Increasing tree size across Amazonia.
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Climate change and increasing availability of resources such as carbon dioxide are modifying forest functioning worldwide, but the effects of these changes on forest structure are unclear. As additional resources become available, for example, through CO2 fertilization or nitrogen deposition, large trees, with greater access to light, may be expected to gain further advantages. Conversely, smaller light-suppressed trees might benefit more if their light compensation point changes, while bigger trees may be the most negatively impacted by increasing heat and drought. We assessed recent changes in the structure of Earth's largest tropical forest by analysing 30 years of Amazonian tree records across 188 mature forest plots. We find that, at a stand level, trees have become larger over time, with mean tree basal area increasing by 3.3% per decade (95% CI 2.4; 4.1). Larger trees have increased in both number and size, yet we observed similar rates of relative size gain in large and small trees. This evidence is consistent with a resource-driven boost for larger trees but also a reduction in suppression among smaller trees. These results, especially the persistence and consistency of tree size increases across Amazonian forest plots, communities and regions, indicate that any negative impacts of climate change on forests and large trees here have so far been mitigated by the positive effects of increased resources.
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Acknowledgements: This paper is a product of the RAINFOR network and other networks and individuals contributing to long-term forest science and monitoring in South American forests, with their combined records collected over decades and curated at ForestPlots.net. As well as investigators and field leaders included here, we gratefully acknowledge the efforts of hundreds of additional botanists, technicians, field assistants and communities who have contributed to installing, measuring and identifying trees across South American forests. RAINFOR and ForestPlots.net have been supported by numerous people and grants since their inception. For their contributions to developing the RAINFOR network and its antecedents, we are also indebted to J. Lloyd, as well as P. Alvarez Loayza, W. Betian, A. Lima, J. Singh and M. Steininger, and our late colleagues E. Armas, T. Erwin, T. Lovejoy, A. Gentry, D. Neill, S. Patiño, A. Peña Cruz and J.-P. Veillon. For supporting RAINFOR, we thank the European Research Council (ERC Advanced Grant 291585—‘T-FORCES’), the Gordon and Betty Moore Foundation (1656 ‘RAINFOR’ and ‘MonANPeru’), the European Union’s Fifth, Sixth and Seventh Framework Programme (EVK2-CT-1999-00023—‘CARBONSINK-LBA’, 283080—‘GEOCARBON’, 282664—‘AMAZALERT), the Natural Environment Research Council (NERC) (NE/ D005590/1—‘TROBIT’, NE/F005806/1—‘AMAZONICA’, E/M0022021/1—‘PPFOR’), several NERC Urgency and New Investigators grants, the NERC/State of São Paulo Research Foundation (FAPESP) consortium grants ‘BIO-RED’ (NE/N012542/1), ‘ECOFOR’ (NE/K016431/1, 2012/51872-5, 2012/51509-8), ‘ARBOLES’ (NE/S011811/1, FAPESP 2018/15001-6), Brazilian National Research Council (PELD/CNPq 403710/2012-0), the Royal Society (Global Challenges Awards ICA/R1/180100—‘FORAMA’), the National Geographic Society, US National Science Foundation (DEB 1754647) and Colombia’s Colciencias. We thank the National Council for Science and Technology Development of Brazil (CNPq) for support to the Cerrado/Amazonia Transition Long-Term Ecology Project (PELD/441244/2016-5) the FATE project (03/12595-7) and several Productivity Grants. ForestPlots.net is a meta-network and cyber-initiative developed at the University of Leeds that unites permanent plot records and supports tropical forest scientists. We acknowledge the contributions of the ForestPlots.net Collaboration and Data Request Committee (including B. Sonké, C. Ewango, J. Muledi and L. Qie) in facilitating this project and associated data management. The development of ForestPlots.net and curation of data have been funded by several grants including NE/B503384/1, NE/N012542/1—‘BIO-RED’, ERC Advanced Grant 291585—‘T-FORCES’, NE/F005806/1—‘AMAZONICA’, NE/N004655/1—‘TREMOR’, NERC New Investigators Awards, the Gordon and Betty Moore Foundation (‘RAINFOR’, ‘MonANPeru’), ERC Starter Grant 758873—‘TreeMort’, EU Framework 6, a Royal Society University Research Fellowship and a Leverhulme Trust Research Fellowship. R.B.M. was funded by the NERC Panorama Doctoral Training Partnership (NE/S007458/1) and a grant from the Leverhulme Trust (RPG-2023-169). A.E.-M. is supported by the UK Research and Innovation (UKRI) Understanding Memory of UK Treescapes for Better Resilience and Adaptation (MEMBRA) (NE/V021346/1), the Royal Society (RGS\R1\221115), the NERC-National Science Foundation (NSF) Gigante project (758873), the Centre for the Synthesis and Analysis of Biodiversity (CESAB) Syntreesys project and AmazonFACE funds from Foreign, Commonwealth & Development Office (FCDO) through MetOffice.
Funder: European Union’s Fifth, Sixth and Seventh Framework Programme (EVK2-CT-1999-00023 – ‘CARBONSINK-LBA’, 283080 – ‘GEOCARBON’, 282664 – ‘AMAZALERT) European Research Council (ERC Advanced Grant 291585 – ‘T-FORCES’) NERC/State of São Paulo Research Foundation (FAPESP) consortium grants ‘BIO-RED’ (NE/N012542/1), ‘ECOFOR’ (NE/K016431/1, 2012/51872-5, 2012/51509-8), ‘ARBOLES’ (NE/S011811/1, FAPESP 2018/15001-6) Brazilian National Research Council (PELD/CNPq 403710/2012-0) Royal Society (Global Challenges Awards ICA/R1/180100 - ‘FORAMA’)
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2055-0278
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RCUK | Natural Environment Research Council (NERC) (NE/S007458/1)

