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植物可通过改变根际养分生物有效性来改变竞争:一种建模方法。

Plants may alter competition by modifying nutrient bioavailability in rhizosphere: a modeling approach.

作者信息

Raynaud Xavier, Jaillard Benoît, Leadley Paul W

机构信息

Laboratoire d'Ecologie, Systématique, et Evolution, Université Paris-Sud, Centre National de la Recherche Scientifique (CNRS) Unité Mixte de Recherche (UMR) 8079, F-91405, Orsay Cedex, France.

出版信息

Am Nat. 2008 Jan;171(1):44-58. doi: 10.1086/523951.

Abstract

Plants modify nutrient availability by releasing chemicals in the rhizosphere. This change in availability induced by roots (bioavailability) is known to improve nutrient uptake by individual plants releasing such compounds. Can this bioavailability alter plant competition for nutrients and under what conditions? To address these questions, we have developed a model of nutrient competition between plant species based on mechanistic descriptions of nutrient diffusion, plant exudation, and plant uptake. The model was parameterized using data of the effects of root citrate exudation on phosphorus availability. We performed a sensitivity analysis for key parameters to test the generality of these effects. Our simulations suggest the following. (1) Nutrient uptake depends on the number of roots when nutrients and exudates diffuse little, because individual roots are nearly independent in terms of nutrient supply. In this case, bioavailability profits only species with exudates. (2) Competition for nutrients depends on the spatial arrangement of roots when nutrients diffuse little but exudates diffuse widely. (3) Competition for nutrients depends on the nutrient uptake capacity of roots when nutrients and exudates diffuse widely. In this case, bioavailability profits all species. Mechanisms controlling competition for bioavailable nutrients appear to be diverse and strongly depend on soil, nutrient, and plant properties.

摘要

植物通过在根际释放化学物质来改变养分的有效性。由根系引起的这种有效性变化(生物有效性)已知会提高释放此类化合物的个体植物对养分的吸收。这种生物有效性能否改变植物对养分的竞争以及在何种条件下改变?为了解决这些问题,我们基于对养分扩散、植物渗出和植物吸收的机理描述,开发了一个植物物种间养分竞争模型。该模型使用根际柠檬酸渗出对磷有效性影响的数据进行参数化。我们对关键参数进行了敏感性分析,以测试这些影响的普遍性。我们的模拟结果表明如下:(1)当养分和渗出物扩散较少时,养分吸收取决于根系数量,因为单个根系在养分供应方面几乎是独立的。在这种情况下,生物有效性仅对有渗出物的物种有利。(2)当养分扩散较少但渗出物扩散广泛时,对养分的竞争取决于根系的空间排列。(3)当养分和渗出物扩散广泛时,对养分的竞争取决于根系的养分吸收能力。在这种情况下,生物有效性对所有物种都有利。控制对生物可利用养分竞争的机制似乎多种多样,并且强烈依赖于土壤、养分和植物特性。

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