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Cuticle differentiation during Drosophila embryogenesis

机译:果蝇胚胎发生过程中的表皮分化

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The constitutive criterion for the evolutionary successful clade of ecdysozoans is a protective exoskeleton. In insects the exoskeleton, the so-called cuticle consists of three functional layers, the waterproof envelope, the proteinaceous epicuticle and the chitinous procuticle that are produced as an extracellular matrix by the underlying epidermal cells. Here, we present our electron-microscopic study of cuticle differentiation during embryogenesis in the fruit fly Drosophila melanogaster. We conclude that cuticle differentiation in the Drosophila embryo occurs in three phases. In the first phase, the layers are established. Interestingly, we find that establishment of the layers occurs partially simultaneously rather than in a strict sequential manner as previously proposed. In the second phase the cuticle thickens. Finally, in the third phase, when secretion of cuticle material has ceased, the chitin laminae acquire their typical orientation, and the epicuticle of the denticles and the head skeleton darken. Our work will help to understand the phenotypes of embryos mutant for genes encoding essential cuticle factors, in turn revealing mechanisms of cuticle differentiation.
机译:蜕皮动物进化成功进化枝的构成标准是保护性外骨骼。在昆虫的外骨骼中,所谓的表皮由三个功能层组成,即防水层,蛋白质表皮和几丁质表皮,它们由下面的表皮细胞作为细胞外基质产生。在这里,我们介绍了果蝇果蝇胚胎发生过程中角质层分化的电子显微镜研究。我们得出结论,果蝇胚胎中的表皮分化发生在三个阶段。在第一阶段,建立层。有趣的是,我们发现层的建立部分同时发生,而不是像以前提出的那样以严格的顺序发生。在第二阶段,表皮变厚。最后,在第三阶段,当表皮物质的分泌停止时,几丁质薄片获得其典型的取向,并且表皮的表皮和头部骨骼变暗。我们的工作将有助于了解编码必需表皮因子的基因的胚胎突变体的表型,进而揭示表皮分化的机制。

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