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陆地生态系统中养分限制在多个时间尺度上的出现和维持。

Emergence and maintenance of nutrient limitation over multiple timescales in terrestrial ecosystems.

机构信息

Department of Ecology and Evolutionary Biology, Princeton University, Princeton, New Jersey 08544, USA.

出版信息

Am Nat. 2009 Feb;173(2):164-75. doi: 10.1086/595749.

Abstract

Nutrient availability often limits primary production, yet the processes governing the dynamics of nutrient limitation are poorly understood. In particular, plant-available (e.g., nitrate) versus plant-unavailable (e.g., dissolved organic nitrogen) nutrient losses may have qualitatively different impacts on nutrient limitation. We examine processes controlling equilibrium and transient nutrient dynamics at three separate timescales in a model of a nutrient cycling through plants and soil. When the only losses are from the plant-available nutrient pool, nutrient limitation at a long-term equilibrium is impossible under a wide class of conditions. However, plant biomass will appear to level off on a timescale controlled by plant nutrient turnover (years in grasslands, decades to centuries in forests), even though it can grow slowly forever. Primary production can be nutrient limited in the long-term when there are losses of plant-unavailable nutrients or when the mineralization flux saturates with increasing detrital mass. The long timescale required for soil nutrient buildup is set by the plant-unavailable loss rate (centuries to millennia). The short timescale (hours to days) at which available nutrients in the soil equilibrate in the model is controlled by biotic uptake. These insights into processes controlling different timescales in terrestrial ecosystems can help guide empirical and experimental studies.

摘要

养分的可利用性通常会限制初级生产力,但控制养分限制动态的过程仍知之甚少。特别是,植物可利用(如硝酸盐)与植物不可利用(如溶解态有机氮)的养分损失可能对养分限制产生定性不同的影响。我们在一个通过植物和土壤进行养分循环的模型中,在三个不同的时间尺度上研究了控制平衡和瞬态养分动态的过程。当唯一的损失来自植物可利用养分库时,在广泛的条件下,长期平衡中的养分限制是不可能的。然而,植物生物量将在由植物养分周转率控制的时间尺度上趋于平稳(草原上数年,森林中数十年到数百年),尽管它可以永远缓慢生长。当存在植物不可利用养分的损失或随着碎屑质量的增加而使矿化通量饱和时,长期来看,初级生产力可能会受到养分限制。土壤养分积累所需的长时间尺度由植物不可利用损失率决定(数百年到数千年)。模型中土壤中有效养分在数小时到数天内达到平衡的短时间尺度由生物吸收控制。这些对控制陆地生态系统不同时间尺度的过程的深入了解,可以帮助指导经验和实验研究。

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