Tropical forests are facing increasing risks of exposure to critical temperature thresholds

成果类型:
Article
署名作者:
van Tiel, Nina; Lenczner, Gaston; Rao, Mukund P.; Grossiord, Charlotte; Tuia, Devis
署名单位:
Swiss Federal Institutes of Technology Domain; Ecole Polytechnique Federale de Lausanne; Columbia University; University of Barcelona; Swiss Federal Institutes of Technology Domain; Ecole Polytechnique Federale de Lausanne
刊物名称:
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
ISSN/ISSBN:
0027-8424; 1091-6490
DOI:
10.1073/pnas.2528622123
发表日期:
2026-07-14
页码:
e2528622123
关键词:
tropical tree species thermal safety margins heat tolerance SPECIES DISTRIBUTION MODELS Remote sensing heat plants
摘要:
Understanding how close tropical tree species are to critical temperature thresholds that might impede photosynthetic activity is vital in a world where heat waves have become more severe and frequent. Using remotely sensed surface temperature and species distribution maps, we studied the spatiotemporal variation in the thermal safety margins (TSM, i.e., the difference between Tcrit, the critical photosynthetic temperature, and the maximum canopy temperature) of 208 tropical tree species in South America, Southeast Asia, and Central Africa during the period 2001-2020. Despite overall high-temperature tolerance with an average Tcrit of 46.1 degrees C, we observed a consistent decline in the TSM of tropical forests across the globe. The average pantropical TSM decline was 0.4 degrees C per decade, with the strongest decline in South America (0.5 degrees C per decade). Over the 20-y period, areas that experienced canopy temperatures surpassing the average Tcrit across reported species increased from 43 Mha to 57 Mha in the tropics, representing 4% of the studied area. This number increases to 10% when computing areas where temperatures have surpassed the Tcrit of the most vulnerable reported species. When considering future trends, as predicted by Earth System Models under medium-to-high emission scenarios, average Tcrit may be exceeded in an area of 83 Mha by 2050 and 160 Mha by 2100 (over 10% of the studied area), suggesting major feedback to the global carbon cycle and the world's biodiversity.
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