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首页> 外文期刊>Metabolic engineering >An engineered combinatorial module of transcription factors boosts production of monoterpenoid indole alkaloids in Catharanthus roseus
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An engineered combinatorial module of transcription factors boosts production of monoterpenoid indole alkaloids in Catharanthus roseus

机译:转录因子的工程组合模块促进了Catharanthus Roseus的单萜吲哚生物碱的生产

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摘要

To fend off microbial pathogens and herbivores, plants have evolved a wide range of defense strategies such as physical barriers, or the production of anti-digestive proteins or bioactive specialized metabolites. Accumulation of the latter compounds is often regulated by transcriptional activation of the biosynthesis pathway genes by the phytohormone jasmonate-isoleucine. Here, we used our recently developed flower petal transformation method in the medicinal plantCatharanthus roseusto shed light on the complex regulatory mechanisms steering the jasmonate-modulated biosynthesis of monoterpenoid indole alkaloids (MIAs), to which the anti-cancer compounds vinblastine and vincristine belong. By combinatorial overexpression of the transcriptional activators BIS1, ORCA3 and MYC2a, we provide an unprecedented insight into the modular transcriptional control of MIA biosynthesis. Furthermore, we show that the expression of an engineered de-repressed MYC2a triggers a tremendous reprogramming of the MIA pathway, finally leading to massively increased accumulation of at least 23 MIAs. The current study unveils an innovative approach for future metabolic engineering efforts for the production of valuable bioactive plant compounds in non-model plants.
机译:为了抵御微生物病原体和食草动物,植物已经演变了广泛的防御策略,如物理障碍,或生产抗消化蛋白或生物活性专门的代谢物。后一种化合物的积累通常通过植物激素己酸酯 - 异亮氨酸的生物合成途径基因的转录活化来调节。在这里,我们在药用植物植物植物植物浮雕中使用了最近开发的花瓣转化方法,对转向的复杂调节机制转向单萜类吲哚生物碱(MIAS)的jasMonate调制的生物合成,其中抗癌化合物的致癌化合物的致癌化合物致植物和血管酮属于。通过组合过表达转录活化剂BIS1,ORCA3和MYC2A,我们对MIA生物合成的模块化转录控制提供了前所未有的洞察力。此外,我们表明,工程化抑制的Myc2a的表达触发了MIA途径的巨大重新编程,最终导致至少增加了至少23个米西的积累。目前的研究推出了一种创新的方法,以便在非模型植物中生产有价值的生物活性植物化合物的新代谢工程努力。

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