Instituto de Biología Molecular y Celular de Rosario (IBR), Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET) - Facultad de Ciencias Bioquímicas y Farmacéuticas, Universidad Nacional de Rosario (UNR), Rosario, Argentina.
Int J Dev Biol. 2021;65(4-5-6):215-225. doi: 10.1387/ijdb.200229nc.
Although the vertebrate head has evolved to a wide collection of adaptive shapes, the fundamental signalling pathways and cellular events that outline the head skeleton have proven to be highly conserved. This conservation suggests that major morphological differences are due to changes in differentiation and morphogenetic programs downstream of a well-maintained developmental prepattern. Here we provide a brief examination of the mechanisms and pathways responsible for vertebrate head development, as well as an overview of the animal models suitable for studying face development. In addition, we describe the criteria for neurocristopathy classification, highlighting the contribution of zebrafish to the modelling of Treacher Collins/Franceschetti Syndrome, an emblematic neurocristopathy. The contributions from our laboratory reveal that proper zebrafish head development depends on the fine-tuning of developmental-gene expression mediated by nucleic acid binding proteins able to regulate DNA conformation and / or the neuroepithelium redox state.
尽管脊椎动物的头部已经进化出了广泛的适应性形状,但构成头部骨骼的基本信号通路和细胞事件被证明是高度保守的。这种保守性表明,主要的形态差异是由于分化和形态发生程序的变化,而这些程序是在一个维持良好的发育前模式的下游发生的。在这里,我们简要地检查了负责脊椎动物头部发育的机制和途径,以及适合研究面部发育的动物模型概述。此外,我们还描述了神经嵴病变的分类标准,强调了斑马鱼在模拟特雷彻·柯林斯/弗朗切蒂综合征(一种标志性的神经嵴病变)方面的贡献。我们实验室的研究结果表明,正确的斑马鱼头部发育取决于由核酸结合蛋白介导的发育基因表达的微调,这些蛋白能够调节 DNA 构象和/或神经上皮的氧化还原状态。