Russell M A, Ostafichuk L, Scanga S
Department of Biological Sciences, University of Alberta, Edmonton, Canada.
Genome. 1998 Feb;41(1):7-13. doi: 10.1139/g97-099.
The imaginal discs of Drosophila are a useful experimental system in which we can study the origin and genetic determination of spatial patterns in development. This involves the separation of the disc-cell population into distinct lineage compartments, based on clonally transmitted expression states of a number of known selector genes. However, these commitments can be abrogated and the compartment boundaries redeployed, when repatterning occurs in cultured disc fragments. This has so far only been explained using the idea of positional information. The genetic basis of this property of the imaginal disc system and its relationship to compartments have not been identified. Here we have screened over 470 recessive lethal P-lacZ enhancer-trap insertions from the Berkeley Drosophila Genome Project for expression after cell death, which initiates pattern respecification in the imaginal discs. The positive lines obtained identify essential genes that may be important for pattern formation. Most show patterned imaginal disc expression, and many have maternal or zygotic effects on embryonic development. One is an allele of schnurri, a gene that encodes a component of the decapentaplegic (dpp) signal transduction pathway used for positional signalling in the embryo and in imaginal discs.
果蝇的成虫盘是一个有用的实验系统,我们可以在其中研究发育过程中空间模式的起源和遗传决定。这涉及根据一些已知选择基因的克隆传递表达状态,将盘细胞群体分离成不同的谱系区室。然而,当在培养的盘片段中发生模式重排时,这些细胞命运决定可以被废除,区室边界也会重新部署。到目前为止,这仅用位置信息的概念来解释。成虫盘系统这一特性的遗传基础及其与区室的关系尚未确定。在这里,我们从伯克利果蝇基因组计划中筛选了470多个隐性致死P - lacZ增强子陷阱插入系,以检测细胞死亡后的表达情况,细胞死亡会引发成虫盘中的模式重新指定。获得的阳性品系鉴定出了可能对模式形成很重要的必需基因。大多数显示出成虫盘的模式化表达,许多对胚胎发育有母体或合子效应。其中一个是 schnurri 的等位基因,该基因编码一种在胚胎和成虫盘中用于位置信号传递的decapentaplegic(dpp)信号转导途径的成分。