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Long-term nitrogen loading alleviates phosphorus limitation in terrestrial ecosystems

机译:长期氮荷载量减轻了陆地生态系统中的磷局限

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摘要

Increased human-derived nitrogen (N) deposition to terrestrial ecosystems has resulted in widespread phosphorus (P) limitation of net primary productivity. However, it remains unclear if and how N-induced P limitation varies over time. Soil extracellular phosphatases catalyze the hydrolysis of P from soil organic matter, an important adaptive mechanism for ecosystems to cope with N-induced P limitation. Here we show, using a meta-analysis of 140 studies and 668 observations worldwide, that N stimulation of soil phosphatase activity diminishes over time. Whereas short-term N loading (<= 5 years) significantly increased soil phosphatase activity by 28%, long-term N loading had no significant effect. Nitrogen loading did not affect soil available P and total P content in either short- or long-term studies. Together, these results suggest that N-induced P limitation in ecosystems is alleviated in the long-term through the initial stimulation of soil phosphatase activity, thereby securing P supply to support plant growth. Our results suggest that increases in terrestrial carbon uptake due to ongoing anthropogenic N loading may be greater than previously thought.
机译:增加人衍生的氮气(N)沉积对陆地生态系统导致缺乏磷(P)的净初级生产率的限制。但是,如果和N诱导的P限制随着时间的推移,则仍然不清楚。土壤细胞外磷酸酶催化来自土壤有机质的P的水解,是一种应对N诱导的P限制的生态系统的重要自适应机制。在这里,我们展示了使用140项研究的META分析和全球668个观察结果,N刺激土壤磷酸酶活性随着时间的推移而减少。然而,短期n负载(<= 5年)将土壤磷酸酶活性显着提高28%,长期N负载无显着效果。在短期或长期研究中,氮负载不影响土壤可用的P和总P含量。这些结果表明,通过对土壤磷酸酶活性的初始刺激,在长期内缓解了生态系统中的N诱导的P限制,从而确保了P供应支持植物生长。我们的研究结果表明,由于持续的人为N负载导致的陆地碳吸收增加可能大于先前认为。

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