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On the Efficacy of Water Transport in Leaves. A Coupled Xylem-Phloem Model of Water and Solute Transport

机译:叶片水运输的疗效。水和溶质运输耦合的Xylem-phloem模型

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In this paper, we present and use a coupled xylem/phloem mathematical model of passive water and solute transport through a reticulated vascular system of an angiosperm leaf. We evaluate the effect of leaf width-to-length proportion and orientation of second-order veins on the indexes of water transport into the leaves and sucrose transport from the leaves. We found that the most important factor affecting the steady-state pattern of hydraulic pressure distribution in the xylem and solute concentration in the phloem was leaf shape: narrower/longer leaves are less efficient in convecting xylem water and phloem solutes than wider/shorter leaves under all conditions studied. The degree of efficiency of transport is greatly influenced by the orientation of second-order veins relative to the main vein for all leaf proportions considered; the dependence is non-monotonic with efficiency maximized when the angle is approximately 45° to the main vein, although the angle of peak efficiency depends on other conditions. The sensitivity of transport efficiency to vein orientation increases with increasing vein conductivity. The vein angle at which efficiency is maximum tended to be smaller (relative to the main vein direction) in narrower leaves. The results may help to explain, or at least contribute to our understanding of, the evolution of parallel vein systems in monocot leaves.
机译:在本文中,我们展示并使用无源水的耦合的木质蛋白/韧皮肌数学模型,通过高血管叶片的网状血管系统溶质运输。我们评估叶宽度与长度比例和取向对二阶静脉对叶片水输送指标的影响,叶片与叶子的蔗糖输送。我们发现影响木质液中液压分布稳态模式的最重要因素,韧皮柱中的溶质浓度为叶形:较窄/较长的叶子在对流的情况下效率低于宽/韧带溶质的效率所有条件都研究过。运输的效率程度极大地受到二阶静脉相对于主静脉的定向的影响;当角度大约45°到主静脉时,依赖性的依赖性最大化,尽管峰值效率的角度取决于其他条件。运输效率对静脉取向的敏感性随着静脉电导率的增加而增加。在较窄的叶片中,效率最大的静脉角度趋于更小(相对于主静脉方向)。结果可能有助于解释,或者至少有助于我们对单子叶叶中平行静脉系统的演变。

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