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Tropical tree growth driven by dry-season climate variability

  • Pieter A. Zuidema
  • , Flurin Babst
  • , Peter Groenendijk
  • , Valerie Trouet
  • , Abrham Abiyu
  • , Rodolfo Acuña-Soto
  • , Eduardo Adenesky-Filho
  • , Raquel Alfaro-Sánchez
  • , José Roberto Vieira Aragão
  • , Gabriel Assis-Pereira
  • , Xue Bai
  • , Ana Carolina Barbosa
  • , Giovanna Battipaglia
  • , Hans Beeckman
  • , Paulo Cesar Botosso
  • , Tim Bradley
  • , Achim Bräuning
  • , Roel Brienen
  • , Brendan M. Buckley
  • , J. Julio Camarero
  • Ana Carvalho, Gregório Ceccantini, Librado R. Centeno-Erguera, Julián Cerano-Paredes, Álvaro Agustín Chávez-Durán, Bruno Barçante Ladvocat Cintra, Malcolm K. Cleaveland, Camille Couralet, Rosanne D’Arrigo, Jorge Ignacio del Valle, Oliver Dünisch, Brian J. Enquist, Karin Esemann-Quadros, Zewdu Eshetu, Ze Xin Fan, M. Eugenia Ferrero, Esther Fichtler, Claudia Fontana, Kainana S. Francisco, Aster Gebrekirstos, Emanuel Gloor, Daniela Granato-Souza, Kristof Haneca, Grant Logan Harley, Ingo Heinrich, Gerd Helle, Janet G. Inga, Mahmuda Islam, Yu mei Jiang, Mark Kaib, Zakia Hassan Khamisi, Marcin Koprowski, Bart Kruijt, Eva Layme, Rik Leemans, A. Joshua Leffler, Claudio Sergio Lisi, Neil J. Loader, Giuliano Maselli Locosselli, Lidio Lopez, María I. López-Hernández, José Luís Penetra Cerveira Lousada, Hooz A. Mendivelso, Mulugeta Mokria, Valdinez Ribeiro Montóia, Eddy Moors, Cristina Nabais, Justine Ngoma, Francisco de Carvalho Nogueira Júnior, Juliano Morales Oliveira, Gabriela Morais Olmedo, Mariana Alves Pagotto, Shankar Panthi, Gonzalo Pérez-De-Lis, Darwin Pucha-Cofrep, Nathsuda Pumijumnong, Mizanur Rahman, Jorge Andres Ramirez, Edilson Jimmy Requena-Rojas, Adauto de Souza Ribeiro, Iain Robertson, Fidel Alejandro Roig, Ernesto Alonso Rubio-Camacho, Ute Sass-Klaassen, Jochen Schöngart, Paul R. Sheppard, Franziska Slotta, James H. Speer, Matthew D. Therrell, Benjamin Toirambe, Mario Tomazello-Filho, Max C.A. Torbenson, Ramzi Touchan, Alejandro Venegas-González, Ricardo Villalba, Jose Villanueva-Diaz, Royd Vinya, Mart Vlam, Tommy Wils, Zhe Kun Zhou
  • Wageningen University and Research
  • College of Agriculture and Life Sciences
  • University of Arizona
  • University of Campinas
  • World Agroforestry Centre (ICRAF)
  • National Autonomous University of Mexico UNAM
  • Regional University of Blumenau - FURB
  • Wilfrid Laurier University
  • University of São Paulo
  • Federal University of Lavras
  • Xishuangbanna Tropical Botanical Garden Chinese Academy of Sciences
  • University of Campania “Luigi Vanvitelli”
  • Royal Museum for Central Africa
  • Embrapa Forestry
  • NWCG Member Agency
  • Friedrich-Alexander-Universität Erlangen-Nürnberg
  • University of Leeds
  • Lamont-Doherty Earth Observatory
  • Instituto Pirenaico de Ecología (IPE-CSIC)
  • University of Coimbra, Centre for Functional Ecology
  • Instituto Nacional de Investigaciones Forestales, Agricolas y Pecuarias
  • University of Arkansas
  • Universidad Nacional de Colombia - Sede Medellín
  • Master School for Carpentry and Cabinetmaking
  • University of Arizona
  • Santa Fe Institute
  • University of Joinville Region ‐ UNIVILLE
  • Addis Ababa University
  • CCT-CONICET-Mendoza
  • Universidad Continental
  • Göttingen University
  • World Agroforestry Centre
  • Flanders Heritage Agency
  • University of Idaho
  • German Archaeological Institute DAI
  • Humboldt-University Berlin
  • GFZ – German Research Centre for Geosciences
  • Shahjalal University of Science and Technology
  • Czech University of Life Sciences Prague
  • US Fish and Wildlife Service
  • Nicolaus Copernicus University
  • Instituto Nacional de Innovación Agraria
  • South Dakota State University
  • Universidade Federal de Sergipe
  • Swansea University
  • Universidad Autónoma Agraria Antonio Narro
  • University of Trás-os-Montes and Alto Douro
  • Universidad Pedagógica y Tecnológica de Colombia
  • IHE Delft Institute for Water Education
  • VU University Amsterdam
  • The Copperbelt University
  • Laboratory of Ecology and Dendrology of the Federal Institute of Sergipe
  • Universidade do Vale do Rio dos Sinos
  • Universidade de Santiago de Compostela
  • Universidad Nacional de Loja
  • Universidad del Cauca
  • Universidad Mayor
  • Petrópolis
  • Freie Universität Berlin
  • Indiana State University
  • Department of Geography and the Environment
  • The Ohio State University
  • Johannes Gutenberg University
  • Van Hall Larenstein University of Applied Sciences
  • Fontys University of Applied Sciences

Research output: Contribution to journalArticlepeer-review

126 Citations (Scopus)

Abstract

Interannual variability in the global land carbon sink is strongly related to variations in tropical temperature and rainfall. This association suggests an important role for moisture-driven fluctuations in tropical vegetation productivity, but empirical evidence to quantify the responsible ecological processes is missing. Such evidence can be obtained from tree-ring data that quantify variability in a major vegetation productivity component: woody biomass growth. Here we compile a pantropical tree-ring network to show that annual woody biomass growth increases primarily with dry-season precipitation and decreases with dry-season maximum temperature. The strength of these dry-season climate responses varies among sites, as reflected in four robust and distinct climate response groups of tropical tree growth derived from clustering. Using cluster and regression analyses, we find that dry-season climate responses are amplified in regions that are drier, hotter and more climatically variable. These amplification patterns suggest that projected global warming will probably aggravate drought-induced declines in annual tropical vegetation productivity. Our study reveals a previously underappreciated role of dry-season climate variability in driving the dynamics of tropical vegetation productivity and consequently in influencing the land carbon sink.

Original languageEnglish
Pages (from-to)269-276
Number of pages8
JournalNature Geoscience
Volume15
Issue number4
DOIs
Publication statusPublished - Apr 2022

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 13 - Climate Action
    SDG 13 Climate Action

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