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Phloem sap flow and carbohydrate transport in vascular plants: A generic surface model

机译:韧皮部汁液流动和维管植物中的碳水化合物运输:通用表面模型

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Plant leaves produce carbohydrates that are distributed throughout the organism via the phloem pathway. Understanding how phloem transport operates is essential to simulate patterns of growth activity and carbon allocation within trees. In agreement with Münch's hypothesis, we model phloem sap motion as a pressure flow. This is a single-solute (sucrose) model. It solves diffusion-like equations using finite element analysis on a triangulated surface that represents the phloem. In this study, we show that the surface model is compatible with representing architecturally complex structures like trees. The model also takes into account the effect of grain orientation on translocation. Simulating sap flow at a branchstem junction highlights that carbohydrates move dominantly along the longitudinal direction of phloem fibres. However, lateral transport remains a major unknown in the current understanding of assimilate transport in plants.
机译:植物叶片产生的碳水化合物通过韧皮部途径分布在整个生物体内。了解韧皮部运输的运作方式对于模拟树木中生长活动和碳分配的模式至关重要。与Münch的假设一致,我们将韧皮部汁液运动建模为压力流。这是单溶质(蔗糖)模型。它使用有限元分析在代表韧皮部的三角表面上求解类似于扩散的方程。在这项研究中,我们表明表面模型与表示建筑复杂的结构(如树木)兼容。该模型还考虑了晶粒取向对易位的影响。模拟树枝干交接处的汁液流动表明,碳水化合物主要沿韧皮部纤维的纵向移动。然而,在目前对植物同化运输的理解中,横向运输仍然是主要未知的。

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