Chen J J, Janssen B J, Williams A, Sinha N
Section of Plant Biology, University of California, Davis 95616, USA.
Plant Cell. 1997 Aug;9(8):1289-304. doi: 10.1105/tpc.9.8.1289.
Compound leaves are seen in many angiosperm genera and are thought to be either fundamentally different from simple leaves or elaborations of simple leaves. The knotted1-like homeobox (knox) genes are known to regulate plant development. When overexpressed in homologous or heterologous species, this family of genes can cause changes in leaf morphology, including excessive leaf compounding in tomato. We describe here an instance of a spontaneously arisen fusion between a gene encoding a metabolic enzyme and a homeodomain protein. We show that the fusion results in overexpression of the homeodomain protein and a change in morphology that approximates the changes caused by overexpression of the same gene under the control of the cauliflower mosaic virus 35S promoter in transgenic plants. Exon-shuffling events can account for the modularity of proteins. If the shuffled exons are associated with altered promoters, changes in gene expression patterns can result. Our results show that gene fusions of this nature can cause changes in expression patterns that lead to altered morphology. We suggest that such phenomena may have played a role in the evolution of form.
复叶见于许多被子植物属,被认为要么与单叶根本不同,要么是单叶的复杂化形式。已知类结瘤1同源异型框(knox)基因调控植物发育。当在同源或异源物种中过表达时,该基因家族可导致叶片形态发生变化,包括番茄叶片过度复叶化。我们在此描述了一个编码代谢酶的基因与一个同源异型域蛋白之间自发产生融合的实例。我们表明,这种融合导致同源异型域蛋白过表达,并引起形态变化,这与在转基因植物中由花椰菜花叶病毒35S启动子控制下同一基因过表达所引起的变化相近。外显子改组事件可以解释蛋白质的模块化。如果改组后的外显子与改变的启动子相关联,则可能导致基因表达模式的变化。我们的结果表明,这种性质的基因融合可导致表达模式的变化,进而导致形态改变。我们认为,此类现象可能在形态进化中发挥了作用。