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首页> 外文期刊>Plant Biotechnology Journal >RNA interference (RNAi)-induced suppression of nicotine demethylase activity reduces levels of a key carcinogen in cured tobacco leaves
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RNA interference (RNAi)-induced suppression of nicotine demethylase activity reduces levels of a key carcinogen in cured tobacco leaves

机译:RNA干扰(RNAi) - 抑制尼古丁去甲基酶活性的抑制减少了固化烟叶中的关键致癌物质的水平

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摘要

Technologies for reducing the levels of tobacco product constituents that may contribute to unwanted health effects are desired. Target compounds include tobacco-specific nitrosamines (TSNAs), a class of compounds generated through the nitrosation of pyridine alkaloids during the curing and processing of tobacco. Studies have reported the TSNA N'-nitrosonornicotine (NNN) to be carcinogenic in laboratory animals. NNN is formed via the nitrosation of nornicotine, a secondary alkaloid produced through enzymatic N-demethylation of nicotine. Strategies to lower nornicotine levels in tobacco (Nicotiana tabacum L.) could lead to a corresponding decrease in NNN accumulation in cured leaves. The major nicotine demethylase gene of tobacco has recently been isolated. In this study, a large-scale field trial was conducted to evaluate transgenic lines of burley tobacco carrying an RNA interference (RNAi) construct designed to inhibit the expression of this gene. Selected transgenic lines exhibited a six-fold decrease in nornicotine content relative to untransformed controls. Analysis of cured leaves revealed a commensurate decrease in NNN and total TSNAs. The inhibition of nicotine demethylase activity is an effective means of decreasing significantly the level of a key defined animal carcinogen present in tobacco products.
机译:期望减少可能导致不需要的健康效果的烟草产物成分水平的技术。靶化合物包括烟草特异性亚硝胺(TSNA),通过在烟草的固化和加工过程中通过吡啶生物碱的氮化产生的一类化合物。研究报道了TSNA N'-NITROSONICOTINE(NNN)在实验动物中成为致癌物质。通过粪豆酸的亚硝化,通过尼古丁的酶N-去甲基化制备的二次生物碱形成NNN。降低烟草(尼古里亚尼亚塔瓦姆L.)中粪便仪水平的策略可能导致治疗叶片中NNN积累的相应减少。最近被分离出烟草的主要尼古丁脱甲基酶基因。在这项研究中,进行了大规模的场试验,以评估携带RNA干扰(RNAi)构建体的Burley烟草的转基因系,该构建体抑制该基因的表达。所选择的转基因系相对于未转化的对照表现出粪便肉含量的六倍降低。固化叶片的分析显示NNN和总TSNA的相应性降低。尼古丁去甲基酶活性的抑制是烟草产品中存在的关键定义动物致癌物质的水平的有效方法。

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