植物次生代谢产物的防御作用:吲哚及其衍生物

Mulugeta Mulat, Raksha Anand, Fazlurrahman Khan
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引用次数: 3

摘要

吲哚在原核和真核生物系统中产生和功能作用的多样性有所增加。细菌产生吲哚,并将其作为一种信号分子,在种间、种内,甚至在界间水平上控制耐药性、毒力水平和生物膜的形成。许多吲哚衍生物已被发现在不同的系统中发挥重要作用,据报道,它们存在于各种细菌、植物、人类和植物病原体中。在植物界,吲哚及其衍生物已被公认为是一种对抗害虫和昆虫的防御剂。这些吲哚衍生物是由于硫代葡萄糖苷产物在昆虫攻击或物理损伤时分解而产生的。除了这些产物的防御作用外,在植物中,它们还表现出一些其他的次生反应,可能直接或间接地促进生长和发育。本文综述了吲哚及其衍生物在不同植物体系中的功能特性研究进展。并对吲哚及其衍生物在植物体内的防御作用的分子机制进行了解释。此外,还讨论了吲哚及其衍生物(天然或合成)在了解这些化合物在不同植物中的作用方面的观点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Defensive Role of Plant-Derived Secondary Metabolites: Indole and Its’ Derivatives
The diversity of indole concerning its production and functional role has increased in both prokaryotic and eukaryotic systems. The bacterial species produce indole and use it as a signaling molecule at interspecies, intraspecies, and even at an interkingdom level for controlling the capability of drug resistance, level of virulence, and biofilm formation. Numerous indole derivatives have been found to play an important role in the different systems and are reported to occur in various bacteria, plants, human, and plant pathogens. Indole and its derivatives have been recognized for a defensive role against pests and insects in the plant kingdom. These indole derivatives are produced as a result of the breakdown of glucosinolate products at the time of insect attack or physical damages. Apart from the defensive role of these products, in plants, they also exhibit several other secondary responses that may contribute directly or indirectly to the growth and development. The present review summarized recent signs of progress on the functional properties of indole and its derivatives in different plant systems. The molecular mechanism involved in the defensive role played by indole as well as its’ derivative in the plants has also been explained. Furthermore, the perspectives of indole and its derivatives (natural or synthetic) in understanding the involvement of these compounds in diverse plants have also been discussed.
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