真菌坏死性相互作用:种子对种传病原体的免疫反应案例研究

Seeds Pub Date : 2024-04-22 DOI:10.3390/seeds3020017
Mailen Ortega-Cuadros, Sophie Aligon, Tatiana Arias, A. Vasco-Palacios, Cassandre Rosier--Pennevert, Natalia Guschinskaya, Aurélia Rolland, Philippe Grappin
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引用次数: 0

摘要

无论是在自然环境中还是在农业生产中,种子对植物物种的延续都起着至关重要的作用。然而,种子往往面临着生物压力的挑战,如种子传播的病原真菌。这些种传真菌的代代相传以及在种子商业化过程中的传播,可能会导致全球流行病的出现,造成巨大的经济损失。尽管种子传播的病原体对农业的影响已得到公认,但我们对种子与病原体之间相互作用的了解仍然有限。本综述将种子对病原体相互作用的反应的当前知识状况与成熟的植物防御模型(主要源自叶片感染时观察到的典型生理条件)进行了比较。通过研究各种病理系统的零散结果,本综述试图全面概述我们目前对种子发育和萌发过程中相互作用的理解。本综述利用最近对拟南芥/拟南芥病理系统进行的转录组学和遗传学研究,描述了十字花科植物的坏死性相互作用,说明了种子萌发过程中的原始反应途径,这些途径与植物与病原体相互作用的一般概念明显不同。研究探讨了影响种子抗性和易感性的调控机制并存的情况,这可能会促进真菌的定殖。在农业可持续植物健康管理的背景下,萌芽期间的脆弱反应成为一个重要的考虑因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fungal Necrotrophic Interaction: A Case Study of Seed Immune Response to a Seed-Borne Pathogen
Seeds play a vital role in the perpetuation of plant species, both in natural environments and agriculture. However, they often face challenges from biotic stresses, such as seed-borne pathogenic fungi. The transgenerational transmission of these seed-borne fungi, along with their dissemination during seed commercialization, can contribute to the emergence of global epidemic diseases, resulting in substantial economic losses. Despite the recognized impact of seed-borne pathogens on agriculture, our understanding of seed–pathogen interactions remains limited. This review establishes parallels between the current state of knowledge regarding seed responses to pathogen interactions and well-established plant defense models, primarily derived from typical physiological conditions observed during leaf infections. Examining fragmented results from various pathosystems, this review seeks to offer a comprehensive overview of our current understanding of interactions during seed development and germination. The necrotrophic interactions in Brassicaceae are described using recent transcriptomic and genetic studies focused on the Arabidopsis/Alternaria pathosystem, which illustrates original response pathways in germinating seeds that markedly differ from the general concept of plant–pathogen interactions. The co-existence of regulatory mechanisms affecting both seed resistance and susceptibility, potentially promoting fungal colonization, is examined. The vulnerable response during germination emerges as a crucial consideration in the context of sustainable plant health management in agriculture.
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