Institute of Biology, Biotechnology and Environmental Protection, Faculty of Natural Sciences, University of Silesia in Katowice, Jagiellońska 28, 40-032 Katowice, Poland.
Int J Mol Sci. 2021 Apr 16;22(8):4160. doi: 10.3390/ijms22084160.
This review is devoted to the structure, assembly and function of cuticle. The topics are discussed from the mechanical perspective and whenever the data are available a special attention is paid to the cuticle of perianth organs, i.e., sepals, petals or tepals. The cuticle covering these organs is special in both its structure and function and some of these peculiarities are related to the cuticle mechanics. In particular, strengthening of the perianth surface is often provided by a folded cuticle that functionally resembles profiled plates, while on the surface of the petal epidermis of some plants, the cuticle is the only integral continuous layer. The perianth cuticle is distinguished also by those aspects of its mechanics and development that need further studies. In particular, more investigations are needed to explain the formation and maintenance of cuticle folding, which is typical for the perianth epidermis, and also to elucidate the mechanical properties and behavior of the perianth cuticle in situ. Gaps in our knowledge are partly due to technical problems caused by very small thicknesses of the perianth cuticle but modern tools may help to overcome these obstacles.
这篇综述主要讨论表皮层的结构、组装和功能。本文从力学的角度展开讨论,只要有相关数据,我们就会特别关注花被的表皮层,即萼片、花瓣或花被片的表皮层。这些器官的表皮层在结构和功能上都具有特殊性,其中一些特性与表皮层力学有关。特别是,折叠的表皮层会增强花被表面的强度,其功能类似于异型板,而在某些植物花瓣的表皮层上,表皮层是唯一的完整连续层。花被表皮层的力学和发育方面也有一些需要进一步研究的特征。特别需要进一步的研究来解释花被表皮层典型的表皮折叠的形成和维持,以及阐明花被表皮层原位的力学特性和行为。我们知识上的空白部分是由于花被表皮层非常薄而导致的技术问题,但现代工具可能有助于克服这些障碍。