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叶片表面结构使地方性纳米布沙漠草 Stipagrostis sabulicola 能够利用雾水进行自我灌溉。

Leaf surface structures enable the endemic Namib desert grass Stipagrostis sabulicola to irrigate itself with fog water.

机构信息

State Museum of Natural History, Rosenstein 1, 70191 Stuttgart, Germany.

出版信息

J R Soc Interface. 2012 Aug 7;9(73):1965-74. doi: 10.1098/rsif.2011.0847. Epub 2012 Feb 22.

Abstract

The Namib grass Stipagrostis sabulicola relies, to a large degree, upon fog for its water supply and is able to guide collected water towards the plant base. This directed irrigation of the plant base allows an efficient and rapid uptake of the fog water by the shallow roots. In this contribution, the mechanisms for this directed water flow are analysed. Stipagrostis sabulicola has a highly irregular surface. Advancing contact angle is 98° ± 5° and the receding angle is 56° ± 9°, with a mean of both values of approximately 77°. The surface is thus not hydrophobic, shows a substantial contact angle hysteresis and therefore, allows the development of pinned drops of a substantial size. The key factor for the water conduction is the presence of grooves within the leaf surface that run parallel to the long axis of the plant. These grooves provide a guided downslide of drops that have exceeded the maximum size for attachment. It also leads to a minimum of inefficient drop scattering around the plant. The combination of these surface traits together with the tall and upright stature of S. sabulicola contributes to a highly efficient natural fog-collecting system that enables this species to thrive in a hyperarid environment.

摘要

纳米比草依赖雾作为其主要的水分来源,它可以引导收集到的水分流向植物的基部。这种对植物基部的定向灌溉使得浅层根系能够高效、快速地吸收雾水。在本研究中,我们分析了这种定向水流的机制。纳米比草具有高度不规则的表面。前进接触角为 98°±5°,后退接触角为 56°±9°,两者平均值约为 77°。因此,该表面不是疏水性的,具有较大的接触角滞后,因此可以形成较大尺寸的固定液滴。水分传导的关键因素是叶片表面存在与植物长轴平行的凹槽。这些凹槽为超过最大附着尺寸的液滴提供了定向下滑的通道。这也减少了植物周围低效的液滴散射。这些表面特征与纳米比草高大直立的形态相结合,形成了一种高效的天然雾收集系统,使该物种能够在极干旱的环境中茁壮成长。

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