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Construction of a novel synthetic root-specific promoter and its characterization in transgenic tobacco plants

机译:新型合成根特异性启动子的构建及其在转基因烟草植物中的表征

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摘要

Synthetic promoter technology offers a framework for designing expression cassettes that could provide precise control of transgene expression. Such artificially designed promoters enable defined transgene regulation, reduce unwanted background expression, and can overcome homology-dependent gene silencing in transgenic plants. In the present study, a synthetic root-specific module was designed using characterized cis-acting elements, fused with minimal promoter (86 bp) from PortUbi882 promoter, and cloned in pCAMBIA1305.1 by replacing CaMV 35S promoter so as to drive GUS expression. Two constructs were made; one had the synthetic module at the 5′ end of the minimal promoter (SynR1), whereas in the other construct, the module was present in both 5′ and 3′ ends (SynR2). Furthermore, the synthetic promoter constructs were transformed in tobacco wherein SynR1 promoter drove constitutive expression, whereas SynR2 conferred root-specific expression though slight leaky expression was present in stem. GUS assay in the roots of transgenic tobacco plants (T1) indicated that SynR2 promoter expressed significantly higher GUS activity than the CaMV 35S promoter. The real-time quantitative PCR (RT-qPCR) analysis of GUS gene further confirmed that SynR2 promoter conferred 2.1-fold higher root-specific expression when compared to CaMV 35S promoter.Electronic supplementary materialThe online version of this article (doi:10.1007/s13205-017-0872-9) contains supplementary material, which is available to authorized users.
机译:合成启动子技术为设计表达盒提供了框架,该表达盒可以提供对转基因表达的精确控制。此类人工设计的启动子可以实现明确的转基因调控,减少不需要的背景表达,并可以克服转基因植物中依赖同源性的基因沉默。在本研究中,使用特征性的顺式作用元件设计合成的根特异性模块,与PortUbi882启动子的最小启动子(86 bp)融合,并通过替换CaMV 35S启动子克隆到pCAMBIA1305.1中以驱动GUS表达。制作了两个构建体。一个在最小启动子(SynR1)的5'端具有合成模块,而在另一种构建体中,该模块同时存在于5'和3'端(SynR2)。此外,将合成的启动子构建体转化到烟草中,其中SynR1启动子驱动组成型表达,而SynR2赋予根特异性表达,尽管茎中存在轻微的渗漏表达。转基因烟草植物(T1)根部的GUS分析表明,SynR2启动子表达的CaS活性明显高于CaMV 35S启动子。 GUS基因的实时定量PCR(RT-qPCR)分析进一步证实,与CaMV 35S启动子相比,SynR2启动子的根特异性表达高2.1倍。电子补充材料本文的在线版本(doi:10.1007 / s13205 -017-0872-9)包含补充材料,授权用户可以使用。

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