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A Double Built-In Containment Strategy for Production of Recombinant Proteins in Transgenic Rice

机译:转基因水稻生产重组蛋白的双重内置遏制策略

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摘要

Using transgenic rice as a bioreactor for mass production of pharmaceutical proteins could potentially reduce the cost of production significantly. However, a major concern over the bioreactor transgenic rice is the risk of its unintended spreading into environment and into food or feed supplies. Here we report a mitigating method to prevent unwanted transgenic rice spreading by a double built-in containment strategy, which sets a selectively termination method and a visual tag technology in the T-DNA for transformation. We created transgenic rice with an inserted T-DNA that harbors a human proinsulin gene fused with the far-red fluorescent protein gene mKate_S158A, an RNAi cassette suppressing the expression of the rice bentazon detoxification enzyme CYP81A6, and an EPSPS gene as the selection marker for transformation. Herbicide spray tests indicated that such transgenic rice plants can be killed selectively by a spray of bentazon at regular field application dosage for rice weed control. Moreover, the transgenic rice seeds were bright red in color due to the fused far-red fluorescent protein, and could be easily visualized under daylight by naked eyes. Thus, the transgenic rice plants reported in this study could be selectively killed by a commonly used herbicide during their growth stage, and their seeds may be detected visually during processing and consumption after harvest. This double built-in containment strategy may greatly enhance the confinement of the transgenic rice.
机译:使用转基因水稻作为生物反应器大规模生产药物蛋白可以潜在地显着降低生产成本。然而,对生物反应器转基因水稻的主要关注是其意外传播到环境以及食物或饲料供应中的风险。在这里,我们报告了一种通过双重内置遏制策略来防止有害的转基因水稻传播的缓解方法,该策略在T-DNA中设置了选择性终止方法和可视标签技术进行转化。我们创建了带有插入的T-DNA的转基因水稻,该T-DNA包含一个与远红荧光蛋白基因mKate_S158A融合的人胰岛素原基因,一个抑制水稻苯达松解毒酶CYP81A6表达的RNAi盒以及一个EPSPS基因作为选择标记转型。除草剂喷雾试验表明,可以通过以常规田间施用剂量喷洒苯达松来选择性杀灭这种转基因水稻,以控制稻草。此外,由于融合了远红荧光蛋白,转基因水稻种子的颜色为鲜红色,并且在日光下用裸眼很容易看到。因此,本研究报道的转基因水稻植株在生长阶段可以被常用的除草剂选择性杀灭,在收获后的加工和食用过程中可以目视检测到它们的种子。这种双重内置的遏制策略可能会大大提高转基因水稻的安全性。

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