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超疏水地衣表面的被动水控制。

Passive water control at the surface of a superhydrophobic lichen.

机构信息

School of Science and Technology, Nottingham Trent University, Clifton Lane, Nottingham, NG11 8NS, UK.

出版信息

Planta. 2011 Dec;234(6):1267-74. doi: 10.1007/s00425-011-1475-z. Epub 2011 Jul 23.

Abstract

Some lichens have a super-hydrophobic upper surface, which repels water drops, keeping the surface dry but probably preventing water uptake. Spore ejection requires water and is most efficient just after rainfall. This study was carried out to investigate how super-hydrophobic lichens manage water uptake and repellence at their fruiting bodies, or podetia. Drops of water were placed onto separate podetia of Cladonia chlorophaea and observed using optical microscopy and cryo-scanning-electron microscopy (cryo-SEM) techniques to determine the structure of podetia and to visualise their interaction with water droplets. SEM and optical microscopy studies revealed that the surface of the podetia was constructed in a three-level structural hierarchy. By cryo-SEM of water-glycerol droplets placed on the upper part of the podetium, pinning of the droplet to specific, hydrophilic spots (pycnidia/apothecia) was observed. The results suggest a mechanism for water uptake, which is highly sophisticated, using surface wettability to generate a passive response to different types of precipitation in a manner similar to the Namib Desert beetle. This mechanism is likely to be found in other organisms as it offers passive but selective water control.

摘要

一些地衣具有超疏水的上表面,能排斥水滴,保持表面干燥,但可能会阻止水分吸收。孢子的释放需要水,而且在雨后最有效。本研究旨在探讨疏水性地衣如何在其生殖体(即叶状体)中管理水分吸收和排斥。将水滴放置在 Cladonia chlorophaea 的单独叶状地上,并用光学显微镜和冷冻扫描电子显微镜(cryo-SEM)技术进行观察,以确定叶状体的结构,并观察其与水滴的相互作用。SEM 和光学显微镜研究表明,叶状体的表面由三层结构层次构成。通过将水-甘油滴放置在叶状地上部的 cryo-SEM,可以观察到液滴被固定在特定的亲水点(子囊盘/囊壳)上。研究结果表明,一种高度复杂的水分吸收机制,利用表面润湿性对不同类型的降水产生被动反应,类似于纳米布沙漠甲虫。这种机制可能存在于其他生物体中,因为它提供了被动但选择性的水分控制。

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