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From the Cover: Nonlinear interacting responses to climate limit grassland production under global change

机译:从封面开始:全球变化下气候限制草原生产的非线性相互作用响应

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摘要

Global changes in climate, atmospheric composition, and pollutants are altering ecosystems and the goods and services they provide. Among approaches for predicting ecosystem responses, long-term observations and manipulative experiments can be powerful approaches for resolving single-factor and interactive effects of global changes on key metrics such as net primary production (NPP). Here we combine both approaches, developing multidimensional response surfaces for NPP based on the longest-running, best-replicated, most-multifactor global-change experiment at the ecosystem scale—a 17-y study of California grassland exposed to full-factorial warming, added precipitation, elevated CO2, and nitrogen deposition. Single-factor and interactive effects were not time-dependent, enabling us to analyze each year as a separate realization of the experiment and extract NPP as a continuous function of global-change factors. We found a ridge-shaped response surface in which NPP is humped (unimodal) in response to temperature and precipitation when CO2 and nitrogen are ambient, with peak NPP rising under elevated CO2 or nitrogen but also shifting to lower temperatures. Our results suggest that future climate change will push this ecosystem away from conditions that maximize NPP, but with large year-to-year variability.
机译:气候,大气成分和污染物的全球变化正在改变生态系统及其提供的商品和服务。在预测生态系统响应的方法中,长期观察和操作实验可能是解决全球变化对关键指标(如净初级生产(NPP))的单因素和交互作用的有效方法。在这里,我们将这两种方法结合起来,基于在生态系统规模上运行时间最长,重复性最强,最多因素的全球变化实验,为NPP开发多维响应面,这是一项对加利福尼亚草原进行全要素变暖的17年研究,增加了沉淀,二氧化碳含量升高和氮沉降。单因素和交互效应不是时间依赖性的,这使我们能够将每年作为单独的实验实现进行分析,并提取NPP作为全球变化因素的连续函数。我们发现了一个山脊状的响应面,当CO2和氮气处于环境中时,NPP在温度和降水的响应下呈驼峰状(单峰),在提高的CO2或氮气下,NPP的峰值升高,但也移至较低的温度。我们的结果表明,未来的气候变化将使该生态系统远离使NPP最大化的条件,但年际差异很大。

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