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天然产物——修饰植物中的代谢途径。

Natural products - modifying metabolite pathways in plants.

机构信息

Technische Universität Darmstadt, Plant Biotechnology and Metabolic Engineering, Darmstadt, Germany.

出版信息

Biotechnol J. 2013 Oct;8(10):1159-71. doi: 10.1002/biot.201300224. Epub 2013 Sep 17.

Abstract

The diversity of plant natural product (PNP) molecular structures is reflected in the variety of biochemical and genetic pathways that lead to their formation and accumulation. Plant secondary metabolites are important commodities, and include fragrances, colorants, and medicines. Increasing the extractable amount of PNP through plant breeding, or more recently by means of metabolic engineering, is a priority. The prerequisite for any attempt at metabolic engineering is a detailed knowledge of the underlying biosynthetic and regulatory pathways in plants. Over the past few decades, an enormous body of information about the biochemistry and genetics of biosynthetic pathways involved in PNPs production has been generated. In this review, we focus on the three large classes of plant secondary metabolites: terpenoids (or isoprenoids), phenylpropanoids, and alkaloids. All three provide excellent examples of the tremendous efforts undertaken to boost our understanding of biosynthetic pathways, resulting in the first successes in plant metabolic engineering. We further consider what essential information is still missing, and how future research directions could help achieve the rational design of plants as chemical factories for high-value products.

摘要

植物天然产物(PNP)分子结构的多样性反映了导致其形成和积累的生化和遗传途径的多样性。植物次生代谢物是重要的商品,包括香料、色素和药物。通过植物育种或最近的代谢工程来增加 PNP 的可提取量是当务之急。任何代谢工程尝试的前提是对植物中涉及 PNP 生产的生物合成和调节途径的详细了解。在过去的几十年中,已经产生了大量关于生物合成途径的生物化学和遗传学信息。在这篇综述中,我们重点介绍了植物次生代谢物的三大类:萜类(或类异戊二烯)、苯丙素类和生物碱类。所有这三种都为我们深入了解生物合成途径所付出的巨大努力提供了极好的范例,这导致了植物代谢工程的第一个成功。我们进一步考虑了仍然缺少哪些必要信息,以及未来的研究方向如何帮助实现植物作为高价值产品化学工厂的合理设计。

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