Nicotine Biosynthesis inNicotiana: A Metabolic Overview

中国烟草科学 Pub Date : 2019-05-10 DOI:10.3381/18-063
Fernanda F Zenkner, M. Margis-Pinheiro, Alexandro Cagliari
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引用次数: 14

Abstract

Alkaloids are important compounds found in Nicotiana plants, essential in plant defense against herbivores. The main alkaloid of Nicotiana tabacum, nicotine, is produced in roots and translocated to the leaves. Nicotine is formed by a pyrrolidine and a pyridine ring in a process involving several enzymes. The pyridine ring of nicotine is derived from nicotinic acid, whereas the pyrrolidine ring originates from polyamine putrescine metabolism. After synthesis in root cortical cells, a set of transporters is known to transport nicotine upward to the aerial part and store it in leaf vacuoles. Moreover, nicotine can be metabolized in leaves, giving rise to nornicotine through the N-demethylation process. Some Nicotiana wild species produce acyltransferase enzymes, which allow the plant to make N-acyl-nornicotine, an alkaloid with more potent insecticidal properties than nicotine. However, although we can find a wealth of information about the alkaloid production in Nicotiana spp., our understanding about nicotine biosynthesis, transport, and metabolism is still incomplete. This review will summarize these pathways on the basis on recent literature, as well as highlighting questions that need further investigation.
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烟草中的尼古丁生物合成:代谢综述
生物碱是在烟草植物中发现的重要化合物,对植物抵御食草动物至关重要。烟草的主要生物碱尼古丁在根中产生,并转运到叶子中。尼古丁是由一个吡咯烷和一个吡啶环在一个涉及几种酶的过程中形成的。尼古丁的吡啶环来源于烟酸,而吡啶环来源于多胺腐胺代谢。在根皮质细胞中合成尼古丁后,一组转运蛋白将尼古丁向上运输到地上部分并储存在叶液泡中。此外,尼古丁可以在叶片中代谢,通过n -去甲基化过程产生去尼古丁。一些野生烟叶产生酰基转移酶,使植物能够制造n -酰基去烟碱,一种比尼古丁更有效的杀虫特性的生物碱。然而,尽管我们可以发现烟草属生物碱生产的丰富信息,但我们对尼古丁的生物合成、运输和代谢的了解仍然不完整。这篇综述将在最近文献的基础上总结这些途径,并强调需要进一步研究的问题。
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