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Effects of nitrogen-phosphorus imbalance on plant biomass production: a global perspective

机译:氮磷失衡对植物生物质生产的影响:全球视角

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摘要

Background and aimsUnparalleled inputs of anthropogenic nitrogen (N) and phosphorus (P) cause a strong N-P imbalance in terrestrial ecosystems. However, the effects of N-P imbalance on plant biomass production remains unclear.MethodsGiven that tissue N:P ratio may serve as an indicator of plant N or P limitations, we compiled a dataset reporting aboveground biomass (AGB) and tissue N:P ratio simultaneously from worldwide N addition experiments and explored the relationship between the responses of AGB and tissue N:P ratio to N enrichment.ResultsThe N-induced changes in AGB exhibited an asymptotic relationship (i.e., Michaelis-Menten function) with changes in tissue N:P ratio, indicating a progressive P limitation with increasing N. Our results further revealed that plant N and P status was related to the changes in soil inorganic N and P concentrations. Soil N increased while soil P remained unchanged with increasing N rate, thus resulting in an unbalanced soil N and P as N continues to increase.ConclusionsThis study is the first to report the influences of human-induced N-P imbalance on plant biomass production at the global scale. The biomass-N:P ratio relationship needs to be considered for reliable predictions of the future global carbon dynamics under global change.
机译:背景和AIMS不齐的人为氮(N)和磷(P)引起陆地生态系统的强劲N-P不平衡。然而,NP不平衡对植物生物质产生的影响仍未清除。方法N:P比率可以用作植物N或P限制的指标,我们编译了报告地上生物量(AGB)和组织N:P比率的数据集从全球n个加法实验中探讨了AGB和组织N:P比于N念珠菌的关系。促进AGB的N诱导的变化表现出渐近关系(即MICHAELIS-MENTen功能),组织N:P的变化比例,表示随着N增加的逐渐增加的限制。我们的结果进一步揭示了植物N和P状态与土壤无机N和P浓度的变化有关。土壤n增加,而土壤P随着N的增加而保持不变,因此导致不平衡的土壤N和P继续增加。结论性研究是第一个报告人类诱导的NP失衡对全球植物生物量产生的影响。规模。需要考虑生物量-N:P比率关系,以便在全球变化下对未来全球碳动力学的可靠预测。

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