González-Valenzuela Laura, Renard Joan, Depège-Fargeix Nathalie, Ingram Gwyneth
Laboratoire Reproduction et Développement des Plantes, ENS de Lyon, CNRS, INRAE, UCBL, F-69342, Lyon, France.
Laboratoire Reproduction et Développement des Plantes, ENS de Lyon, CNRS, INRAE, UCBL, F-69342, Lyon, France; Instituto de Biología Molecular y Celular de Plantas, Universitat Politècnica de València-Consejo Superior de Investigaciones Científicas, Camino de Vera, Valencia, 46022 Spain.
Curr Biol. 2023 Mar 27;33(6):R210-R214. doi: 10.1016/j.cub.2023.01.003.
The plant cuticle is one of the key innovations that allowed plants to colonize terrestrial ecosystems. By limiting molecular diffusion, the cuticle provides an interface that ensures controlled interactions between plant surfaces and their environments. It confers diverse and sometimes astonishing properties upon plant surfaces at both the molecular level (from water and nutrient exchange capacities to almost complete impermeability), to the macroscopic level (from water repellence to iridescence). It takes the form of a continuous modification of the outer cell wall of the plant epidermis from early in plant development (surrounding the epidermis of the developing plant embryo) and is actively maintained and modified throughout the growth and development of most plant aerial organs - including non-woody stems, flowers, leaves, and even the root cap of emerging primary and lateral roots. The cuticle was first identified as a distinct structure in the early 19th century, and has since been the focus of intense research that, while revealing the fundamental role of the cuticle in the life of terrestrial plants, has also highlighted many unresolved mysteries regarding cuticle biogenesis and structure.
植物角质层是使植物能够在陆地生态系统中定殖的关键创新之一。通过限制分子扩散,角质层提供了一个界面,确保植物表面与其环境之间进行可控的相互作用。它在分子水平(从水和养分交换能力到几乎完全不渗透)到宏观水平(从拒水到虹彩)赋予植物表面多样且有时令人惊讶的特性。它从植物发育早期就以对植物表皮外层细胞壁的连续修饰形式存在(围绕发育中的植物胚胎的表皮),并且在大多数植物地上器官的生长和发育过程中(包括非木质茎、花、叶,甚至初生根和侧根根尖的根冠)都被积极维持和修饰。角质层在19世纪早期首次被确认为一种独特的结构,自那时起一直是深入研究的焦点,这些研究虽然揭示了角质层在陆生植物生命中的基本作用,但也凸显了许多关于角质层生物合成和结构的未解之谜。