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首页> 外文期刊>Plant Cell, Tissue and Organ Culture >Seed specific expression of perilla γ-tocopherol methyltransferase gene increases α-tocopherol content in transgenic perilla ( Perilla frutescens )
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Seed specific expression of perilla γ-tocopherol methyltransferase gene increases α-tocopherol content in transgenic perilla ( Perilla frutescens )

机译:紫苏γ-生育酚甲基转移酶基因的种子特异性表达增加了转基因紫苏(Perilla frutescens)中α-生育酚的含量

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摘要

Increasing vitamin E activity in economically important oil crops such as perilla will enhance the nutritional value of these crops. Perilla (Perilla frutescens Britt) represents an important oil crop in Asian countries, including Korea. Using Agrobacterium-mediated transformation, we have engineered perilla with the γ-tocopherol methyltransferase (γ-TMT) gene under the control of seed-specific vicillin promoter. Molecular characterization including PCR, Southern and Northern blots confirmed that the γ-TMT transgene was successfully inherited to and expressed in the progeny plants. The γ -TMT transgene was specifically expressed in immature seeds of transgenic plants, leading to efficient conversion of γ-tocopherol to α-tocopherol and dramatic increase in seed α-tocopherol content, as detected by high performance liquid chromatography analysis. We also showed that such a high α-tocopherol content phenotype was transmitted to the progeny plants. In addition, there was no significant change in fatty acid composition in transgenic seeds as compared with untransformed control Yeupsil cultivar, suggesting the lack of interplay between the fatty acid and tocopherol biosynthesis pathways. This was the first report on over expression of the γ-TMT gene in transgenic perilla displaying desirable high α-tocopherol content phenotype. Since α-tocopherol has the highest vitamin E activity, the transgenic perilla with high α-tocopherol content in seeds developed in this study will benefit both human and animal health.
机译:在经济上很重要的油料作物(例如紫苏)中增加维生素E的活性将增强这些作物的营养价值。紫苏(Perilla frutescens Britt)是包括韩国在内的亚洲国家的重要油料作物。使用农杆菌介导的转化,我们在种子特异性cilcilin启动子的控制下,用γ-生育酚甲基转移酶(γ-TMT)基因工程化了紫苏。包括PCR,Southern和Northern印迹在内的分子表征证实了γ-TMT转基因已成功地遗传到子代植物中并在子代植物中表达。 γ-TMT转基因在转基因植物的未成熟种子中特异性表达,从而导致γ-生育酚有效转化为α-生育酚,并通过高效液相色谱分析检测到种子α-生育酚含量急剧增加。我们还表明,如此高的α-生育酚含量表型被传递给后代植物。另外,与未转化的对照Yeupsil品种相比,转基因种子中的脂肪酸组成没有显着变化,表明脂肪酸和生育酚生物合成途径之间缺乏相互作用。这是关于γ-TMT基因在转基因紫苏中过表达的首次报道,显示出理想的高α-生育酚含量表型。由于α-生育酚具有最高的维生素E活性,本研究开发的种子中具有高α-生育酚含量的转基因紫苏将有益于人类和动物健康。

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