Thomas M S, Flavell R B
Department of Molecular Genetics, AFRC Institute of Plant Science Research, Cambridge Laboratory, Trumpington, United Kingdom.
Plant Cell. 1990 Dec;2(12):1171-80. doi: 10.1105/tpc.2.12.1171.
Genes encoding high molecular weight (HMW) glutenin, a wheat seed storage protein, are expressed only in the developing endosperm. It was previously demonstrated that sequences essential for endosperm-specific transcription reside within 436 base pairs upstream of the initiation codon for HMW glutenin translation. We have further analyzed this region by testing the ability of a series of truncated HMW glutenin promoter fragments to enhance transcription from an adjacent heterologous promoter. The activity of these hybrid promoters was determined by measuring the expression of a linked beta-glucuronidase (GUS) reporter gene in transgenic tobacco plants. An HMW glutenin promoter fragment spanning nucleotides -375 to -45 relative to the transcription start site was found to stimulate GUS expression in tobacco seeds when inserted in either orientation upstream of the heterologous promoter. Furthermore, this fragment could also potentiate transcription when located 3' to the GUS reporter gene. Stimulation of GUS gene expression in transgenic tobacco seeds did not occur until 9 days to 12 days after anthesis, coincident with the onset of storage protein synthesis in the developing tobacco and wheat seed, and was confined to the endosperm tissue. By testing progressively shorter promoter fragments, the enhancer element responsible for this pattern of expression was localized to a 40-base pair region some 170 base pairs upstream of the start site for HMW glutenin transcription.
编码高分子量(HMW)谷蛋白(一种小麦种子贮藏蛋白)的基因仅在发育中的胚乳中表达。先前已证明,胚乳特异性转录所必需的序列位于HMW谷蛋白翻译起始密码子上游436个碱基对范围内。我们通过测试一系列截短的HMW谷蛋白启动子片段增强相邻异源启动子转录的能力,进一步分析了该区域。这些杂合启动子的活性通过测量转基因烟草植株中连接的β-葡萄糖醛酸酶(GUS)报告基因的表达来确定。发现一个相对于转录起始位点跨越核苷酸-375至-45的HMW谷蛋白启动子片段,当以任一方向插入异源启动子上游时,可刺激烟草种子中的GUS表达。此外,当该片段位于GUS报告基因的3'端时,也可增强转录。转基因烟草种子中GUS基因表达的刺激直到开花后9天至12天才出现,这与发育中的烟草和小麦种子中贮藏蛋白合成的开始相一致,并且局限于胚乳组织。通过测试逐渐缩短的启动子片段,负责这种表达模式的增强子元件被定位到HMW谷蛋白转录起始位点上游约170个碱基对处的一个40碱基对区域。