物候学
气候变化
温带气候
环境科学
亚热带
大气科学
全球变暖
北方的
纬度
生态系统
气候学
常绿
空间变异性
温带雨林
生态学
生物
地理
地质学
统计
大地测量学
数学
作者
Zhaofei Wu,Yongshuo H. Fu,Thomas W. Crowther,Shuxin Wang,Yufeng Gong,Jing Zhang,Yunpeng Zhao,Ivan A. Janssens,Josep Peñuelas,Constantin M. Zohner
摘要
Global warming is advancing the timing of spring leaf-out in temperate and boreal plants, affecting biological interactions and global biogeochemical cycles. However, spatial variation in spring phenological responsiveness to climate change within species remains poorly understood. Here, we investigated variation in the responsiveness of spring phenology to temperature (RSP; days to leaf-out at a given temperature) in 2754 Ginkgo biloba twigs of trees distributed across subtropical and temperate regions in China from 24°N to 44°N. We found a nonlinear effect of mean annual temperature on spatial variation in RSP, with the highest response rate at c. 12°C and lower response rates at warmer or colder temperatures due to declines in winter chilling accumulation. We then predicted the spatial maxima in RSP under current and future climate scenarios, and found that trees are currently most responsive in central China, which corresponds to the species' main distribution area. Under a high-emission scenario, we predict a 4-degree latitude shift in the responsiveness maximum toward higher latitudes over the rest of the century. The identification of the nonlinear responsiveness of spring phenology to climate gradients and the spatial shifts in phenological responsiveness expected under climate change represent new mechanistic insights that can inform models of spring phenology and ecosystem functioning.
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