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Cross-Site Comparisons of Dryland Ecosystem Response to Climate Change in the US Long-Term Ecological Research Network

机译:美国长期生态研究网络旱地生态系统对气候变化响应的跨站点比较

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摘要

Long-term observations and experiments in diverse drylands reveal how ecosystems and services are responding to climate change. To develop generalities about climate change impacts at dryland sites, we compared broadscale patterns in climate and synthesized primary production responses among the eight terrestrial, nonforested sites of the United States Long-Term Ecological Research (US LTER) Network located in temperate (Southwest and Midwest) and polar (Arctic and Antarctic) regions. All sites experienced warming in recent decades, whereas drought varied regionally with multidecadal phases. Multiple years of wet or dry conditions had larger effects than single years on primary production. Droughts, floods, and wildfires altered resource availability and restructured plant communities, with greater impacts on primary production than warming alone. During severe regional droughts, air pollution from wildfire and dust events peaked. Studies at US LTER drylands over more than 40 years demonstrate reciprocal links and feedbacks among dryland ecosystems, climate-driven disturbance events, and climate change.
机译:对不同干旱地区的长期观察和实验揭示了生态系统和服务如何应对气候变化。为了对旱地气候变化影响形成一般性认识,我们比较了气候的广泛模式,并综合了位于温带(西南和中西部)和极地(北极和南极)地区的美国长期生态研究 (US LTER) 网络的八个陆地非森林地点的初级生产响应。近几十年来,所有地点都经历了变暖,而干旱在区域范围内呈多年代际阶段的变化。多年潮湿或干燥条件对初级生产的影响大于单年。干旱、洪水和野火改变了资源可用性并重组了植物群落,对初级生产的影响比单独的变暖更大。在严重的区域性干旱期间,野火和沙尘事件造成的空气污染达到顶峰。40 多年来对美国 LTER 旱地的研究表明,旱地生态系统、气候驱动的干扰事件和气候变化之间存在相互联系和反馈。

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