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植物-真菌相互作用及可持续植物修复中次生代谢产物的潜在力量

The hidden power of secondary metabolites in plant-fungi interactions and sustainable phytoremediation.

作者信息

Elhamouly Neveen Atta, Hewedy Omar A, Zaitoon Amr, Miraples Angelica, Elshorbagy Omnia T, Hussien Suzan, El-Tahan Amira, Peng Deliang

机构信息

State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, China.

Department of Botany, Faculty of Agriculture, Menoufia University, Shibin El-Kom, Egypt.

出版信息

Front Plant Sci. 2022 Dec 12;13:1044896. doi: 10.3389/fpls.2022.1044896. eCollection 2022.

Abstract

The global environment is dominated by various small exotic substances, known as secondary metabolites, produced by plants and microorganisms. Plants and fungi are particularly plentiful sources of these molecules, whose physiological functions, in many cases, remain a mystery. Fungal secondary metabolites (SM) are a diverse group of substances that exhibit a wide range of chemical properties and generally fall into one of four main family groups: Terpenoids, polyketides, non-ribosomal peptides, or a combination of the latter two. They are incredibly varied in their functions and are often related to the increased fitness of the respective fungus in its environment, often competing with other microbes or interacting with plant species. Several of these metabolites have essential roles in the biological control of plant diseases by various beneficial microorganisms used for crop protection and biofertilization worldwide. Besides direct toxic effects against phytopathogens, natural metabolites can promote root and shoot development and/or disease resistance by activating host systemic defenses. The ability of these microorganisms to synthesize and store biologically active metabolites that are a potent source of novel natural compounds beneficial for agriculture is becoming a top priority for SM fungi research. In this review, we will discuss fungal-plant secondary metabolites with antifungal properties and the role of signaling molecules in induced and acquired systemic resistance activities. Additionally, fungal secondary metabolites mimic plant promotion molecules such as auxins, gibberellins, and abscisic acid, which modulate plant growth under biotic stress. Moreover, we will present a new trend regarding phytoremediation applications using fungal secondary metabolites to achieve sustainable food production and microbial diversity in an eco-friendly environment.

摘要

全球环境由植物和微生物产生的各种小型外来物质主导,这些物质被称为次生代谢产物。植物和真菌是这些分子特别丰富的来源,在许多情况下,它们的生理功能仍是个谜。真菌次生代谢产物(SM)是一类多样的物质,具有广泛的化学性质,通常分为四个主要家族类别之一:萜类化合物、聚酮化合物、非核糖体肽或后两者的组合。它们的功能极其多样,通常与各自真菌在其环境中的适应性增强有关,常常与其他微生物竞争或与植物物种相互作用。其中一些代谢产物在世界各地用于作物保护和生物施肥的各种有益微生物对植物病害的生物防治中发挥着重要作用。除了对植物病原体的直接毒性作用外,天然代谢产物还可以通过激活宿主的系统防御来促进根和芽的发育和/或抗病性。这些微生物合成和储存具有生物活性的代谢产物的能力,而这些代谢产物是对农业有益的新型天然化合物的有力来源,正成为SM真菌研究的首要任务。在这篇综述中,我们将讨论具有抗真菌特性的真菌 - 植物次生代谢产物以及信号分子在诱导和获得性系统抗性活动中的作用。此外,真菌次生代谢产物模仿植物促进分子,如生长素、赤霉素和脱落酸,它们在生物胁迫下调节植物生长。此外,我们将介绍一种利用真菌次生代谢产物进行植物修复应用的新趋势,以在生态友好的环境中实现可持续粮食生产和微生物多样性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cbd0/9790997/896fab85404b/fpls-13-1044896-g001.jpg

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