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RNAi 介导的鸟氨酸脱羧酶 (ODC) 下调导致转基因烟草中尼古丁和新烟碱水平降低。

RNAi-mediated down-regulation of ornithine decarboxylase (ODC) leads to reduced nicotine and increased anatabine levels in transgenic Nicotiana tabacum L.

机构信息

School of Biological Sciences, Monash University, Melbourne, Victoria 3800, Australia.

出版信息

Phytochemistry. 2011 Apr;72(4-5):344-55. doi: 10.1016/j.phytochem.2010.12.012. Epub 2011 Jan 11.

DOI:10.1016/j.phytochem.2010.12.012
PMID:21232776
Abstract

In leaf and root tissues of Nicotiana tabacum L. (common tobacco), nicotine is by far the predominant pyridine alkaloid, with anatabine representing only a minor component of the total alkaloid fraction. The pyrrolidine ring of nicotine is derived from the diamine putrescine, which can be synthesized either directly from ornithine via the action of ODC, or from arginine via a three enzymatic step process, initiated by ADC. Previous studies in this laboratory have shown that antisense-mediated down-regulation of ADC transcript levels has only a minor effect upon the alkaloid profile of transgenic N. tabacum. In the present study, RNAi methodology was used to down-regulate ODC transcript levels in N. tabacum, using both the Agrobacterium rhizogenes-derived hairy root culture system, and also disarmed Agrobacterium tumefaciens to generate intact transgenic plants. We observed a marked effect upon the alkaloid profile of transgenic tissues, with ODC transcript down-regulation leading to reduced nicotine and increased anatabine levels in both cultured hairy roots and intact greenhouse-grown plants. Treatment of ODC-RNAi hairy roots with low levels of the wound-associated hormone methyl jasmonate, or wounding of transgenic plants by removal of apices - both treatments which normally stimulate nicotine synthesis in tobacco - did not restore capacity for normal nicotine synthesis in transgenic tissue but did lead to markedly increased levels of anatabine. We conclude that the ODC mediated route to putrescine plays an important role in determining the normal nicotine:anatabine profile in N. tabacum and is essential in allowing N. tabacum to increase nicotine levels in response to wound-associated stress.

摘要

在烟草(普通烟草)的叶和根组织中,尼古丁是迄今为止最主要的吡啶生物碱,烟碱碱只代表总生物碱部分的一个小成分。尼古丁的吡咯烷环来自二胺腐胺,腐胺可以直接从鸟氨酸通过 ODC 的作用合成,或者通过 ADC 起始的三酶步骤过程从精氨酸合成。本实验室以前的研究表明,反义介导的 ADC 转录本水平下调对转基因烟草的生物碱谱只有很小的影响。在本研究中,使用根癌农杆菌衍生的毛状根培养系统以及无武装根癌农杆菌来生成完整的转基因植物,使用 RNAi 方法下调烟草中的 ODC 转录本水平。我们观察到对转基因组织的生物碱谱有明显的影响,ODC 转录本下调导致培养的毛状根和完整温室生长的植物中的尼古丁和烟碱碱水平降低。用低水平的与创伤相关的激素茉莉酸甲酯处理 ODC-RNAi 毛状根,或通过去除顶端来创伤转基因植物 - 这两种处理通常会刺激烟草中的尼古丁合成 - 并没有恢复转基因组织中正常尼古丁合成的能力,但确实导致烟碱碱水平明显增加。我们得出结论,ODC 介导的腐胺途径在决定烟草中的正常尼古丁:烟碱碱谱中起着重要作用,并且对于允许烟草在与创伤相关的应激下增加尼古丁水平是必不可少的。

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