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假设。蒸腾水中空气栓塞的溶解——木质部导管中缢缩的影响。

Hypothesis. Air embolisms exsolving in the transpiration water - the effect of constrictions in the xylem pipes.

作者信息

Canny Martin J, Sparks Jed P, Huang Cheng X, Roderick Michael L

机构信息

Ecosystem Dynamics Group, Research School of Biological Sciences, Australian National University, Canberra, ACT 0200, Australia.

Department of Ecology and Evolutionary Biology, Cornell University, Ithaca, NY 14853, USA.

出版信息

Funct Plant Biol. 2007 Mar;34(2):95-111. doi: 10.1071/FP06210.

Abstract

When water flows through a constriction, air can come out of solution (i.e. it can exsolve). This phenomenon is manifested in the transpiration stream of plants. Observations of gas in functioning xylem prompted a hypothesis predicting the daily balance between air and water in wood: a sudden fall in water content at sunrise, followed by an increase in water content during the day. An extended record by time domain reflectometry of volumetric water content (VWC) every 2 h throughout a summer shows the detailed pattern of change of VWC during 25 individual days, giving good agreement with the hypothesis. This hypothesis has wide-ranging consequences for experiments using cut plant parts. Perfusing aqueous solutions through excised xylem also can exsolve air from the water, causing declines in flow. The location of such air was investigated in cryo-fixed perfused vine stems by cryo-scanning electron microscopy. Bubbles formed at residual walls of perforation plates in small vessels, and filled many large vessels. The input surface is revealed as a major source of exsolved air. Precautions to reduce this effect are outlined and discussed.

摘要

当水流经狭窄处时,空气会从溶液中逸出(即它会解析出来)。这种现象在植物的蒸腾流中表现出来。对正在发挥功能的木质部中的气体进行观察后,有人提出了一个假说,预测木材中空气和水的每日平衡情况:日出时含水量突然下降,随后白天含水量增加。通过时域反射仪在整个夏季每2小时对体积含水量(VWC)进行一次长期记录,显示了25个独立日子里VWC的详细变化模式,与该假说高度吻合。这个假说对使用切下的植物部分进行的实验有广泛的影响。通过切除的木质部灌注水溶液也会使水中的空气解析出来,导致流量下降。通过冷冻扫描电子显微镜在冷冻固定的灌注葡萄茎中研究了这种空气的位置。气泡在小导管穿孔板的残余壁处形成,并充满了许多大导管。输入表面被发现是解析出的空气的主要来源。文中概述并讨论了减少这种影响的预防措施。

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