Region-specific forest structure pathways reveal climate effects on old-growth tropical forest biomass. Other Scholarly Work

Depoortere, Pauline, Bauman, David, Fayolle, Adeline et al. (2026). Region-specific forest structure pathways reveal climate effects on old-growth tropical forest biomass. . SCIENTIFIC REPORTS, 16(1), 27381. 10.1038/s41598-026-61888-7

cited authors

  • Depoortere, Pauline; Bauman, David; Fayolle, Adeline; Phillips, Oliver; Bialic-Murphy, Lalasia; Zohner, Constantin M; Vander Linden, Arthur; Plumacker, Antoine; de Lame, Hugo; Liang, Jingjing; Reich, Peter B; Gamarra, Javier GP; Alberti, Giorgio; Hérault, Bruno; Picard, Nicolas; de-Miguel, Sergio; Nabuurs, Gert-Jan; Crowther, Thomas W; Paquette, Alain; Pretzsch, Hans; Wiser, Susan K; Zhou, Mo; Chen, Han YH; Verbeeck, Hans; De Cannière, Charles; Sullivan, Martin JP; Poorter, Lourens; Ponette, Quentin; Bauters, Marijn; Deblauwe, Vincent; Keppel, Gunnar; Brearley, Francis Q; Zo-Bi, Irié Casimir; Ouattara, Tiodionwa Abdoulaye; Lawes, Michael J; Bongers, Frans; Meave, Jorge A; Schulze, Mark; Ngoh, Michael Lyonga; Ter Steege, Hans; Homeier, Jürgen; Azihou, Akomian Fortuné; Trethowan, Liam; Slik, JW Ferry; Derroire, Géraldine; Bonal, Damien; Laurance, William F; Hemp, Andreas; Murdjoko, Agustinus; Aguirre-Gutiérrez, Jesús; Kintamani, Endang; White, Lee; Lewis, Simon L; Hector, Andrew; Amani, Christian; Andrade, Ana; Angbonga, Albert; Aragão, Luiz; Kurian, Ayushi; Allah Barem, Félix; Almeyda Zambrano, Angelica M; Alvarez-Davila, Esteban; Alvarez-Loayza, Patricia; Amstrong, Elisée; Araujo-Murakami, Alejandro; Arroyo, Luzmila; Baker, Timothy R; Bako, Ousmane; Bánki, Olaf; Baraloto, Christopher; Barbier, Nicolas; Barroso, Jorcely Gonçalves; Bassama, Patrick; Beeckman, Hans; Benu, Nithanel Mikael Hendrik; Bihiya, Hervé; Birnbaum, Philippe; Bitariho, Robert; Boeckx, Pascal; Boekee, Kelly; Bogaert, Jan; Böhning-Gease, Katrin; Boyemba, Faustin; Brandão da Cunha, Hilândia; Brienen, Roel; Briseño-Reyes, Jaime; Broadbent, Eben N; Camargo, Jose Luis; Cassart, Benoît; Cazzolla Gatti, Roberto; Chave, Jérôme; Chuyong, George; Clark, David B; Clark, Connie; Collalti, Alessio; Collins, Murray; Cornejo Valverde, Fernando; Corral-Rivas, Jose Javier; Couteron, Pierre; Cuni-Sanchez, Aida; da Costa, Lôla; Daniel Soto, Jose; Dar, Ashaq Ahmad; Dar, Javid Ahmad; Dauby, Gilles; de Haulleville, Thales; Di Fiore, Anthony; Diisi, John; Djuikouo K, Marie-Noel; Dolezal, Jiri; Dongmo, Narcisse; Doucet, Jean-Louis; Droissart, Vincent; Engel, Julien; Engone Obiang, Nestor Laurier; Espinosa, Santiago; Eyre, Teresa; Fauset, Sophie; Feldpausch, Ted R; Fischer, Markus; Gajapersad, Krisna; Girmansyah, Deden; Gloor, Emanuel; Gomes do Amaral, Ieda; Gonmadje, Christelle Flore; Grieco, Elisa; Grogan, James; Habonayo, Richard; Harris, David J; Honorio Coronado, Eurídice; Huamantupa-Chuquimaco, Isau; Hubau, Wannes; Jansen, Patrick A; Jeffery, Kathryn J; Jumbam, Blaise; Kanda, Naveen Babu; Kamdem, Narcisse; Kasongo Yakusu, Emmanuel; Katembo, John; Kayijamahe, Charles; Kearsley, Elizabeth; Kenfack, David; Khan, Mohammed Latif; Killeen, Timothy; Kothandaraman, Subashree; Kougue, Ronald; Kumar, Amit; Kuswandi, Relawan; Labrière, Nicolas; Lasso, David; Laurance, Susan; Leal, Miguel; Leblanc, Hugo; Libalah, Moses; Lisingo, Janvier; Malhi, Yadvinder; Marimon, Beatriz S; Marimon Junior, Ben Hur; Marshall, Andrew R; Martin, Emanuel H; Martin-Ducup, Olivier; Mbasi, Michel M; Mbayu, Faustin; Mendoza, Casimiro; Mendoza Polo, Irina; Mofack, Gislain; Monteagudo-Mendoza, Abel; Mtui, Arafat; Muthuramkumar, S; Narayanan, Ayyappan; Nava-Miranda, María Guadalupe; Neill, David; Neldner, Victor John; Tchatchouang, Eric Ngansop; Ngoula, Fernandez; Ngugi, Michael R; Sainge, Moses Nsanyi; Núñez Vargas, Percy; Ortiz-Malavassi, Edgar; Pallqui Camacho, Nadir; Pandi, Vivek; Parada Gutierrez, Germaine Alexander; Pardo, Guido; Parthasarathy, Narayanaswamy; Pelissier, Raphael; Pfautsch, Sebastian; Pijanowski, Bryan C; Piotto, Daniel; Pipoly, John; Pitman, Nigel; Ploton, Pierre; Poulsen, John R; Ramesh, BR; Ramirez Arevalo, Freddy; Ramírez-Angulo, Hirma; Rasingam, L; Réjou-Méchain, Maxime; Restrepo Correa, Zorayda; Spironello, Wilson Roberto; Rodrigues de Souza, Cintia; Rodriguez, Lily O; Rolim, Samir; Roopsind, Anand; Rovero, Francesco; Sagang, Le Bienfaiteur; Saikia, Purabi; Salis, Antonello; Salla, Benoit Patrick; Silva Espejo, Javier Eduardo; Silveira, Marcos; Simo-Droissart, Murielle; Sirri, Nelly; Sonké, Bonaventure; Sundarapandian, Somaiah; Swaine, Michael; Swanepoel, Ben; Taedoumg, Hermann; Tcheferi, Imma; Terborgh, John; Thomas, Duncan; Thomas, Raquel; Tshibamba Mukendi, John; Umunay, Peter M; Valencia, Renato; Valenzuela Gamarra, Luis; Valle Ferreira, Leandro; van der Heijden, Geertje; Vasquez Martinez, Rodolfo; Vega-Nieva, José Daniel; Vilanova, Emilio; Vilchez Alvarado, Braulio; Vinceti, Barbara; Vleminckx, Jason; von Gadow, Klaus; Vos, Vincent Antoine; Wasingya, Eric; Watson, James; Wortel, Verginia; Zagt, Roderick; Zébazé, Donatien; ForestPlots.net; GFBI; Bastin, Jean-François

