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首页> 外文期刊>Plant and Soil >Nitrogen deposition increases susceptibility to drought - experimentalTI Nitrogen deposition increases susceptibility to drought - experimental evidence with the perennial grass Molinia caerulea (L.) Moench
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Nitrogen deposition increases susceptibility to drought - experimentalTI Nitrogen deposition increases susceptibility to drought - experimental evidence with the perennial grass Molinia caerulea (L.) Moench

机译:氮沉积增加了对干旱的敏感性-实验性TI氮沉积增加了对干旱的敏感性-多年生草Molinia caerulea(L.)Moench的实验证据

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Aims We investigated the response of the perennial grass Molinia caerulea (L.) Moench to combined effects of fertilization (N, P) and drought events. We hypothesized that N fertilization increases, and drought decreases productivity, but that N addition strengthens negative effects caused by drought. Methods Within a full-factorial 2-year greenhouse experiment we measured biomass productivity and allocation, tissue nutrient concentrations and nitrogen allocation patterns using N-15 as a tracer. Results N fertilization caused a strong increase in productivity, but effects of drought were almost insignificant. However, we found strongly interrelated, non-additive effects of fertilization and drought, expressed by a strong increase of necrotic tissue. Dead aboveground biomass showed the highest values for N and N-15. Conclusions Accelerated productivity of aboveground tissue under N fertilization resulted in increased evaporative demands and thus higher drought susceptibility. In addition N-15 allocation patterns showed that fertilization-drought treatments disenabled plants' control of their N allocation. Molinia was unable to withdraw leaf N during the dieback of aboveground tissue. Due to the lack of an adaptive strategy to the combined effects of fertilization and drought, increasing summer drought may weaken the competitive performance of species with traits comparable to those of Molinia in N-fertilized environments.
机译:目的我们调查了多年生禾草Molinia caerulea(L.)Moench对施肥(N,P)和干旱事件的综合影响。我们假设氮肥的施用量增加,而干旱会降低生产力,但是氮肥的添加会加剧干旱造成的负面影响。方法在一个全要素两年温室试验中,我们使用N-15作为示踪剂测量了生物量生产力和分配,组织养分浓度和氮分配模式。结果氮肥使生产力大大提高,但干旱的影响几乎没有意义。但是,我们发现坏死组织的大量增加表现出施肥和干旱之间密切相关的非累加效应。枯死的地上生物量显示N和N-15的最大值。结论氮肥下地上组织生产力的提高导致蒸发需求的增加,因此干旱敏感性更高。另外,N-15分配模式表明,施肥干旱处理使植物无法控制其N分配。莫利尼亚(Molinia)在地上组织死亡期间无法撤回叶片N。由于缺乏对施肥和干旱的综合影响的适应策略,夏季干旱加剧可能会削弱性状与氮肥环境中的莫利尼亚类似的物种的竞争性能。

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