Department of Biological Sciences, National University of Singapore, Singapore.
Curr Opin Insect Sci. 2024 Oct;65:101254. doi: 10.1016/j.cois.2024.101254. Epub 2024 Aug 31.
Insect cuticle exhibits a wide array of micro- and nano-structures in terms of size, form, and function. However, the investigation of cellular mechanisms of morphogenesis has centered around a small number of structure types and organisms. The recent expansion of the taxa studied, and subsequent discoveries prompt us to revisit well-known models, like the one for bristle morphogenesis. In addition, common themes are emerging in the morphogenesis of cuticular structures, such as the polyploidy of precursor cells, the role of pigments and cuticular proteins in controlling chitin deposition in space and time, and the role of the apical extracellular matrix in defining the shape of the developing structure. Understanding how these structures are synthesized in biological systems holds promise for bioinspired design.
昆虫外骨骼在大小、形态和功能方面表现出广泛的微观和纳米结构。然而,形态发生的细胞机制的研究主要集中在少数几种结构类型和生物体上。最近研究的分类群的扩展,以及随后的发现促使我们重新审视著名的模型,如刚毛形态发生模型。此外,在表皮结构的形态发生中出现了一些共同的主题,例如前体细胞的多倍体、色素和表皮蛋白在控制几丁质时空沉积中的作用,以及顶端细胞外基质在定义发育结构形状中的作用。了解这些结构在生物系统中的合成方式有望为仿生设计提供帮助。