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水稻同源异型盒基因OSH15的分离与鉴定

Isolation and characterization of a rice homebox gene, OSH15.

作者信息

Sato Y, Sentoku N, Nagato Y, Matsuoka M

机构信息

Nagoya University, BioScience Center, Chikusa, Japan.

出版信息

Plant Mol Biol. 1998 Dec;38(6):983-98. doi: 10.1023/a:1006065622251.

Abstract

In many eukaryotic organisms including plants, homeobox genes are thought to be master regulators that establish the cellular or regional identities and specify the fundamental body plan. We isolated and characterized a cDNA designated OSH15 (Oryza sativa homeobox 15) that encodes a KNOTTED-type homeodomain protein. Transgenic tobacco plants overexpressing the OSH15 cDNA showed a dramatically altered morphological phenotype caused by disturbance of specific aspects of tobacco development, thereby indicating the involvement of OSH15 in plant development. We analyzed the in situ mRNA localization of OSH15 through the whole plant life cycle, comparing the expression pattern with that of another rice homeobox gene, OSH1. In early embryogenesis, both genes were expressed as the same pattern at a region where the shoot apical meristem would develop later. In late embryogenesis, the expression pattern of the two genes became different. Whereas the expression of OSH1 continued within the shoot apical meristem, OSH15 expression within the shoot apical meristem ceased but became observable in a ring shaped pattern at the boundaries of some embryonic organs. This pattern of expression was similar to that observed around vegetative or reproductive shoots, or the floral meristem in mature plants. RNA in situ localization data suggest that OSH15 may play roles in the shoot organization during early embryogenesis and thereafter, OSH15 may be involved in morphogenetic events around the shoot apical meristem.

摘要

在包括植物在内的许多真核生物中,同源异型框基因被认为是主要调节因子,它们决定细胞或区域的特性,并确定基本的身体结构。我们分离并鉴定了一个名为OSH15(水稻同源异型框15)的cDNA,它编码一种KNOTTED型同源结构域蛋白。过表达OSH15 cDNA的转基因烟草植株表现出显著改变的形态表型,这是由烟草发育特定方面的紊乱引起的,从而表明OSH15参与了植物发育。我们分析了OSH15在整个植物生命周期中的原位mRNA定位,并将其表达模式与另一个水稻同源异型框基因OSH1的表达模式进行了比较。在早期胚胎发生过程中,这两个基因在稍后将发育出茎尖分生组织的区域以相同模式表达。在晚期胚胎发生过程中,这两个基因的表达模式变得不同。OSH1在茎尖分生组织内持续表达,而OSH15在茎尖分生组织内的表达停止,但在一些胚胎器官的边界处呈环形模式可见。这种表达模式与在成熟植物的营养枝或生殖枝周围以及花分生组织中观察到的模式相似。RNA原位定位数据表明,OSH15可能在早期胚胎发生过程中参与茎的组织形成,此后,OSH15可能参与茎尖分生组织周围的形态发生事件。

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