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Enhanced transgene expression in rice following selection controlled by weak promoters

机译:受弱启动子控制的选择后水稻中转基因表达增强

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Background Techniques that enable high levels of transgene expression in plants are attractive for the commercial production of plant-made recombinant pharmaceutical proteins or other gene transfer related strategies. The conventional way to increase the yield of desired transgenic products is to use strong promoters to control the expression of the transgene. Although many such promoters have been identified and characterized, the increase obtainable from a single promoter is ultimately limited to a certain extent. Results In this study, we report a method to magnify the effect of a single promoter by using a weak promoter-based selection system in transgenic rice. tCUP1, a fragment derived from the tobacco cryptic promoter (tCUP), was tested for its activity in rice by fusion to both a β-glucuronidase (GUS) reporter and a hygromycin phosphotransferase (HPT) selectable marker. The tCUP1 promoter allowed the recovery of transformed rice plants and conferred tissue specific expression of the GUS reporter, but was much weaker than the CaMV 35S promoter in driving a selectable marker for growth of resistant calli. However, in the resistant calli and regenerated transgenic plants selected by the use of tCUP1, the constitutive expression of green fluorescent protein (GFP) was dramatically increased as a result of the additive effect of multiple T-DNA insertions. The correlation between attenuated selection by a weak promoter and elevation of copy number and foreign gene expression was confirmed by using another relatively weak promoter from nopaline synthase (Nos). Conclusions The use of weak promoter derived selectable markers leads to a high T-DNA copy number and then greatly increases the expression of the foreign gene. The method described here provides an effective approach to robustly enhance the expression of heterogenous transgenes through copy number manipulation in rice.
机译:背景技术能够在植物中高水平表达转基因的技术对于植物性重组药物蛋白的商业生产或其他与基因转移有关的策略具有吸引力。增加所需转基因产物的产量的常规方法是使用强启动子来控制转基因的表达。尽管已经鉴定和表征了许多这样的启动子,但是从单个启动子获得的增加最终在一定程度上受到限制。结果在这项研究中,我们报告了一种通过在转基因水稻中使用基于弱启动子的选择系统来放大单个启动子效果的方法。通过与β-葡萄糖醛酸苷酶(GUS)报告基因和潮霉素磷酸转移酶(HPT)选择标记融合,测试了tCUP1(一种来自烟草隐性启动子(tCUP)的片段)在水稻中的活性。 tCUP1启动子可以回收转化的水稻植株并赋予GUS报告基因组织特异性表达,但在驱动选择标记来促进抗性愈伤组织生长方面比CaMV 35S启动子弱得多。但是,在通过使用tCUP1选择的抗性愈伤组织和再生转基因植物中,由于多个T-DNA插入的累加作用,绿色荧光蛋白(GFP)的组成型表达急剧增加。通过使用另一个来自胭脂碱合酶(Nos)的相对弱的启动子,证实了弱启动子的减弱的选择与拷贝数和外源基因表达的升高之间的相关性。结论使用弱启动子衍生的选择标记可导致高T-DNA拷贝数,然后大大增加外源基因的表达。本文所述方法提供了一种有效的方法,可通过操纵水稻中的拷贝数来稳健地提高异源转基因的表达。

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