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基于水稻肌动蛋白1(Act1)5'区域构建用于单子叶植物转化的表达载体。

Construction of expression vectors based on the rice actin 1 (Act1) 5' region for use in monocot transformation.

作者信息

McElroy D, Blowers A D, Jenes B, Wu R

机构信息

Field of Botany, Cornell University, Ithaca, NY 14853.

出版信息

Mol Gen Genet. 1991 Dec;231(1):150-60. doi: 10.1007/BF00293832.

Abstract

It has been previously reported that the 5' region of the rice actin 1 gene (Act1) promoted high-level expression of a beta-glucuronidase reporter gene (Gus) in transformed rice cells. In this paper we describe the construction of Act1-based expression vectors for use in monocot transformation. As part of the development of these vectors, we have evaluated the influence of the Act1 first intron, the Act1-Gus junction-encoded N-terminal amino acids, and the sequence context surrounding the Act1 and Gus translation initiation site on Act1-Gus gene expression in rice and maize cells. We have found that addition of Act1 intron 1 to the transcription unit of a Gus reporter gene under control of the cauliflower mosaic virus (CaMV) 35S promoter stimulated GUS activity more than 10-fold in transformed rice cells. Optimization of the sequence context around the Gus translation initiation site resulted in a 4-fold stimulation of Gus expression in transformed rice cells. By utilizing both the Act1 intron 1 and optimized Gus translation initiation site, a 40-fold stimulation in Gus expression from the CaMV 35S promoter has been achieved in transformed rice cells; very similar results were obtained in transformed maize cells. Taken together these results suggest that the Act1-based expression vectors described here should promote the expression of foreign genes in most, if not all, transformed monocot cells to levels that have not previously been attainable with alternative expression vectors.

摘要

先前有报道称,水稻肌动蛋白1基因(Act1)的5'区域可促进β-葡萄糖醛酸酶报告基因(Gus)在转化的水稻细胞中高水平表达。在本文中,我们描述了用于单子叶植物转化的基于Act1的表达载体的构建。作为这些载体开发的一部分,我们评估了Act1第一内含子、Act1-Gus连接区编码的N端氨基酸以及Act1和Gus翻译起始位点周围的序列环境对水稻和玉米细胞中Act1-Gus基因表达的影响。我们发现,在花椰菜花叶病毒(CaMV)35S启动子控制下,将Act1内含子1添加到Gus报告基因的转录单元中,可使转化的水稻细胞中的GUS活性提高10倍以上。对Gus翻译起始位点周围的序列环境进行优化,可使转化的水稻细胞中Gus表达提高4倍。通过同时利用Act1内含子1和优化的Gus翻译起始位点,在转化的水稻细胞中,CaMV 35S启动子驱动的Gus表达提高了40倍;在转化的玉米细胞中也获得了非常相似的结果。综上所述,这些结果表明,本文所述的基于Act1的表达载体应该能够在大多数(如果不是全部)转化的单子叶植物细胞中,将外源基因的表达提升到使用其他表达载体以前无法达到的水平。

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