初级生产
环境科学
生态系统
草原
生产力
生态稳定性
生态学
理论(学习稳定性)
空间生态学
比例(比率)
时间尺度
氮气循环
大气科学
氮气
地理
计算机科学
生物
化学
地质学
机器学习
宏观经济学
经济
有机化学
地图学
作者
Guojiao Yang,Yann Hautier,Zijia Zhang,Xiao‐Tao Lü,Xingguo Han
摘要
Temporal stability of net primary productivity (NPP) is important for predicting the reliable provisioning of ecosystem services under global changes. Although nitrogen (N) addition is known to affect the temporal stability of aboveground net primary productivity (ANPP), it is unclear how it impacts that of belowground net primary productivity (BNPP) and NPP, and whether such effects are scale dependent. Here, using experimental N addition in a grassland, we found different responses of ANPP and BNPP stability to N addition at the local scale and that these responses propagated to the larger spatial scale. That is, N addition significantly decreased the stability of ANPP but did not affect the stability of BNPP and NPP at the two scales investigated. Additionally, spatial asynchrony of both ANPP and BNPP among communities provided greater stability at the larger scale and was not affected by N addition. Our findings challenge the traditional view that N addition would reduce ecosystem stability based on results from aboveground dynamics, thus highlighting the importance of viewing ecosystem stability from a whole system perspective.
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