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What have we learned from global change manipulative experiments in China? A meta-analysis

机译:我们从中国的全球变化操纵实验中学到了什么?元分析

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Although China has the largest population in the world, a faster rate of warming than the global average, and an active global change research program, results from many of the global change experiments in Chinese terrestrial ecosystems have not been included in global syntheses. Here, we specifically analyze the observed responses of carbon (C) and nitrogen (N) cycling in global change manipulative experiments in China, and compare these responses to those from other regions of the world. Most global change factors, vegetation types, and treatment methods that have been studied or used elsewhere in the world have also been studied and applied in China. The responses of terrestrial ecosystem C and N cycles to N addition and climate warming in China are similar in both direction and intensity to those reported in global syntheses. In Chinese ecosystems as elsewhere, N addition significantly increased aboveground (AGB) and belowground biomass (BGB), litter mass, dissolved organic C, net ecosystem productivity (NEP), and gross ecosystem productivity (GEP). Warming stimulated AGB, BGB and the root-shoot ratio. Increasing precipitation accelerated GEP, NEP, microbial respiration, soil respiration, and ecosystem respiration. Our findings complement and support previous global syntheses and provide insight into regional responses to global change.
机译:虽然中国拥有世界上最大的人口最大,但速度比全球平均水平更快,以及中国陆地生态系统的许多全球变化实验的结果,尚未包括在全球合成中的全球变化实验。在这里,我们专门分析了在中国全球变化操纵实验中的碳(c)和氮(n)循环的观察到的响应,并将这些反应与来自世界其他地区的响应进行比较。还研究了世界其他地方的全球变革因素,植被类型和治疗方法,并在中国申请。地面生态系统C和N循环到中国的N添加和气候变暖的响应在全球合成中报告的方向和强度方向上类似。在中国生态系统中作为别的地方,n加不是显着增加到地上(AGB)和下面的生物量(BGB),垃圾质量,溶解有机C,净生态系统生产力(NEP)和生态系统生产力(GEP)。变暖刺激促使AGB,BGB和根芽比。增加降水加速GEP,NEP,微生物呼吸,土壤呼吸和生态系统呼吸。我们的调查结果补充并支持以前的全球合成,并向区域答复提供了对全球变革的洞察力。

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