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Impact of growth and uptake patterns of arbuscular mycorrhizal fungi on plant phosphorus uptake—a modelling study

机译:丛枝菌根真菌生长和吸收模式对植物磷吸收的影响 - 模拟研究

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摘要

In this paper we present a mathematical model for estimating external mycelium growth of arbuscular mycorrhizal fungi and its effect on root uptake of phosphate (P). The model describes P transport in soil and P uptake by both root and fungi on the single root scale. We investigate differences in soil P depletion and overall P influx into a mycorrhizal root by assuming that different spatial regions of mycelia are active in P uptake.When all external hyphae contribute to P uptake, overall uptake is dominated by the fungus and the most effective growth pattern appears to be the one using a high level of anastomosis. The same is true when only the proportion of external hyphae assumed to be active contributes to uptake. When uptake is restricted to the tips, hyphal contribution to overall P uptake is less dominant; the most effective growth pattern appears to be the one characterised by nonlinear branching where branching stops at a given maximal hyphal tip density. Comparison to measured P depletion in the literature suggests that the scenario where active hyphae are contributing to P uptake is likely to fit the data best. These quantitative predictions promote our understanding of the mycorrhizal symbiosis and its role in plant P nutrition.
机译:在本文中,我们提供了一个数学模型,用于估计丛枝菌根真菌的外部菌丝生长及其对根系吸收磷(P)的影响。该模型描述了土壤中磷的运输以及根和真菌在单个根尺度上对磷的吸收。我们通过假设菌丝体的不同空间区域对P的吸收有活性,研究了土壤P消耗和整个P流入菌根的差异。当所有外部菌丝都对P吸收有贡献时,总体吸收主要由真菌和最有效的生长决定模式似乎是使用高水平吻合的一种。当仅假定为活跃的外部菌丝比例有助于摄取时,情况也是如此。当吸收限制在尖端时,菌丝对总体磷吸收的贡献较小。最有效的生长方式似乎是以非线性分支为特征的,其中分支在给定的最大菌丝尖端密度下停止。与文献中测得的P耗竭的比较表明,主动菌丝有助于P吸收的场景可能最适合该数据。这些定量的预测促进了我们对菌根共生及其在植物P营养中的作用的了解。

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