Ingram G C, Goodrich J, Wilkinson M D, Simon R, Haughn G W, Coen E S
John Innes Centre, Norwich, United Kingdom.
Plant Cell. 1995 Sep;7(9):1501-10. doi: 10.1105/tpc.7.9.1501.
The unusual floral organs (ufo) mutant of Arabidopsis has flowers with variable homeotic organ transformations and inflorescence-like characteristics. To determine the relationship between UFO and previously characterized meristem and organ identity genes, we cloned UFO and determined its expression pattern. The UFO gene shows extensive homology with FIMBRIATA (FIM), a gene mediating between meristem and organ identity genes in Antirrhinum. All three UFO mutant alleles that we sequenced are predicted to produce truncated proteins. UFO transcripts were first detected in early floral meristems, before organ identity genes had been activated. At later developmental stages, UFO expression is restricted to the junction between sepal and petal primordia. Phenotypic, genetic, and expression pattern comparisons between UFO and FIM suggest that they are cognate homologs and play a similar role in mediating between meristem and organ identity genes. However, some differences in the functions and genetic interactions of UFO and FIM were apparent, indicating that changes in partially redundant pathways have occurred during the evolutionary divergence of Arabidopsis and Antirrhinum.
拟南芥的异常花器官(ufo)突变体的花具有可变的同源异型器官转变和类似花序的特征。为了确定UFO与先前已鉴定的分生组织和器官特征基因之间的关系,我们克隆了UFO并确定了其表达模式。UFO基因与金鱼草中的FIMBRIATA(FIM)基因具有广泛的同源性,FIM基因在金鱼草的分生组织和器官特征基因之间起介导作用。我们测序的所有三个UFO突变等位基因预计都会产生截短的蛋白质。在器官特征基因被激活之前,UFO转录本首先在早期花分生组织中被检测到。在后期发育阶段,UFO的表达仅限于萼片和花瓣原基之间的连接处。UFO和FIM之间的表型、遗传和表达模式比较表明,它们是同源同源物,在介导分生组织和器官特征基因之间起相似的作用。然而,UFO和FIM在功能和遗传相互作用上存在一些明显差异,表明在拟南芥和金鱼草的进化分歧过程中,部分冗余途径发生了变化。