in Western Amazonia appear more vulnerable to embolism, suggesting a reduced capacity to withstand future drought conditions.
Keywords
General Chemistry, General Biochemistry,Genetics and Molecular Biology, General, General Physics and Astronomy
Citation
Tavares, J V, Gloor, E, Silva, T S F, Oliveira, R S, Coelho de Souza, F, Signori-Müller, C, Diniz, F C, Pereira, L, Acosta, M, Gilpin, M, Marca Zevallos, M J, Salas Yupayccana, C A, Perez-Mullisaca, F M, Jancoski, H, Scalon, M C, Schwantes Marimon, B, Marimon Junior, B H, Malhi, Y, Oliveras Menor, I, Rowland, L, Meir, P, Bittencourt, P, Carlos Lola da Costa, A, Santos, J A R, Teixeira de Oliveira, R, Esquivel-Muelbert, A, Álvarez-Dávila, E, Alexiades, M N, de Oliveira, E A, Andrade, A, Aragão, L, Araujo-Murakami, A, Arroyo, L, Aymard, G, Barroso, J G, Bonal, D, Brienen, R, Céron, C, Camargo, J L, Silva, R, Castro, W, Chave, J, Comiskey, J, Daly, D C, Derroire, G, Disney, M, Dourdain, A, Fauset, S, Feldpausch, T, Flores Llampazo, G, Hérault, B, Hernández, L, Higuchi, N, Honorio Coronado, E N, Jimenez-Rojas, E, Kalamandeen, M, Laurance, S, Laurance, W, Lewis, S, Lima, A S, Monteagudo-Mendoza, A, Morandi, P, NúñezVargas, P, Neill, D, Palacios, W, Parada Gutierrez, A, Pardo-Molina, G, Peñuela-Mora, M C, Pitman, N, Rojas, R, Prieto, A, Réjou-Méchain, M, Ramírez-Angulo, H, Cerruto Ribeiro, S, Ruokolainen, K, Salomão, R P, Serrano, J, Sierra, R, Ruschel, A R, Silveira, M, ter Steege, H, Terborgh, J, Valenzuela Gamarra, L, Vásquez Martinez, R, Vieira, I, Vilanova Torre, E, Vos, V A, Wang, O, Young, K, Muscarella, R, Dexter, K G, Baker, T R, Phillips, O L, Mencuccini, M & Galbraith, D 2026, 'Family imprint reveals basin-wide patterns of Amazon forest embolism resistance', Nature Communications, vol. 17, no. 1, 2073. https://doi.org/10.1038/s41467-026-69892-1