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人类饮食中添加抗氧化剂:通过γ-TMT基因对芥菜进行遗传转化以提高α-生育酚含量。

Antioxidant value addition in human diets: genetic transformation of Brassica juncea with gamma-TMT gene for increased alpha-tocopherol content.

作者信息

Yusuf Mohd Aslam, Sarin Neera Bhalla

机构信息

School of Life Sciences, Jawaharlal Nehru University, New Delhi, 110067, India.

出版信息

Transgenic Res. 2007 Feb;16(1):109-13. doi: 10.1007/s11248-006-9028-0. Epub 2006 Nov 11.

Abstract

Alpha-tocopherol, the most biologically active form of vitamin E, is implicated in decreasing the risk of several types of cancers, coronary heart disease and a number of degenerative human conditions, when taken in excess of the recommended daily allowance. Natural alpha-tocopherol has twice the bioavailability of the synthetic isomer. This study describes a successful attempt at fortifying human diets with natural alpha-tocopherol by taking recourse to genetic engineering of an important oilseed crop, Brassica juncea. Gamma-tocopherol methyl transferase cDNA from Arabidopsis thaliana, coding for the enzyme catalysing the conversion of the large gamma-tocopherol pool to alpha-tocopherol, was overexpressed in B. juncea plants. The successful integration of the transgene was confirmed by PCR and Southern blot analysis, while the enhanced transcript level was evident in the northern blot analysis. HPLC analysis of the seeds of the T1 transgenic lines showed a shift in tocopherol profile with the highest over-expressors having alpha-tocopherol levels as high as sixfold over the non-transgenic controls. This study discusses the production of a transgenic oilseed crop with high alpha-tocopherol levels, which can provide a feasible, innocuous, and inexpensive way of taking the beneficial effects of high alpha-tocopherol intake to the masses.

摘要

α-生育酚是维生素E最具生物活性的形式,当摄入量超过推荐每日摄入量时,它与降低几种癌症、冠心病及一些人类退行性疾病的风险有关。天然α-生育酚的生物利用度是合成异构体的两倍。本研究描述了通过对一种重要的油料作物芥菜型油菜进行基因工程,成功地在人类饮食中强化天然α-生育酚的尝试。来自拟南芥的γ-生育酚甲基转移酶cDNA编码催化大量γ-生育酚转化为α-生育酚的酶,该cDNA在芥菜型油菜植株中过表达。通过PCR和Southern杂交分析证实了转基因的成功整合,而Northern杂交分析显示转录水平增强。对T1转基因系种子的HPLC分析表明生育酚谱发生了变化,α-生育酚水平最高的过表达植株比非转基因对照高6倍。本研究讨论了高α-生育酚水平转基因油料作物的生产,它可以为大众提供一种可行、无害且廉价的方式来摄取高α-生育酚摄入带来的益处。

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