Molecular dissection of craniofacial development using zebrafish.

P. Yelick, T. Schilling
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引用次数: 138

Abstract

The zebrafish, Danio rerio, is a small, freshwater teleost that only began to be used as a vertebrate genetic model by the late George Streisinger in the early 1980s. The strengths of the zebrafish complement genetic studies in mice and embryological studies in avians. Its advantages include high fecundity, externally fertilized eggs and transparent embryos that can be easily manipulated, inexpensive maintenance, and the fact that large-scale mutagenesis screens can be performed. Here we review studies that have used the zebrafish as a model for craniofacial development. Lineage studies in zebrafish have defined the origins of the cranial skeleton at the single-cell level and followed the morphogenetic behaviors of these cells in skeletal condensations. Furthermore, genes identified by random mutational screening have now revealed genetic pathways controlling patterning of the jaw and other pharyngeal arches, as well as the midline of the skull, that are conserved between fish and humans. We discuss the potential impact of specialized mutagenesis screens and the future applications of this versatile, vertebrate developmental model system in the molecular dissection of craniofacial development.
斑马鱼颅面发育的分子解剖。
斑马鱼,Danio rerio,是一种小型的淡水硬骨鱼,直到20世纪80年代初才被已故的乔治·斯特莱辛格(George Streisinger)用作脊椎动物的遗传模型。斑马鱼的优势补充了小鼠的遗传研究和鸟类的胚胎学研究。它的优点包括高繁殖力,外部受精卵和透明胚胎易于操作,维护费用低廉,以及可以进行大规模诱变筛选。在这里,我们回顾了使用斑马鱼作为颅面发育模型的研究。斑马鱼的谱系研究在单细胞水平上定义了颅骨的起源,并跟踪了这些细胞在骨骼凝聚中的形态发生行为。此外,通过随机突变筛选鉴定的基因现在已经揭示了控制颌骨和其他咽弓以及头骨中线模式的遗传途径,这些遗传途径在鱼类和人类之间是保守的。我们讨论了专门的突变筛选的潜在影响,以及这种多功能的脊椎动物发育模型系统在颅面发育分子解剖中的未来应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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