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In vivo dynamic analysis of water refilling in embolized xylem vessels of intact Zea mays leaves

机译:完整的玉米叶栓塞木质部容器中补水的体内动力学分析

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摘要

>Background and Aims The refilling of embolized xylem vessels under tension is a major issue in water transport among vascular plants. However, xylem embolism and refilling remain poorly understood because of technical limitations. Direct observation of embolism repair in intact plants is essential to understand the biophysical aspects of water refilling in embolized xylem vessels. This paper reports on details of the water refilling process in leaves of the intact herbaceous monocot plant Zea mays and its refilling kinetics obtained by a direct visualization technique.>Methods A synchrotron X-ray micro-imaging technique was used to monitor water refilling in embolized xylem vessels of intact maize leaves. Xylem embolism was artificially induced by using a glass capillary; real-time images of water refilling dynamics were consecutively captured at a frame rate of 50 f.p.s.>Key Results Water supply in the radial direction initiates droplet formation on the wall of embolized xylem vessels. Each droplet grows into a water column; this phenomenon shows translation motion or continuous increase in water column volume. In some instances, water columns merge and form one large water column. Water refilling in the radial direction causes rapid recovery from embolism in several minutes. The average water refilling velocity is approx. 1 μm s−1.>Conclusions Non-destructive visualization of embolized xylem vessels demonstrates rapid water refilling and gas bubble removal as key elements of embolism repair in a herbaceous monocot species. The refilling kinetics provides new insights into the dynamic mechanism of water refilling phenomena.
机译:>背景和目标:在压力下对栓塞木质部容器进行补水是维管植物之间水运输的主要问题。但是,由于技术上的限制,木质部栓塞和重新填充仍然知之甚少。直接观察完整植物中的栓塞修复对于了解栓塞木质部容器中的水补充的生物物理方面至关重要。本文报道了完整的草本单子叶植物玉米(Zea mays)叶片中的补水过程及其通过直接可视化技术获得的补水动力学。>方法使用同步加速器X射线显微成像技术监测完整的玉米叶片的栓塞木质部容器中的注水情况。用玻璃毛细管人为地引起木质部栓塞。实时以50 f.p.s.的帧率连续捕获注水动态的图像。>关键结果:径向供水会在栓塞木质部血管壁上形成液滴。每个小滴长成水柱。这种现象表明平移运动或水柱体积不断增加。在某些情况下,水柱合并形成一个大水柱。径向注水可在几分钟内从栓塞中迅速恢复。平均注水速度约为1μms −1 。>结论栓塞木质部血管的无损观察表明,快速注水和去除气泡是草本单子叶植物栓塞修复的关键要素。注水动力学为注水现象的动力学机理提供了新的见解。

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