Birchler J A, Bhadra U, Rabinow L, Linsk R, Nguyen-Huynh A T
Division of Biological Sciences, University of Missouri, Columbia 65211.
Genetics. 1994 Aug;137(4):1057-70. doi: 10.1093/genetics/137.4.1057.
A locus is described in Drosophila melanogaster that modifies the expression of the white eye color gene. This trans-acting modifier reduces the expression of the white gene in the eye, but elevates the expression in other adult tissues. Because of the eye phenotype in which the expression of white is lessened but not eliminated, the newly described locus is called the Weakener of white (Wow). Northern analysis reveals that Wow can exert an inverse or direct modifying effect depending upon the developmental stage. Two related genes, brown and scarlet, that are coordinately expressed with white, are also affected by Wow. In addition, Wow modulates the steady state RNA level of the retrotransposon, copia. When tested with a white promoter-Alcohol dehydrogenase reporter. Wow confers the modifying effect to the reporter, suggesting a requirement of the white regulatory sequences for mediating the response. In addition to being a dosage sensitive regulator of white, brown, scarlet and copia, Wow acts as a suppressor of position effect variegation. There are many dosage sensitive suppressors of position effect variegation and many dosage-sensitive modifiers of gene expression. The Wow mutations provide evidence for an overlap between the two types of modifiers.
在黑腹果蝇中发现了一个位点,它能修饰白眼颜色基因的表达。这种反式作用修饰因子会降低眼睛中白眼基因的表达,但会提高其他成年组织中的表达。由于白眼的表达减少但未消除的眼睛表型,新发现的位点被称为白眼弱化因子(Wow)。Northern分析表明,Wow根据发育阶段可产生反向或正向修饰作用。与白眼协同表达的两个相关基因——棕色眼基因和猩红眼基因,也受到Wow的影响。此外,Wow调节反转录转座子copia的稳态RNA水平。当用白眼启动子 - 乙醇脱氢酶报告基因进行测试时,Wow赋予报告基因修饰作用,这表明介导该反应需要白眼调控序列。除了作为白眼、棕色眼、猩红眼和copia的剂量敏感调节因子外,Wow还作为位置效应斑驳的抑制因子。有许多位置效应斑驳的剂量敏感抑制因子和许多基因表达的剂量敏感修饰因子。Wow突变提供了这两种类型修饰因子之间存在重叠的证据。