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药用和芳香植物的基因操作。

The genetic manipulation of medicinal and aromatic plants.

作者信息

Gómez-Galera Sonia, Pelacho Ana M, Gené Anna, Capell Teresa, Christou Paul

机构信息

Departament de Producció Vegetal i Ciència Forestal, Universitat de Lleida, Av. Alcalde Rovira Roure, 191, 25198, Lleida, Spain.

出版信息

Plant Cell Rep. 2007 Oct;26(10):1689-715. doi: 10.1007/s00299-007-0384-x. Epub 2007 Jul 3.

Abstract

Medicinal and aromatic plants have always been intimately linked with human health and culture. Plant-derived medicines constitute a substantial component of present day human healthcare systems in industrialized as well as developing countries. They are products of plant secondary metabolism and are involved in many other aspects of a plant's interaction with its immediate environment. The genetic manipulation of plants together with the establishment of in vitro plant regeneration systems facilitates efforts to engineer secondary product metabolic pathways. Advances in the cloning of genes involved in relevant pathways, the development of high throughput screening systems for chemical and biological activity, genomics tools and resources, and the recognition of a higher order of regulation of secondary plant metabolism operating at the whole plant level facilitate strategies for the effective manipulation of secondary products in plants. Here, we discuss advances in engineering metabolic pathways for specific classes of compounds in medicinal and aromatic plants and we identify remaining constraints and future prospects in the field. In particular we focus on indole, tropane, nicotine, isoquinoline alcaloids, monoterpenoids such as menthol and related compounds, diterpenoids such as taxol, sequiterpenoids such as artemisinin and aromatic amino acids.

摘要

药用植物和芳香植物一直与人类健康和文化紧密相连。在工业化国家以及发展中国家,植物源药物是当今人类医疗保健系统的重要组成部分。它们是植物次生代谢的产物,并参与植物与其周围环境相互作用的许多其他方面。植物的基因操作以及体外植物再生系统的建立,有助于构建次生代谢产物的代谢途径。参与相关途径的基因克隆、化学和生物活性高通量筛选系统的开发、基因组学工具和资源,以及对在整个植物水平上运行的次生植物代谢更高层次调控的认识,都为有效调控植物次生代谢产物提供了策略。在此,我们讨论了药用植物和芳香植物中特定类化合物代谢途径工程的进展,并确定了该领域尚存的限制因素和未来前景。我们特别关注吲哚、托烷、尼古丁、异喹啉生物碱、薄荷醇等单萜类化合物及相关化合物、紫杉醇等二萜类化合物、青蒿素等倍半萜类化合物以及芳香族氨基酸。

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