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Plant nitrogen uptake drives responses of productivity to nitrogen and water addition in a grassland

机译:植物氮的吸收驱动生产力对草地中氮和水的添加的响应

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Increased atmospheric nitrogen (N) deposition and altered precipitation regimes have profound impacts on ecosystem functioning in semiarid grasslands. The interactions between those two factors remain largely unknown. A field experiment with N and water additions was conducted in a semiarid grassland in northern China. We examined the responses of aboveground net primary production (ANPP) and plant N use during two contrasting hydrological growing seasons. Nitrogen addition had no impact on ANPP, which may be accounted for by the offset between enhanced plant N uptake and decreased plant nitrogen use efficiency (NUE). Water addition significantly enhanced ANPP, which was largely due to enhanced plant aboveground N uptake. Nitrogen and water additions significantly interacted to affect ANPP, plant N uptake and N concentrations at the community level. Our observations highlight the important role of plant N uptake and use in mediating the effects of N and water addition on ANPP.
机译:大气氮(N)沉积的增加和降水方式的改变对半干旱草原的生态系统功能产生了深远的影响。这两个因素之间的相互作用在很大程度上仍然未知。在中国北方的半干旱草原上进行了添加氮和水的田间试验。我们研究了两个相反的水文生长期的地上净初级生产力(ANPP)和植物氮利用的响应。氮的添加对ANPP没有影响,这可能是由于植物氮素吸收增加与植物氮素利用效率(NUE)降低之间的抵消所致。加水显着提高了ANPP,这主要是由于植物对地上氮的吸收增加。氮和水的添加在社区水平上显着相互作用,以影响ANPP,植物吸收氮和氮浓度。我们的观察结果突出了植物吸收和利用N在介导N和水添加对ANPP的影响中的重要作用。

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