冷量
休眠
物候学
环境科学
温带气旋
气候变化
航程(航空)
生长度日
限制
大气科学
生态学
植被(病理学)
生物
学位(音乐)
气候学
全球变暖
适应(眼睛)
气候变化
变化(天文学)
稀释
生态系统
生物多样性
气候模式
野外试验
作者
Rui Zhang,Fucheng Wang,Jinbin Zheng,Lei Chen,Hongshuang Gu,Yu Zhao,Yongshuo H. Fu,Yann Vitasse,Xinli Chen,Heikki Hänninen,Constantin M Zohner,Jianguo Wu
标识
DOI:10.1073/pnas.2531077123
摘要
Seasonal dormancy in extratropical trees is a critical adaptation that synchronizes growth with favorable climatic conditions. Traditionally, the effective chilling temperatures (ECT) required for dormancy release have been assumed to be fixed, ranging between 0 and 10 °C, based largely on studies in cold climates. However, whether the ECT range varies across diverse climatic regions remains unclear, limiting our ability to predict tree responses to climate change. Here, we quantify ECT variation using controlled experiments on 14 species and long-term phenological observations of 65 species across a ~3,000 km latitudinal gradient in China. Our experimental results show that the estimated upper ECT threshold increases by 0.27 ± 0.06 °C per decreasing degree of latitude, indicating an expansion of the ECT range toward higher temperatures in warmer climates. Our modeling analysis of long-term phenological records supports this trend, showing a comparable increase of 0.18 ± 0.02 °C per decreasing degree of latitude. These findings provide empirical evidence of latitudinal variation in ECT, offering insights into the evolutionary adaptations in shaping tree seasonal growth across diverse climates, challenging the traditional view of a fixed 0 to 10 °C range. Incorporating this adaptive variation into vegetation models and management strategies is crucial for improving predictions of forest phenology, productivity, and resilience under climate warming.
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