Biotechnology Laboratory, Sumitomo Chemical Co., Ltds., 4-2-1, Takatsukasa, Takarazuka, 665, Hyogo, Japan.
Plant Cell Rep. 1995 Jun;14(9):539-44. doi: 10.1007/BF00231934.
The 5' and 3' flanking regions of the soybean glycinin gene, Gy1, responsible for expression in seeds, were analyzed by quantitative transient expression assay. The construct containing the β-glucuronidase (uidA) reporter gene under the control of the 1.12 kb Gy1 promoter and 0.74 kb Gy1 terminator was introduced into immature soybean seeds and leaves by particle bombardment. To normalize the variability of introduction efficiency, a second reporter gene, firefly luciferase, was cobombarded as an internal standard, and relative activities (GUS/luciferase) were measured. There was a seed-specific β-glucuronidase (GUS) expression, as observed by X-Gluc staining. Compared with the nopaline synthase gene (nos) terminator, the Gy1 terminator enhanced the level of expression in immature seeds, indicating that the terminator region of the glycinin gene is involved in the activation of the gene expression in these seeds. To identify cis-regulatory elements in the glycinin gene upstream sequence, deleted derivatives of the promoter were fused to the luciferase reporter gene. The expression could be measured with a higher accuracy, and constructs were introduced with the internal reporter uidA gene into immature seeds. The results suggest the presence of a positive regulatory element in the -620 to --380 region of the Gy1 promoter. A deletion which eliminates the legumin box with its RY element led to increased relative activity, suggesting that this box is negatively regulating expression of the seed storage protein gene. Analysis of mutant promoters also suggest that the RY element involves negative regulation in seeds. This quantitative transient expression assay using particle bombardment provides a reliable system for the study of seed-specific gene expression in soybeans.
大豆球蛋白基因 Gy1 的 5' 和 3'侧翼区负责在种子中表达,通过定量瞬时表达测定进行了分析。含有β-葡萄糖醛酸酶(uidA)报告基因的构建体在大豆未成熟种子和叶片中通过粒子轰击引入。为了使引入效率的可变性标准化,将第二个报告基因萤火虫荧光素酶作为内部标准共轰击,并测量相对活性(GUS/荧光素酶)。通过 X-Gluc 染色观察到种子特异性的β-葡萄糖醛酸酶(GUS)表达。与胭脂碱合成酶基因(nos)终止子相比,Gy1 终止子增强了未成熟种子中的表达水平,表明球蛋白基因的终止子区域参与了这些种子中基因表达的激活。为了鉴定球蛋白基因上游序列中的顺式调控元件,将启动子的缺失衍生物与荧光素酶报告基因融合。可以更准确地测量表达,并将带有内部报告基因 uidA 的构建体引入未成熟种子中。结果表明,Gy1 启动子的-620 到-380 区域存在一个正调控元件。消除带有 RY 元件的 legumin 盒的缺失导致相对活性增加,表明该盒负调控种子贮藏蛋白基因的表达。对突变启动子的分析还表明,RY 元件涉及种子中的负调控。使用粒子轰击的这种定量瞬时表达测定为研究大豆中种子特异性基因表达提供了一个可靠的系统。