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Rewiring carotenoid biosynthesis in plants using a viral vector

机译:使用病毒载体重新加热类胡萝卜素生物合成

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Plants can be engineered to sustainably produce compounds of nutritional, industrial or pharmaceutical relevance. This is, however, a challenging task as extensive regulation of biosynthetic pathways often hampers major metabolic changes. Here we describe the use of a viral vector derived from Tobacco etch virus to express a whole heterologous metabolic pathway that produces the health-promoting carotenoid lycopene in tobacco tissues. The pathway consisted in three enzymes from the soil bacteria Pantoea ananatis. Lycopene is present at undetectable levels in chloroplasts of non-infected leaves. In tissues infected with the viral vector, however, lycopene comprised approximately 10% of the total carotenoid content. Our research further showed that plant viruses that express P. ananatis phytoene synthase (crtB), one of the three enzymes of the heterologous pathway, trigger an accumulation of endogenous carotenoids, which together with a reduction in chlorophylls eventually result in a bright yellow pigmentation of infected tissues in various host-virus combinations. So, besides illustrating the potential of viral vectors for engineering complex metabolic pathways, we also show a yellow carotenoid-based reporter that can be used to visually track infection dynamics of plant viruses either alone or in combination with other visual markers.
机译:植物可以设计成可持续生产营养,工业或药物相关性的化合物。然而,这是一个充满挑战的任务,作为生物合成途径的广泛调节通常会妨碍主要代谢变化。在这里,我们描述了衍生自烟草蚀刻病毒的病毒载体来表达在烟草组织中产生健康类胡萝卜素番茄红素的全部异源代谢途径。该途径由来自土壤细菌Pantoea Ananatis的三种酶组成。番茄红素存在于未感染叶片的叶绿体中的不可检测水平。然而,在用病毒载体感染的组织中,番茄红素包含总类胡萝卜素含量的约10%。我们的研究进一步表明,表达P. ananatis植物合酶(CRTB)的植物病毒,异源途径的三种酶之一,触发内源性类胡萝卜素的积累,其与叶绿素的还原在一起最终导致亮黄色色素沉着各种宿主病毒组合的感染组织。因此,除了说明工程复合代谢途径的病毒载体的潜力外,我们还显示出一种黄色的类胡萝卜素的记者,其可用于在视觉上跟踪植物病毒的感染动态,无论是单独的,也可以与其他视觉标记组合。

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