绿化
弹簧(装置)
背景(考古学)
环境科学
全球变暖
气候学
降水
气候敏感性
大气科学
气候变化
地质学
气候模式
地理
生物
工程类
气象学
生态学
机械工程
考古
作者
Jialing Li,Chaoyang Wu,Yongguang Zhang,Josep Peñuelas,L. Liu,Quansheng Ge
标识
DOI:10.1073/pnas.2319581121
摘要
The Tibetan Plateau, recognized as Earth’s third pole and among the most responsive regions to climate shifts, profoundly influences regional and even global hydrological processes. Here, we discerned a significant weakening in the influence of temperature on the initiation of surface freeze–thaw cycle (the Start of Thawing, SOT), which can be ascribed to a multitude of climatic variables, with radiation emerging as the most pivotal factor. Additionally, we showed that the diminishing impact of warming on SOT yields amplified soil moisture within the root zone. This, in turn, fosters a greening third pole with increased leaf area index and solar-induced chlorophyll fluorescence. We further showed that current Earth system models failed to reproduce the linkage between weakened sensitivity and productivity under various shared socioeconomic pathways. Our findings highlight the dynamic shifts characterizing the influence of climate warming on spring freeze–thaw process and underscore the profound ecological implications of these changes in the context of future climate scenarios.
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