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Applications of EcR gene switch technology in functional genomics

机译:EcR基因开关技术在功能基因组学中的应用

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Genetic engineering of plants using transgenic technology is targeted to enhance agronomic performance or improved quality traits in a wide variety of plant species, and has become a fundamental tool for basic research in plant biotechnology. Constitutive promoters are presently the primary means used to express transgenes in plants. However, inducible gene regulation systems based on specific chemicals have many potential applications in agriculture and for enhancing the basic understanding of gene function. As a result, several gene switches have been developed. The ecdysone receptor gene switch is one of the best inducible gene regulation systems available, because the chemical, methoxyfenozide, required for its regulation is registered for field use. An EcR gene switch with a potential for use in large-scale field applications has been developed by adopting a two-hybrid format. In a two-hybrid switch format, the GAL4 DNA binding domain (GAL4 DBD) was fused to the ligand binding domain (LBD) of the Choristoneura fumiferana ecdysone receptor (CfEcR); and, the VP16 activation domain (VP16 AD) was fused to the LBD of Locust migratoria retinoid X receptor (LmRXR). The sensitivity of the CfEcR gene switch was improved from micromolar to nanomolar concentrations of ligand by using the CfEcR:LmRXR two-hybrid switch. In this report, we demonstrate the utility of CfEcR:LmRXR two-hybrid gene switch in functional genomics applications for regulating the expression of a Superman-like single zinc finger protein 11 (ZFP11) gene in both Arabidopsis and tobacco transgenic plants. Arch. Insect Biochem. Physiol. 65:164-179, 2007. (c) 2007 Wiley-Liss, Inc.
机译:使用转基因技术对植物进行基因工程的目的是增强多种植物物种的农艺性能或改善其品质性状,并且已成为植物生物技术基础研究的基本工具。目前,组成型启动子是用于在植物中表达转基因的主要手段。然而,基于特定化学物质的可诱导基因调控系统在农业中和用于增强对基因功能的基本理解方面具有许多潜在应用。结果,已经开发了几种基因开关。蜕皮激素受体基因开关是目前可用的最佳诱导基因调节系统之一,因为调节其所需的化学药品甲氧基苯甲酰脲已在现场使用。通过采用两种混合形式,已经开发出了具有潜在用于大规模现场应用的EcR基因开关。在两杂交开关形式中,GAL4 DNA结合结构域(GAL4 DBD)与Choristoneura fumiferana蜕皮激素受体(CfEcR)的配体结合结构域(LBD)融合;并且,将VP16激活域(VP16 AD)与蝗虫类视黄醇X受体(LmRXR)的LBD融合。通过使用CfEcR:LmRXR两杂交开关,将CfEcR基因开关的灵敏度从微摩尔浓度提高到纳摩尔浓度。在本报告中,我们证明了CfEcR:LmRXR两个杂交基因开关在功能基因组学应用中的作用,以调节拟南芥和烟草转基因植物中超人样单锌指蛋白11(ZFP11)基因的表达。拱。昆虫生化。生理学。 65:164-179,2007.(c)2007 Wiley-Liss,Inc.

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