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A soybean (Glycine max) polyubiquitin promoter gives strong constitutive expression in transgenic soybean

机译:大豆(最大大豆)泛素启动子在转基因大豆中具有强大的组成型表达

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The success of plant genetic transformation relies greatly on the strength and specificity of the promoters used to drive genes of interest. In this study, we analyzed gfp gene expression mediated by a polyubiquitin promoter (Gmubi) from soybean (Glycine max) in stably transformed soybean tissues. Strong GFP expression was observed in stably transformed proliferative embryogenic tissues. In whole transgenic plants, GFP expression was observed in root tips, main and lateral roots, cotyledons and plumules in young plants as well as in leaf veins, petioles, flower petals, pollen, pods and developing seeds in mature plants. GFP expression was localized mainly in epidermal cells, leaf mesophyll, procambium and vascular tissues. Introduction of an intron-less version of the Gmubi promoter (Gmupri) displayed almost the same GFP expression pattern albeit at lower intensities. The Gmubi promoter showed high levels of constitutive expression and represents an alternative to viral promoters for driving gene expression in soybean.
机译:植物遗传转化的成功很大程度上取决于用于驱动目的基因的启动子的强度和特异性。在这项研究中,我们分析了由大豆(Glycine max)的多聚泛素启动子(Gmubi)介导的gfp基因表达在稳定转化的大豆组织中的表达。在稳定转化的增生性胚胎发生组织中观察到强GFP表达。在整个转基因植物中,在年轻植物的根尖,主根和侧根,子叶和胚芽以及成熟植物的叶脉,叶柄,花瓣,花粉,豆荚和发育中的种子中均观察到了GFP表达。 GFP表达主要定位在表皮细胞,叶肉,叶柄,菌柄和血管组织中。无内含子版本的Gmubi启动子(Gmupri)的引入显示了几乎相同的GFP表达模式,尽管强度较低。 Gmubi启动子显示高水平的组成型表达,并代表病毒启动子的替代品,用于驱动大豆中的基因表达。

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