abstract

  • Old-growth tropical forests store vast amounts of carbon in their aboveground biomass (AGB), yet the relative roles of abiotic factors such as climate, soil, and topography in governing its spatial distribution remain poorly understood. In particular, the degree to which climate acts on AGB through forest structure is still poorly quantified at the pantropical scale. Using a pantropical dataset of more than 2,000 old-growth forest plots and a structure-explicit framework, we assess how climate influences AGB through its effects on four structural attributes: basal area, mean diameter, stem density, and basal area-weighted wood density. We find that climate shapes AGB primarily through its effects on forest structure. However, structural attributes respond to climate in opposite directions, so climate's net effect on AGB largely cancels out, and no clear climate-AGB relationship emerges across tropical regions. Moreover, only wood density responds consistently, decreasing with annual precipitation and increasing with precipitation seasonality, whereas all other attributes respond to climate differently from one region to another. This geographical variation further obscures any global climatic signal on AGB and points to the role of biogeographic history in shaping forest structure. Our findings highlight the central role of the climate-structure nexus in explaining AGB variation, and call for structure-explicit models to improve carbon stock predictions and inform climate adaptation strategies.

publication date

  • September 1, 2026

published in

keywords

  • Biomass
  • Carbon
  • Climate
  • ForestPlots.net
  • Forests
  • GFBI
  • Trees
  • Tropical Climate

Digital Object Identifier (DOI)

Medium

  • Electronic

start page

  • 27381

volume

  • 16

issue

  • 1