Divergent Subtropical Forest Functional and Structural Responses to the 2022 Yangtze River Extreme Drought
作者:Baoni Li, Junguo Liu, Dashan Wang, Xia Liu, Shijing Liang, Shuyu Zhang, Guoqing Gong, Ling Zeng, Zhilin Guo, Jianhuai Ye, Chen Wang, Zhenzhong Zeng · 发表于:Journal of Geophysical Research Biogeosciences · 年份:2026 · DOI:10.1029/2025jg009291 · 研究领域:Remote Sensing in Agriculture、Plant Water Relations and Carbon Dynamics、Leaf Properties and Growth Measurement
Abstract As global warming intensifies, humid ecosystems are increasingly exposed to unexpected extreme droughts. However, it remains unclear how ecosystem functions, such as greenness and photosynthesis, and structures, such as leaf area, respond to such events and whether they decouple. We investigated the record‐breaking 2022 growing‐season drought in the humid Yangtze River Basin, where precipitation dropped ∼50% below average. Here we analyzed anomalies of remote sensing normalized difference vegetation index (NDVI) and solar‐induced fluorescence (SIF) to indicate ecosystem functional responses, and leaf area index (LAI) to represent ecosystem structural responses. We applied machine learning models and SHapley Additive exPlanations (SHAP) analysis to attribute these responses to hydroclimatic anomalies and further examine topographic effects. Results indicate a striking divergence of ecosystem functional and structural responses, with NDVI decreasing by 8.4% and SIF declining by 2.2%, while LAI increasing by 1.8% relative to history (2001–2022). Notably, subtropical forest LAI surged by 9.8%, despite a marked decline in NDVI and SIF. Leaf growth was enhanced especially at higher elevations with dense canopies and abundant antecedent soil moisture. Energy conditions, that is, air temperature, vapor pressure deficit, and solar radiation, were found to strongly regulate ecosystem responses to drought. These results imply that humid ecosystems can sustain structural growth ...