水运
膨胀的
能量流
背景(考古学)
水流
环境科学
能量(信号处理)
流量(数学)
蒸腾作用
机械
环境工程
化学
物理
热力学
地质学
古生物学
光合作用
量子力学
生物化学
抗压强度
摘要
Abstract Water transport in plants occurs along various paths and is driven by gradients in its free energy. It is generally considered that the mode of transport, being either diffusion or bulk flow, is a passive process, although energy may be required to sustain the forces driving water flow. This review aims at putting water flow at the various organisational levels (cell, organ, plant) in the context of the energy that is required to maintain these flows. In addition, the question is addressed (1) whether water can be transported against a difference in its chemical free energy, ‘water potential’ (Ψ), through, directly or indirectly, active processes; and (2) whether the energy released when water is flowing down a gradient in its energy, for example during day‐time transpiration and cell expansive growth, is significant compared to the energy budget of plant and cell. The overall aim of review is not so much to provide a definite ‘Yes’ and ‘No’ to these questions, but rather to stimulate discussion and raise awareness that water transport in plants has its real, associated, energy costs and potential energy gains.
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