Dekeyser R. A., Claes B., De Rycke RMU., Habets M. E., Van Montagu M. C., Caplan A. B.
Laboratorium voor Genetica, Rijksuniversiteit Gent, K.L. Ledeganckstraat 35, B-9000 Gent, Belgium.
Plant Cell. 1990 Jul;2(7):591-602. doi: 10.1105/tpc.2.7.591.
Regulated gene expression of chimeric genes has been studied extensively in electroporated protoplasts. The applicability of these assays is limited, however, because protoplasts are not always physiologically identical to the cells from which they are derived. We have developed a procedure to electroporate DNA into intact and organized leaf structures of rice. Optimization of the new gene delivery system mainly involved eliminating explant-released nucleases, prolonging the DNA/explant incubation time, and expanding the pulse time. Using a [beta]-glucuronidase gene under the control of constitutive promoters, we demonstrated that all cell types within a leaf base were susceptible to electroporation-mediated DNA uptake. Although the technique was initially developed for leaf bases of young etiolated rice seedlings, we proved that it was equally applicable both to other monocotyledons, including wheat, maize, and barley, and to other explants, such as etiolated and green sheath and lamina tissues from rice. Transient gene expression assays with electroporated leaf bases showed that the promoter from a pea light-harvesting chlorophyll a/b-binding protein gene displayed both light- and chloroplast-dependent expression in rice, and that the promoter from the Arabidopsis S-adenosylmethionine synthetase gene was, as in transgenic Arabidopsis and tobacco, preferentially expressed in cells surrounding the vascular bundles.
嵌合基因的调控基因表达已在电穿孔原生质体中得到广泛研究。然而,这些检测方法的适用性有限,因为原生质体在生理上并不总是与其来源的细胞相同。我们开发了一种将DNA电穿孔导入水稻完整且有组织的叶片结构的方法。新基因传递系统的优化主要包括消除外植体释放的核酸酶、延长DNA/外植体孵育时间以及延长脉冲时间。使用在组成型启动子控制下的β-葡萄糖醛酸酶基因,我们证明了叶基部内的所有细胞类型都易于通过电穿孔介导摄取DNA。尽管该技术最初是为黄化水稻幼苗的叶基部开发的,但我们证明它同样适用于其他单子叶植物,包括小麦、玉米和大麦,以及其他外植体,如水稻的黄化和绿色叶鞘及叶片组织。对电穿孔叶基部进行的瞬时基因表达分析表明,豌豆光捕获叶绿素a/b结合蛋白基因的启动子在水稻中表现出光和叶绿体依赖性表达,并且拟南芥S-腺苷甲硫氨酸合成酶基因的启动子与在转基因拟南芥和烟草中一样,在维管束周围的细胞中优先表达。