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Greening of the land surface in the world's cold regions consistent with recent warming

机译:世界上绿化的土地表面的冷地区符合最近的变暖

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摘要

Global ecosystem function is highly dependent on climate and atmospheric composition, yet ecosystem responses to environmental changes remain uncertain. Cold, high-latitude ecosystems in particular have experienced rapid warming1, with poorly understood consequences2"4. Here, we use a satellite-observed proxy for vegetation cover—the fraction of absorbed photosynthetically active radiation5—to identify a decline in the temperature limitation of vegetation in global ecosystems between 1982 and 2012.We quantify the spatial functional response of maximum annual vegetation cover to temperature and show that the observed temporal decline in temperature limitation is consistent with expectations based on observed recent warming. An ensemble of Earth system models from the Coupled Model Intercomparison Project Phase 5 (CMIP5) mischaracterized the functional response to temperature, leading to a large overestimation of vegetation cover in cold regions. We identify a 16.4% decline in the area of vegetated land that is limited by temperature over the past three decades, and suggest an expected large decline in temperature limitation under future warming scenarios. This rapid observed and expected decline in temperature limitation highlights the need foran improved understanding of other limitations to vegetation growth in cold regions3,4'6, such as soil characteristics, species migration, recruitment, establishment, competition and community dynamics.
机译:全球生态系统功能是高度依赖气候和大气成分生态系统对环境变化的反应仍然不确定。特别是经历了快速warming1,知之甚少consequences2”4。使用一个satellite-observed代表植被覆盖了一部分吸收光合成活跃radiation5-to识别下降温度限制在全球的植被1982年和2012年之间的生态系统。空间的功能响应最大的年度植被温度和显示观察颞温度下降限制与预期一致最近观察到的变暖。系统模型的耦合模型相互比对项目阶段5 (CMIP5)mischaracterized功能响应温度,导致大量高估植被在寒冷的地区。植被的面积下降16.4%的土地受限于温度在过去三几十年,并建议一个预期大幅下降温度限制在未来气候变暖场景。强调了下降的温度限制份改进的理解需要对方限制植物生长在寒冷的regions3 4 6,如土壤特性,物种迁移,招聘,建立,竞争和社会动态。

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