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Exogenous N addition enhances the responses of gross primary productivity to individual precipitation events in a temperate grassland

机译:外源氮的添加增强了温带草原总初级生产力对单个降水事件的响应

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摘要

Predicted future shifts in the magnitude and frequency (larger but fewer) of precipitation events and enhanced nitrogen (N) deposition may interact to affect grassland productivity, but the effects of N enrichment on the productivity response to individual precipitation events remain unclear. In this study, we quantified the effects of N addition on the response patterns of gross primary productivity (GPP) to individual precipitation events of different sizes (Psize) in a temperate grassland in China. The results showed that N enrichment significantly increased the time-integrated amount of GPP in response to an individual precipitation event (GPPtotal), and the N-induced stimulation of GPP increased with increasing Psize. N enrichment rarely affected the duration of the GPP response, but it significantly stimulated the maximum absolute GPP response. Higher foliar N content might play an important role in the N-induced stimulation of GPP. GPPtotal in both the N-addition and control treatments increased linearly with Psize with similar Psize intercepts (approximately 5 mm, indicating a similar lower Psize threshold to stimulate the GPP response) but had a steeper slope under N addition. Our work indicates that the projected larger precipitation events will stimulate grassland productivity, and this stimulation might be amplified by increasing N deposition.
机译:降雨事件的幅度和频率(较大但较少)的预测未来变化和增强的氮(N)沉积可能会相互作用,从而影响草地生产力,但氮的富集对生产力对单个降水事件的响应的影响尚不清楚。在这项研究中,我们量化了氮的添加对中国温带草原不同初级降水量(Psize)的总初级生产力(GPP)响应模式的影响。结果表明,N富集显着增加了GPP的时间积分量,以响应单个降水事件(GPPtotal),并且N诱导的GPP刺激随着Psize的增加而增加。 N富集很少影响GPP响应的持续时间,但是它极大地刺激了最大绝对GPP响应。较高的叶面氮含量可能在N诱导的GPP刺激中起重要作用。 N加法和对照处理中的GPPtotal随Psize的增加而线性增加,Psize具有相似的Psize截距(大约5?mm,表明相似的Psize阈值较低,可以激发GPP响应),但在N加法下斜率更大。我们的工作表明,预计更大的降水事件将刺激草地生产力,而这种增加可能会因氮沉降增加而加剧。

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