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黄酮类化合物在植物中的功能及其与其他生物的相互作用。

Flavonoid Functions in Plants and Their Interactions with Other Organisms.

作者信息

Mathesius Ulrike

机构信息

Division of Plant Science, Research School of Biology, The Australian National University, 134 Linnaeus Way, Canberra, ACT 2601, Australia.

出版信息

Plants (Basel). 2018 Apr 3;7(2):30. doi: 10.3390/plants7020030.

Abstract

Flavonoids are structurally diverse secondary metabolites in plants, with a multitude of functions. These span from functions in regulating plant development, pigmentation, and UV protection, to an array of roles in defence and signalling between plants and microorganisms. Because of their prevalence in the human diet, many flavonoids constitute important components of medicinal plants and are used in the control of inflammation and cancer prevention. Advances in the elucidation of flavonoid biosynthesis and its regulation have led to an increasing number of studies aimed at engineering the flavonoid pathway for enhancing nutritional value and plant defences against pathogens and herbivores, as well as modifying the feeding value of pastures. Many future opportunities await for the exploitation of this colourful pathway in crops, pastures, and medicinal plants.

摘要

黄酮类化合物是植物中结构多样的次生代谢产物,具有多种功能。这些功能涵盖了从调节植物发育、色素沉着和紫外线防护,到在植物与微生物之间的防御和信号传导中的一系列作用。由于它们在人类饮食中普遍存在,许多黄酮类化合物是药用植物的重要组成部分,并用于控制炎症和预防癌症。在黄酮类化合物生物合成及其调控的阐明方面取得的进展,已导致越来越多的研究旨在对黄酮类化合物途径进行工程改造,以提高营养价值、增强植物对病原体和食草动物的防御能力,以及改善牧场的饲料价值。在作物、牧场和药用植物中利用这条丰富多彩的途径,未来还有许多机会等待开发。

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Metabolic engineering of flavonoids in plants and microorganisms.植物和微生物中类黄酮的代谢工程。
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