Gorman M J, Girton J R
Department of Zoology and Genetics, Iowa State University, Ames 50011.
Genetics. 1992 May;131(1):99-112. doi: 10.1093/genetics/131.1.99.
During Drosophila development networks of genes control the developmental pathways that specify cell fates. The Notch gene is a well characterized member of some cell fate pathways, and several other genes belonging to these same pathways have been identified because they share a neurogenic null phenotype with Notch. However, it is unlikely that the neurogenic genes represent all of the genes in these pathways. The goal of this research was to use a genetic approach to identify and characterize one of the other genes that acts with Notch to specify cell fate. Mutant alleles of genes in the same pathway should have phenotypes similar to Notch alleles and should show phenotypic interactions with Notch alleles. With this approach we identified the deltex gene as a potential cell fate gene. An extensive phenotypic characterization of loss-of-function deltex phenotypes showed abnormalities (such as thick wing veins, double bristles and extra cone cells) that suggest that deltex is involved in cell fate decision processes. Phenotypic interactions between deltex and Notch as seen in double mutants showed that Notch and deltex do not code for duplicate functions and that the two genes function together in many different developing tissues. The results of these investigations lead to the conclusion that the deltex gene functions with the Notch gene in one or more developmental pathways to specify cell fate.
在果蝇发育过程中,基因网络控制着决定细胞命运的发育途径。Notch基因是某些细胞命运途径中一个特征明确的成员,并且已经鉴定出属于这些相同途径的其他几个基因,因为它们与Notch共享神经源性无效表型。然而,神经源性基因不太可能代表这些途径中的所有基因。本研究的目的是使用遗传方法来鉴定和表征与Notch共同作用以决定细胞命运的其他基因之一。同一途径中基因的突变等位基因应具有与Notch等位基因相似的表型,并应与Notch等位基因表现出表型相互作用。通过这种方法,我们将deltex基因鉴定为一个潜在的细胞命运基因。对功能缺失的deltex表型进行的广泛表型特征分析显示出异常(如粗翅脉、双刚毛和额外的锥体细胞),这表明deltex参与细胞命运决定过程。在双突变体中观察到的deltex与Notch之间的表型相互作用表明,Notch和deltex不编码重复功能,并且这两个基因在许多不同的发育组织中共同发挥作用。这些研究结果得出结论,deltex基因在一个或多个发育途径中与Notch基因共同发挥作用以决定细胞命运。