Vowels J J, Thomas J H
Department of Genetics, University of Washington, Seattle 98195.
Genetics. 1992 Jan;130(1):105-23. doi: 10.1093/genetics/130.1.105.
Dauer larva formation in Caenorhabditis elegans is controlled by chemosensory cells that respond to environmental cues. Genetic interactions among mutations in 23 genes that affect dauer larva formation were investigated. Mutations in seven genes that cause constitutive dauer formation, and mutations in 16 genes that either block dauer formation or result in the formation of abnormal dauers, were analyzed. Double mutants between dauer-constitutive and dauer-defective mutations were constructed and characterized for their capacity to form dauer larvae. Many of the genes could be interpreted to lie in a simple linear epistasis pathway. Three genes, daf-16, daf-18 and daf-20, may affect downstream steps in a branched part of the pathway. Three other genes, daf-2, daf-3 and daf-5, displayed partial or complex epistasis interactions that were difficult to interpret as part of a simple linear pathway. Dauer-defective mutations in nine genes cause structurally defective chemosensory cilia, thereby blocking chemosensation. Mutations in all nine of these genes appear to fall at a single step in the epistasis pathway. Dauer-constitutive mutations in one gene, daf-11, were strongly suppressed for dauer formation by mutations in the nine cilium-structure genes. Mutations in the other six dauer-constitutive genes caused dauer formation despite the absence of functional chemosensory endings. These results suggest that daf-11 is directly involved in chemosensory transduction essential for dauer formation, while the other Daf-c genes play roles downstream of the chemosensory step.
秀丽隐杆线虫中 dauer 幼虫的形成受对环境线索做出反应的化学感应细胞控制。研究了影响 dauer 幼虫形成的 23 个基因的突变之间的遗传相互作用。分析了导致组成型 dauer 形成的 7 个基因的突变,以及要么阻止 dauer 形成要么导致异常 dauer 形成的 16 个基因的突变。构建了组成型 dauer 突变和 dauer 缺陷型突变之间的双突变体,并对它们形成 dauer 幼虫的能力进行了表征。许多基因可以解释为位于一个简单的线性上位途径中。三个基因,daf-16、daf-18 和 daf-20,可能影响该途径分支部分的下游步骤。另外三个基因,daf-2、daf-3 和 daf-5,表现出部分或复杂的上位相互作用,难以解释为简单线性途径的一部分。九个基因中的 dauer 缺陷型突变导致化学感应纤毛结构缺陷,从而阻断化学感应。所有这九个基因的突变似乎都处于上位途径的单个步骤。一个基因 daf-11 中的组成型 dauer 突变被九个纤毛结构基因中的突变强烈抑制了 dauer 形成。尽管没有功能性化学感应末梢,其他六个组成型 dauer 基因中的突变仍导致 dauer 形成。这些结果表明,daf-11 直接参与 dauer 形成所必需的化学感应转导,而其他 Daf-c 基因在化学感应步骤的下游发挥作用。