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通过竞争实现合作——丛枝菌根共生中最小养分贸易系统的动力学与微观经济学

Cooperation through Competition-Dynamics and Microeconomics of a Minimal Nutrient Trade System in Arbuscular Mycorrhizal Symbiosis.

作者信息

Schott Stephan, Valdebenito Braulio, Bustos Daniel, Gomez-Porras Judith L, Sharma Tripti, Dreyer Ingo

机构信息

Facultad de Ingeniería, Centro de Bioinformática y Simulación Molecular, Universidad de Talca Talca, Chile.

出版信息

Front Plant Sci. 2016 Jun 27;7:912. doi: 10.3389/fpls.2016.00912. eCollection 2016.

Abstract

In arbuscular mycorrhizal (AM) symbiosis, fungi and plants exchange nutrients (sugars and phosphate, for instance) for reciprocal benefit. Until now it is not clear how this nutrient exchange system works. Here, we used computational cell biology to simulate the dynamics of a network of proton pumps and proton-coupled transporters that are upregulated during AM formation. We show that this minimal network is sufficient to describe accurately and realistically the nutrient trade system. By applying basic principles of microeconomics, we link the biophysics of transmembrane nutrient transport with the ecology of organismic interactions and straightforwardly explain macroscopic scenarios of the relations between plant and AM fungus. This computational cell biology study allows drawing far reaching hypotheses about the mechanism and the regulation of nutrient exchange and proposes that the "cooperation" between plant and fungus can be in fact the result of a competition between both for the same resources in the tiny periarbuscular space. The minimal model presented here may serve as benchmark to evaluate in future the performance of more complex models of AM nutrient exchange. As a first step toward this goal, we included SWEET sugar transporters in the model and show that their co-occurrence with proton-coupled sugar transporters results in a futile carbon cycle at the plant plasma membrane proposing that two different pathways for the same substrate should not be active at the same time.

摘要

在丛枝菌根(AM)共生关系中,真菌与植物相互交换养分(例如糖类和磷酸盐)以实现互利共赢。到目前为止,尚不清楚这种养分交换系统是如何运作的。在此,我们运用计算细胞生物学方法模拟了在丛枝菌根形成过程中上调的质子泵和质子偶联转运蛋白网络的动态变化。我们发现,这个最小网络足以准确且逼真地描述养分交换系统。通过应用微观经济学的基本原理,我们将跨膜养分运输的生物物理学与生物体相互作用的生态学联系起来,直接解释了植物与丛枝菌根真菌之间关系的宏观情形。这项计算细胞生物学研究有助于就养分交换的机制和调控提出具有深远意义的假设,并提出植物与真菌之间的“合作”实际上可能是两者在狭小的丛枝周空间中争夺相同资源的结果。这里提出的最小模型可作为基准,用于未来评估更复杂的丛枝菌根养分交换模型的性能。作为实现这一目标的第一步,我们在模型中纳入了SWEET糖类转运蛋白,并表明它们与质子偶联糖类转运蛋白同时存在会在植物质膜上导致无效的碳循环,这表明同一底物的两条不同途径不应同时活跃。

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