Heuer J G, Kaufman T C
Howard Hughes Medical Institute, Department of Biology, Indiana University, Bloomington 47405.
Development. 1992 May;115(1):35-47. doi: 10.1242/dev.115.1.35.
The Drosophila embryonic peripheral nervous system (PNS) contains segment-specific spatial patterns of sensory organs which derive from the ectoderm. Many studies have established that the homeotic genes of Drosophila control segment specific characteristics of the epidermis, and more recently these genes have also been shown to control gut morphogenesis through their expression in the visceral mesoderm (Tremml, G. and Bienz, M. (1989), EMBO J. 8, 2677-2685). We report here the roles of homeotic genes in establishing the spatial patterns of sensory organs in the embryonic PNS. The PNS was examined in embryos homozygous for mutations in the homeotic genes Sex combs reduced (Scr), Antennapedia (Antp), Ultrabithorax (Ubx), abdominal-A (abd-A) and Abdominal-B (Abd-B) with antibodies that label specific subsets of sensory organs. Our results suggest that the homeotic genes have specific roles in establishing the correct spatial patterns of sensory organs in their normal domains of expression. In addition, we also report the effects of ectopic expression of the homeotic genes labial (lab), Deformed (Dfd), Scr, Antp or Ubx on the normal development of sensory organs in the embryonic PNS. Interestingly, while previous studies have concluded that ectopic expression of the homeotic genes Dfd, Scr and Antp has no effect on the segmental identity of the abdominal segments, our results demonstrate that this is not true. We show that ectopic expression of these genes does result in the disruption of the developing PNS in the abdomen. Our results are suggestive of a role for the homeotic gene products in regulating genes which are necessary for generating sensory progenitor cells in the developing PNS.
果蝇胚胎外周神经系统(PNS)包含源自外胚层的感觉器官的节段特异性空间模式。许多研究已证实,果蝇的同源异型基因控制表皮的节段特异性特征,最近还发现这些基因通过在内脏中胚层的表达来控制肠道形态发生(Tremml, G.和Bienz, M.(1989年),《欧洲分子生物学组织杂志》8, 2677 - 2685)。我们在此报告同源异型基因在建立胚胎PNS中感觉器官空间模式方面的作用。利用标记感觉器官特定亚群的抗体,对同源异型基因性梳减少(Scr)、触角足(Antp)、超双胸(Ubx)、腹A(abd - A)和腹B(Abd - B)发生突变的纯合胚胎的PNS进行了检测。我们的结果表明,同源异型基因在其正常表达区域建立感觉器官正确的空间模式中具有特定作用。此外,我们还报告了同源异型基因唇(lab)、变形(Dfd)、Scr、Antp或Ubx异位表达对胚胎PNS中感觉器官正常发育的影响。有趣的是,虽然先前的研究得出结论,同源异型基因Dfd、Scr和Antp的异位表达对腹部节段的节段身份没有影响,但我们的结果表明并非如此。我们发现这些基因的异位表达确实会导致腹部发育中的PNS受到破坏。我们的结果提示同源异型基因产物在调控发育中的PNS中产生感觉祖细胞所必需的基因方面发挥作用。