Development of series of gateway binary vectors, pGWBs, for realizing efficient construction of fusion genes for plant transformation

报告基因 融合蛋白 转化(遗传学) 生物 绿色荧光蛋白 多克隆站点 表达式向量 烟草蚀刻病毒 基因 花椰菜花叶病毒 格斯报告系统 融合基因 克隆(编程) 质粒 分子生物学 计算生物学 转基因 遗传学 基因表达 转基因作物 植物病毒 重组DNA 程序设计语言 计算机科学 病毒 马铃薯Y病毒
作者
Tsuyoshi Nakagawa,Takayuki Kurose,Takeshi Hino,Katsunori Tanaka,Makoto Kawamukai,Yasuo Niwa,Kiminori Toyooka,Ken Matsuoka,Tetsuro Jinbo,Tetsuya Kimura
出处
期刊:Journal of Bioscience and Bioengineering [Elsevier]
卷期号:104 (1): 34-41 被引量:1591
标识
DOI:10.1263/jbb.104.34
摘要

We developed a new series of binary vectors useful for Gateway cloning to facilitate transgenic experiments in plant biotechnology. The new system, Gateway Binary Vectors (pGWBs) realized efficient cloning, constitutive expression using the cauliflower mosaic virus (CaMV) 35S promoter and the construction of fusion genes by simple clonase reaction with an entry clone. The reporters employable in this system are β-glucuronidase (GUS), synthetic green fluorescent protein with S65T mutation (sGFP), luciferase (LUC), enhanced yellow fluorescent protein (EYFP), and enhanced cyan fluorescent protein (ECFP). The tags available are 6xHis, FLAG, 3xHA, 4xMyc, 10xMyc, GST, T7-epitope, and tandem affinity purification (TAP). In total, 13 kinds of reporter or tag were arranged and were almost applicable to both N- and C-fusions. The pGWBs could be used for many purposes, such as promoter::reporter analysis, observation of subcellular localization by the expression of proteins fused to a reporter or tag, and analysis of protein-protein interaction by copurification and immunodetection experiments. The pGWBs were constructed with modified pBI101 containing a CaMV35S promoter-driven hygromycin phosphotransferase (HPT) gene as the second selection marker. We also constructed pGWBs with the marker HPT driven by the nopaline synthase promoter. By using the pGWB system, the expression of tagged proteins, and the localization of GFP-fused proteins were easily analyzed. Moreover, tissue-specific and inducible gene expression using a promoter was also monitored with pGWBs. It is expected that, the pGWB system will serve as a powerful tool for plasmid construction in plant research.
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