植物病原真菌的抗氧化系统:氧化应激反应中的功能及其调控机制

Jiyeun Park, H. Son
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引用次数: 0

摘要

在感染过程中,植物病原真菌会遇到来自植物的氧化应激,对这种应激做出适当的反应对它们的生存和疾病的形成至关重要。植物病原真菌已进化出多种机制来消除外部环境中的氧化剂并维持细胞的氧化还原平衡。当感知到氧化应激时,各种信号转导途径就会被触发,并激活负责氧化应激反应的下游基因。尽管对植物病原真菌的抗氧化系统及其调控机制进行了广泛的研究,但最近还没有对单个抗氧化剂的具体功能及其对致病性的影响进行系统总结。因此,我们的目标是整合以往关于植物病原真菌抗氧化系统的研究。在这篇综述中,我们探讨了真菌感染过程中的植物免疫反应,重点关注活性氧的生成和功能。此外,我们还深入研究了三种抗氧化系统,总结了它们在氧化应激反应中的功能和调控机制。这篇综述全面概述了植物病原真菌的抗氧化机制,揭示了氧化应激反应是如何导致真菌致病的。
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Antioxidant Systems of Plant Pathogenic Fungi: Functions in Oxidative Stress Response and Their Regulatory Mechanisms
During the infection process, plant pathogenic fungi encounter plant-derived oxidative stress, and an appropriate response to this stress is crucial to their survival and establishment of the disease. Plant pathogenic fungi have evolved several mechanisms to eliminate oxidants from the external environment and maintain cellular redox homeostasis. When oxidative stress is perceived, various signaling transduction pathways are triggered and activate the downstream genes responsible for the oxidative stress response. Despite extensive research on antioxidant systems and their regulatory mechanisms in plant pathogenic fungi, the specific functions of individual antioxidants and their impacts on pathogenicity have not recently been systematically summarized. Therefore, our objective is to consolidate previous research on the antioxidant systems of plant pathogenic fungi. In this review, we explore the plant immune responses during fungal infection, with a focus on the generation and function of reactive oxygen species. Furthermore, we delve into the three antioxidant systems, summarizing their functions and regulatory mechanisms involved in oxidative stress response. This comprehensive review provides an integrated overview of the antioxidant mechanisms within plant pathogenic fungi, revealing how the oxidative stress response contributes to their pathogenicity.
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