完整木质部导管空化的爆炸事件

Xingyue Li, Fanyi Shen, Tiqiao Xiao, Yanling Xue, Li Zhang, Rongfu Gao, Qian Zhang
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摘要

植物管道的空化只涉及气泡的两个过程:气泡逐渐膨胀伸长和爆炸事件。空化爆炸事件只发生在完整的管道中,在水张力作用下,空化爆炸触发声(或超声)发射,同时诱导空气高速扩散。采用同步加速器x射线相衬显微镜(XPCM)捕捉了玉米和水稻叶片完整导管内的空化现象。空化事件发生在叶片的特定区域,并且有一定的时间框架。在XPCM实验之前,我们做了以下几个前期实验:1)观察不同树种叶片石蜡切片,选择样品,确定叶片空化事件发生区域。2)利用超声发射确定空化发生的时间范围。3)测定叶片的水势,了解空化过程中叶片的水分状态。锁定叶片空化事件发生的区域和时间框架,更容易获得空化过程的连续XPCM图像。图像显示,在玉米和水稻离体叶片的完整导管中,更容易发生气泡瞬间充满导管的现象。那就是瞬间扩散的气体是由于进入完整的叶片导管的空气种子爆炸造成的。对于活的植物,认为空化的爆炸事件是栓塞形成的最重要因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Explosion Event of Cavitation in Intact Xylem Conduit
Cavitation in plant conduits only involves two processes of air bubbles: the gradual expansion and elongation, and the explosion event. An explosion event of cavitation, which can only occur in intact conduit at water tension, trigs acoustic (or ultrasound) emission and induces air to diffuse with high speed, simultaneously. Synchrotron X-ray phase contrast microscopy (XPCM) was used to capture cavitation event in intact conduits of leaves of corn and rice. Cavitation events occur in certain areas of leaves and have a certain time frame. Before XPCM experiment, several preliminary experiments were done as follows: 1) Paraffin sections of leaves of different species were observed to select samples and to determine the occurrence area of cavitation event of leaves. 2) The time frame of cavitation occurrence was determined by ultrasonic emission. 3) The water potentials of leaves were determined, to know the water state of the leaves during cavitation. Locked the area and time frame of cavitation event in the leaves, consecutive XPCM images of cavitation process were more easily acquired. The images show that the phenomenon of gas bubble fully filling conduits for an instant took place in intact conduits of detached leaves of corn and rice more easily. It is that the gas diffusing in a moment was caused by the explosion of the air seeds which had entered in the intact conduits of the leaves. For living plants, it is suggested that the explosion event of cavitation is the most important for embolism formation.
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