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Where does Winch flow begin? Sucrose transport in the pre-phloem path

机译:绞车流在哪里开始? 在Phloem路径前的蔗糖运输

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Current conceptions of sucrose export largely neglect the effect of transpiration-induced water potential gradients within leaf mesophyll, even as the mix of convection and diffusion in the pre-phloem path remains uncertain. It is also generally held that the relative importance of convection and diffusion in the pre-phloem path is controlled by the ratio of their respective mass transfer coefficients. Here, we consider pre-phloem sucrose transport in the presence of adverse water potential gradients, finding that whether convection impedes or aids sucrose delivery to the phloem is independent of the permeability of the plasmodesmata to bulk flow, and depends only on assimilation rate, path-length, and the diffusivity. For most tissues subject to transpiration, convection through plasmodesmata pushes sugar away from the phloem.
机译:蔗糖出口的目前概念在很大程度上忽略了叶片中叶片叶片内蒸腾诱导的水势梯度的影响,即使在验载前路径中的对流和扩散的混合仍然不确定。 还认为,在Phloem路径中对流和扩散的相对重要性由它们各自的传质系数的比率控制。 在这里,我们考虑在不利的水潜在梯度存在下Phloem蔗糖运输,发现对流是否阻抗或有助于蔗糖输送与韧皮症无关,与批量流动的渗透性无关,并且仅取决于同化率,路径 - 长度和扩散率。 对于大多数组织而受蒸腾,通过Plasmodesmata的对流将糖从韧皮肌中推开。

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