Bhattacharyya Somnath, Dey Nrisingha, Maiti Indu B
Molecular Plant Virology and Plant Genetic Engineering Laboratory, Tobacco and Health Research Institute, University of Kentucky, Lexington, KY 40546-0236, USA.
Virus Res. 2002 Dec;90(1-2):47-62. doi: 10.1016/s0166-0934(02)00146-5.
A sub-genomic transcript (Sgt) promoter was isolated from the Figwort mosaic virus (FMV) genomic clone. The FMV Sgt promoter was linked to heterologous coding sequences to form a chimeric gene construct. The 5'-3'-boundaries required for maximal activity and involvement of cis-sequences for optimal expression in plants were defined by 5'-, 3'-end deletion and internal deletion analysis of FMV Sgt promoter fragments coupled with a beta-glucuronidase reporter gene in both transient protoplast expression experiments and in transgenic plants. A 301 bp FMV Sgt promoter fragment (sequence -270 to +31 from the transcription start site; TSS) provided maximum promoter activity. The TSS of the FMV Sgt promoter was determined by primer extension analysis using total RNA from transgenic plants developed for FMV Sgt promoter: uidA fusion gene. An activator domain located upstream of the TATA box at -70 to -100 from TSS is absolutely required for promoter activity and its function is critically position-dependent with respect to TATA box. Two sequence motifs AGATTTTAAT (coordinates -100 to -91) and GTAAGCGC (coordinates -80 to -73) were found to be essential for promoter activity. The FMV Sgt promoter is less active in monocot cells; FMV Sgt promoter expression level was about 27.5-fold higher in tobacco cells compared to that in maize cells. Comparative expression analysis of FMV Sgt promoter with cauliflower mosaic virus (CaMV) 35S promoter showed that the FMV Sgt promoter is about 2-fold stronger than the CaMV 35S promoter. The FMV Sgt promoter is a constitutive promoter; expression level in seedlings was in the order: root>leaf>stem.
从玄参花叶病毒(FMV)基因组克隆中分离出一个亚基因组转录本(Sgt)启动子。将FMV Sgt启动子与异源编码序列连接,形成嵌合基因构建体。通过对FMV Sgt启动子片段进行5'端、3'端缺失和内部缺失分析,并在瞬时原生质体表达实验和转基因植物中与β-葡萄糖醛酸酶报告基因偶联,确定了植物中最大活性所需的5'-3'边界以及顺式序列对最佳表达的参与情况。一个301 bp的FMV Sgt启动子片段(转录起始位点(TSS)的序列为-270至+31)提供了最大的启动子活性。FMV Sgt启动子的TSS通过使用为FMV Sgt启动子:uidA融合基因培育的转基因植物的总RNA进行引物延伸分析来确定。位于TSS上游-70至-100的TATA框上游的激活域对于启动子活性是绝对必需的,并且其功能相对于TATA框具有严格的位置依赖性。发现两个序列基序AGATTTTAAT(坐标-100至-91)和GTAAGCGC(坐标-80至-73)对于启动子活性至关重要。FMV Sgt启动子在单子叶细胞中的活性较低;与玉米细胞相比,FMV Sgt启动子在烟草细胞中的表达水平高约27.5倍。FMV Sgt启动子与花椰菜花叶病毒(CaMV)35S启动子的比较表达分析表明,FMV Sgt启动子比CaMV 35S启动子强约2倍。FMV Sgt启动子是一个组成型启动子;在幼苗中的表达水平顺序为:根>叶>茎。