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Soil properties are key determinants for the development of exudate gradients in a rhizosphere simulation model

机译:土壤特性是根际模拟模型中渗出物梯度发展的关键决定因素

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The rhizosphere is increasingly recognised as a key compartment of the soil. The aim of this work is to explore the role of soil, plant and solute properties on the development of exudate gradients in the rhizosphere. To this end, a numerical model of solute movements around a single root was developed and analysed for its sensitivity to several parameters including soil water content, lifetime of exudates, root exudation rates, among others. To keep the model as simple as possible, water content is assumed to be homogenously distributed around the root. In the sensitivity analysis, the thickness of the simulated rhizosphere (e.g. the maximum distance to which exudates moved) ranged between 0.2 and 61 mm with an average of about 7 mm, which is of the same order of magnitude as published values. Similarly, the time needed to reach steady state between exudation and degradation of exudates ranged from a few hours to more than 100 days with an average of 62 days. In the sensitivity analysis, adsorption properties solute's lifetime and soil water content appears to be key determinants of both the extent of the rhizosphere and the time to steady state and therefore should have a fundamental role in determining the degree of interactions between neighbouring roots and with other soil organisms.
机译:根际逐渐被认为是土壤的关键部分。这项工作的目的是探索土壤,植物和溶质性质对根际渗出物梯度发展的作用。为此,建立了溶质在单根周围运动的数值模型,并对其对多个参数的敏感性进行了分析,这些参数包括土壤含水量,渗出液的寿命,根系渗出速率等。为了使模型尽可能简单,假定水分在根部周围均匀分布。在敏感性分析中,模拟的根际厚度(例如,渗出物移动的最大距离)在0.2到61 mm之间,平均约为7 mm,与公布的数值处于同一数量级。同样,从渗出到降解之间达到稳定状态所需的时间从数小时到超过100天不等,平均为62天。在敏感性分析中,吸附特性溶质的寿命和土壤含水量似乎是根际范围和达到稳定状态的时间的关键决定因素,因此在确定相邻根系之间以及与其他根系之间的相互作用程度时应起基本作用。土壤生物。

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