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Generation of transgenic tobacco plants with enhanced tocotrienol levels through the ectopic expression of rice homogentisate geranylgeranyl transferase

机译:通过异地表达水稻高黑麦草香叶基香叶基香叶基转移酶来生成生育三烯酚水平提高的转基因烟草植物

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Tocotrienols with three double bonds in the hydrocarbon tail are the major form of vitamin E in the seeds of most monocots and certain dicots. They have recently been attracting increasing attention for their various biological properties for human health. Homogentisate geranylgeranyl transferase (HGGT) catalyzes the committed step of tocotrienol biosynthesis. HGGT, except for enzyme from barley, has been not analyzed in detail, although cDNAs encoding HGGT have been isolated from barley, wheat, and rice. Since tocotrienol levels are higher in rice than in barley, rice HGGT (OsHGGT) may have superior enzymatic characteristics to those of barley HGGT. In the present study, we generated transgenic tobacco plants introducing OsHGGT cDNA into a nuclear genome and measured their tocopherol and tocotrienol levels. We demonstrated that the ectopic expression of OsHGGT enhanced tocotrienol levels without decreasing tocopherol levels in tobacco plants. The results of the present study may lead to a better understanding of the manipulation of vitamin E biosynthesis in leafy vegetables.
机译:在大多数单子叶植物和某些双子叶植物的种子中,在烃尾部具有三个双键的生育三烯酚是维生素E的主要形式。它们最近因其对人体健康的各种生物学特性而受到越来越多的关注。均草酸酯香叶基香叶基转移酶(HGGT)催化生育三烯酚生物合成的重要步骤。尽管已从大麦,小麦和水稻中分离出编码HGGT的cDNA,但除大麦中的酶外,尚未对HGGT进行详细分析。由于大米中的生育三烯酚含量高于大麦,因此大米HGGT(OsHGGT)的酶促特性可能优于大麦HGGT。在本研究中,我们生成了将OsHGGT cDNA引入核基因组的转基因烟草植物,并测量了它们的生育酚和生育三烯酚水平。我们证明了OsHGGT的异位表达增强了生育三烯酚水平,而没有降低烟草植物中的生育酚水平。本研究的结果可能会导致对叶类蔬菜中维生素E生物合成的操纵有更好的了解。

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