Evans Review No. 3: Structure–function relationships of the plant cuticle and cuticular waxes — a smart material?

表皮(毛发) 角质 植物角质层 生物 润湿 表皮蜡 仿生学 材料科学 生物物理学 纳米技术 植物 化学工程 生物系统 复合材料 解剖 生物化学 工程类
作者
Hendrik Bargel,Kerstin Koch,Zdenek Cerman,Christoph Neinhuis
出处
期刊:Functional Plant Biology [CSIRO Publishing]
卷期号:33 (10): 893-910 被引量:302
标识
DOI:10.1071/fp06139
摘要

The cuticle is the main interface between plants and their environment. It covers the epidermis of all aerial primary parts of plant organs as a continuous extracellular matrix. This hydrophobic natural composite consists mainly of the biopolymer, cutin, and cuticular lipids collectively called waxes, with a high degree of variability in composition and structure. The cuticle and cuticular waxes exhibit a multitude of functions that enable plant life in many different terrestrial habitats and play important roles in interfacial interactions. This review highlights structure–function relationships that are the subjects of current research activities. The surface waxes often form complex crystalline microstructures that originate from self-assembly processes. The concepts and results of the analysis of model structures and the influence of template effects are critically discussed. Recent investigations of surface waxes by electron and X-ray diffraction revealed that these could be assigned to three crystal symmetry classes, while the background layer is not amorphous, but has an orthorhombic order. In addition, advantages of the characterisation of formation of model wax types on a molecular scale are presented. Epicuticular wax crystals may cause extreme water repellency and, in addition, a striking self-cleaning property. The principles of wetting and up-to-date concepts of the transfer of plant surface properties to biomimetic technical applications are reviewed. Finally, biomechanical studies have demonstrated that the cuticle is a mechanically important structure, whose properties are dynamically modified by the plant in response to internal and external stimuli. Thus, the cuticle combines many aspects attributed to smart materials.
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