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木质部运输的体积流机制。

On the volume-flow mechanism of phloem transport.

机构信息

School of Pharmacy, Theoretical Chemistry Institute, University of Wisconsin, 53706, Madison, Wisconsin, USA.

出版信息

Planta. 1973 Dec;113(4):355-66. doi: 10.1007/BF00387318.

Abstract

A steady-state model of solution flow in a tubular semipermeable membrane is developed for an arbitrary distribution of solute sources and sinks along the translocation path. It is demonstrated that the volume-flow mechanism of phloem transport depends only on the two assumptions: 1. that the plasmalemma of the sieve tube is a differentially permeable membrane, and 2. that sugars are actively secreted into and absorbed from the lumen of the sieve tube. It is shown that in the absence of a pressure gradient, there is a negligible concentration gradient over most of the translocation path. However, in the presence of a pressure gradient a small concentration gradient develops as a result of the continually changing chemical potential of water along the direction of solution flow. For Poiseuille flow the concentration gradient is approximately proportional to the mean stream velocity.

摘要

建立了一个管型半透膜中溶液流动的稳态模型,用于描述溶质源和汇在迁移路径上的任意分布。结果表明,韧皮部运输的体积流机制仅取决于两个假设:1. 筛管的质膜是一种具有差异渗透性的膜;2. 糖被主动分泌到筛管的腔室中并被吸收。结果表明,在不存在压力梯度的情况下,在大多数迁移路径上,浓度梯度可以忽略不计。然而,在存在压力梯度的情况下,由于水的化学势沿着溶液流动的方向不断变化,会产生一个小的浓度梯度。对于泊肃叶流,浓度梯度大约与平均流速成正比。

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