TY - JOUR
T1 - Pantropical moist forests are converging towards a middle leaf longevity
AU - Xue, Meimei
AU - Yang, Xueqin
AU - Chen, Xiuzhi
AU - Ciais, Philippe
AU - Zhou, Liming
AU - Reich, Peter B.
AU - Xiao, Jingfeng
AU - Li, Xing
AU - Xiao, Xiangming
AU - Green, Julia K.
AU - Chen, Jing Ming
AU - Liu, Jane
AU - Shang, Jiali
AU - Luo, Xiangzhong
AU - Tian, Jie
AU - Liu, Hui
AU - Zhu, Peng
AU - Yan, Kai
AU - Fu, Xinyue
AU - Han, Liusheng
AU - Yuan, Wenping
AU - Wu, Chaoyang
N1 - Publisher Copyright:
© The Author(s) 2026.
PY - 2026/12
Y1 - 2026/12
N2 - Leaf longevity is a fundamental plant trait that largely explains ecosystem functional dynamics in global pantropical moist forests. However, the signs, magnitudes, and mechanisms of the spatiotemporal variations in leaf longevity with ongoing climate change are still lacking. Using both ground measurements and gridded leaf age-dependent leaf area index data, we map the continental-scale variability of annual mean leaf longevity across pantropical moist forests over 2001–2023. We find a biome-dependent and converging trend in leaf longevity under climate change. In Amazon and tropical Asia with long leaf longevity (> ~1.8 years), leaf longevity decreases due to rising temperature and intensified atmospheric dryness. In contrast, an increasing trend is observed in Congo and subtropical Asia where forests have short leaf longevity (<~1.8 years). These responses cause a convergence of pantropical short and long leaf longevity into a middle longevity range, with maximization of plant functional traits, photosynthesis, and species evenness, which are expected to better resist climate variability. Our study provides emerging evidence for large-scale structural and functional adaptions across pantropical moist forests and is helpful for predicting climate-driven risks to ecosystem stability.
AB - Leaf longevity is a fundamental plant trait that largely explains ecosystem functional dynamics in global pantropical moist forests. However, the signs, magnitudes, and mechanisms of the spatiotemporal variations in leaf longevity with ongoing climate change are still lacking. Using both ground measurements and gridded leaf age-dependent leaf area index data, we map the continental-scale variability of annual mean leaf longevity across pantropical moist forests over 2001–2023. We find a biome-dependent and converging trend in leaf longevity under climate change. In Amazon and tropical Asia with long leaf longevity (> ~1.8 years), leaf longevity decreases due to rising temperature and intensified atmospheric dryness. In contrast, an increasing trend is observed in Congo and subtropical Asia where forests have short leaf longevity (<~1.8 years). These responses cause a convergence of pantropical short and long leaf longevity into a middle longevity range, with maximization of plant functional traits, photosynthesis, and species evenness, which are expected to better resist climate variability. Our study provides emerging evidence for large-scale structural and functional adaptions across pantropical moist forests and is helpful for predicting climate-driven risks to ecosystem stability.
UR - https://www.scopus.com/pages/publications/105031190030
UR - https://www.scopus.com/pages/publications/105031190030#tab=citedBy
U2 - 10.1038/s41467-026-68989-x
DO - 10.1038/s41467-026-68989-x
M3 - Article
C2 - 41611716
AN - SCOPUS:105031190030
SN - 2041-1723
VL - 17
JO - Nature communications
JF - Nature communications
IS - 1
M1 - 2139
ER -