Xu D, McElroy D, Thornburg R W, Wu R
Field of Botany, Cornell University, Ithaca, NY 14853.
Plant Mol Biol. 1993 Jul;22(4):573-88. doi: 10.1007/BF00047399.
To address the question whether common signal(s) and transduction pathways are used to mediate a systemic wound response in monocot and dicot plants, a fusion of the potato proteinase inhibitor II gene (pin2) promoter and the bacterial beta-glucuronidase gene (Gus)-coding region was introduced into rice. In transgenic rice plants, the expression of the pin2-Gus fusion gene displays a systemic wound response, although the expression level is relatively low. Incorporation of the first intron from the rice actin 1 gene (Act1) into the 5'-untranslated region of the pin2-Gus construct results in high-level, systemically wound-inducible expression of the modified construct in transgenic rice plants. Histochemical analysis shows that this high-level, wound-inducible expression is associated with the vascular tissue in both leaves and roots. Furthermore, the expression of the pin2-Act1 intron-Gus fusion gene in transgenic rice plants can be systemically induced by both methyl jasmonate (MJ) and the phytohormone abscisic acid (ABA). These results suggest that the signal(s) mediating the observed systemic wound response and certain steps of the transduction pathways are conserved between dicot and monocot plants. Transient expression assays show that the pin2-Act1 intron-Gus construct is also actively expressed in transformed cells and tissues of several other monocot plants. Thus, the wound-inducible pin2 promoter in combination with the rice Act1 intron 1 might be used as an efficient regulator for foreign gene expression in transgenic monocot plants.
为了探究单子叶植物和双子叶植物是否利用共同的信号及转导途径来介导系统性伤口反应,将马铃薯蛋白酶抑制剂II基因(pin2)启动子与细菌β-葡萄糖醛酸酶基因(Gus)编码区的融合基因导入水稻。在转基因水稻植株中,pin2-Gus融合基因的表达呈现出系统性伤口反应,尽管表达水平相对较低。将水稻肌动蛋白1基因(Act1)的第一个内含子插入pin2-Gus构建体的5'非翻译区,可使修饰后的构建体在转基因水稻植株中实现高水平的、系统性伤口诱导表达。组织化学分析表明,这种高水平的伤口诱导表达与叶片和根中的维管组织有关。此外,转基因水稻植株中pin2-Act1内含子-Gus融合基因的表达可被茉莉酸甲酯(MJ)和植物激素脱落酸(ABA)系统性诱导。这些结果表明,介导观察到的系统性伤口反应的信号及转导途径的某些步骤在双子叶植物和单子叶植物之间是保守的。瞬时表达分析表明,pin2-Act1内含子-Gus构建体在其他几种单子叶植物的转化细胞和组织中也能活跃表达。因此,伤口诱导型pin2启动子与水稻Act1内含子1相结合,可作为转基因单子叶植物中外源基因表达的有效调控元件。