Sentoku N, Sato Y, Matsuoka M
BioScience Center, Nagoya University, Chikusa, Nagoya, 464-8601, Japan.
Dev Biol. 2000 Apr 15;220(2):358-64. doi: 10.1006/dbio.2000.9624.
Five rice homeobox (OSH) genes were overexpressed under the control of the cauliflower mosaic virus 35S promoter or the rice actin gene promoter in transgenic rice plants. Almost all of the transgenic plants showed abnormal phenotypes, which could be classified into three types according to their severity. Plants with the most severe phenotype formed only green organs, with many shoot apices on their adaxial sides. Plants with an intermediate phenotype formed bladeless leaves with normally developed leaf sheaths. Plants with a mild phenotype formed normal leaf sheaths and blades, but lacked ligules and showed diffusion of the blade-sheath boundary. The leaf structure of this phenotype was similar to that of dominant maize mutants, such as Kn1, Rs1, Lg3, and Lg4. Based on these phenotypes, we suggest that ectopic expression of the rice OSH genes interferes with the development of leaf blades and maintains leaves in less differentiated states. These results are discussed in relation to the leaf maturation schedule hypothesis (M. Freeling et al., 1992, BioEssays 14, 227-236).
五个水稻同源异型框(OSH)基因在转基因水稻植株中受花椰菜花叶病毒35S启动子或水稻肌动蛋白基因启动子控制而过量表达。几乎所有转基因植株都表现出异常表型,根据其严重程度可分为三种类型。表型最严重的植株只形成绿色器官,其近轴面有许多茎尖。表型中等的植株形成无叶片的叶,叶鞘发育正常。表型轻微的植株形成正常的叶鞘和叶片,但没有叶舌,且叶片-叶鞘边界模糊。这种表型的叶片结构与显性玉米突变体如Kn1、Rs1、Lg3和Lg4的叶片结构相似。基于这些表型,我们认为水稻OSH基因的异位表达会干扰叶片的发育,并使叶片维持在分化程度较低的状态。结合叶片成熟时间表假说(M. Freeling等人,1992年,《生物论文》14卷,227 - 236页)对这些结果进行了讨论。