Key Laboratory of Crop Genetics and Physiology of Jiangsu Province, Key Laboratory of Plant Functional Genomics of the Ministry of Education, College of Agriculture, Yangzhou University, Yangzhou, 225009, China.
Transgenic Res. 2013 Feb;22(1):89-99. doi: 10.1007/s11248-012-9630-2. Epub 2012 Jul 5.
Vitamin E comprises a group of eight lipid soluble antioxidant compounds that are an essential part of the human diet. The α-isomers of both tocopherol and tocotrienol are generally considered to have the highest antioxidant activities. γ-tocopherol methyltransferase (γ-TMT) catalyzes the final step in vitamin E biosynthesis, the methylation of γ- and δ-isomers to α- and β-isomers. In present study, the Arabidopsis γ-TMT (AtTMT) cDNA was overexpressed constitutively or in the endosperm of the elite japonica rice cultivar Wuyujing 3 (WY3) by Agrobacterium-mediated transformation. HPLC analysis showed that, in brown rice of the wild type or transgenic controls with empty vector, the α-/γ-tocotrienol ratio was only 0.7, much lower than that for tocopherol (~19.0). In transgenic rice overexpressing AtTMT driven by the constitutive Ubi promoter, most of the γ-isomers were converted to α-isomers, especially the γ- and δ-tocotrienol levels were dramatically decreased. As a result, the α-tocotrienol content was greatly increased in the transgenic seeds. Similarly, over-expression of AtTMT in the endosperm also resulted in an increase in the α-tocotrienol content. The results showed that the α-/γ-tocopherol ratio also increased in the transgenic seeds, but there was no significant effect on α-tocopherol level, which may reflect the fact that γ-tocopherol is present in very small amounts in wild type rice seeds. AtTMT overexpression had no effect on the absolute total content of either tocopherols or tocotrienols. Taken together, these results are the first demonstration that the overexpression of a foreign γ-TMT significantly shift the tocotrienol synthesis in rice, which is one of the world's most important food crops.
维生素 E 由一组 8 种脂溶性抗氧化化合物组成,是人类饮食的重要组成部分。生育酚和三烯生育酚的 α-异构体通常被认为具有最高的抗氧化活性。γ-生育酚甲基转移酶(γ-TMT)催化维生素 E 生物合成的最后一步,即 γ-和 δ-异构体向 α-和 β-异构体的甲基化。在本研究中,通过农杆菌介导的转化,拟南芥 γ-TMT(AtTMT)cDNA 被组成型或在粳稻优良品种 Wuyujing 3(WY3)的胚乳中过表达。HPLC 分析表明,在野生型或转空载体的棕色稻米中,α-/γ-三烯生育酚的比例仅为 0.7,远低于生育酚(~19.0)。在组成型 Ubi 启动子驱动下过表达 AtTMT 的转基因水稻中,大多数 γ-异构体转化为 α-异构体,特别是 γ-和 δ-三烯生育酚水平显著降低。结果,转基因种子中的α-三烯生育酚含量大大增加。同样,在胚乳中过表达 AtTMT 也导致α-三烯生育酚含量增加。结果表明,转基因种子中的α-/γ-生育酚比值也增加,但对α-生育酚水平没有显著影响,这可能反映了γ-生育酚在野生型水稻种子中含量非常少的事实。AtTMT 过表达对生育酚或三烯生育酚的绝对总含量均无影响。总之,这些结果首次证明,外源γ-TMT 的过表达可显著改变水稻中三烯生育酚的合成,而水稻是世界上最重要的粮食作物之一。