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水稻对稻瘟病菌(Magnaporthe oryzae)的急性防御中感染过程及主要机制的表征

Characterization of infected process and primary mechanism in rice Acuce defense against rice blast fungus, Magnaporthe oryzae.

作者信息

Ma Xiaoqing, Duan Guihua, Chen Hongfeng, Tang Ping, Su Shunyu, Wei Zhaoxia, Yang Jing

机构信息

State Key Laboratory for Conservation and Utilization of Bio-Resources in Yunnan, Yunnan Agricultural University, Kunming, 650201, China.

Key Laboratory of Agro-Biodiversity and Pest Management of Ministry of Education, Yunnan Agricultural University, Kunming, 650201, China.

出版信息

Plant Mol Biol. 2022 Oct;110(3):219-234. doi: 10.1007/s11103-022-01296-3. Epub 2022 Jun 27.

Abstract

Identification of infection process and defense response during M. oryzae infecting Acuce. Magnaporthe oryzae is a destructive rice pathogen. Recent studies have focused on the initial infectious stage, with a few studies conducted to elucidate the characteristics of the late infectious stages. This study aims to decipher the characteristics at different stages (biotrophic, biotrophy-necrotrophy switch (BNS), and necrotrophic) between the interaction of two M. oryzae-rice combinations and investigate the resistance mechanisms of rice to M. oryzae using cytological and molecular methods. The biotrophic phase of M. oryzae-LTH compatible interaction was found to be longer than that of M. oryzae-Acuce incompatible interaction. We also found that jasmonic acid (JA) signaling plays an important role in defense by regulating antimicrobial compound accumulation in infected Acuce via a synergistic interaction of JA-salicylic acid (SA) and JA-ethylene (ET). In infected LTH, JA-ET/JA-SA showed antagonistic interaction. Ibuprofen (IBU) is a JA inhibitor. Despite the above findings, we found that exogenous JA-Ile and IBU significantly alleviated blast symptoms in infected LTH at 36 hpi (biotrophic) and 72 hpi (BNS), indicating these two-time points may be critical for managing blast disease in the compatible interaction. Conversely, IBU significantly increased blast symptoms on the infected Acuce at 36 hpi, confirming that the JA signal plays a central role in the defense response in infected Acuce. According to transcriptional analysis, the number of genes enriched in the plant hormone signal pathway was significantly higher than in other pathways. Our findings suggested that JA-mediated defense mechanism is essential in regulating Acuce resistance, particularly during the biotrophic and BNS phases.

摘要

稻瘟病菌侵染Acuce过程中感染进程及防御反应的鉴定。稻瘟病菌是一种具有破坏性的水稻病原菌。近期研究主要集中在初始感染阶段,对后期感染阶段特征的研究较少。本研究旨在解析两种稻瘟病菌 - 水稻组合相互作用在不同阶段(活体营养阶段、活体营养 - 死体营养转换阶段(BNS)和死体营养阶段)的特征,并利用细胞学和分子方法研究水稻对稻瘟病菌的抗性机制。发现稻瘟病菌与LTH的亲和互作中活体营养阶段比稻瘟病菌与Acuce的非亲和互作中的更长。我们还发现茉莉酸(JA)信号通过JA - 水杨酸(SA)和JA - 乙烯(ET)的协同相互作用调节感染的Acuce中抗菌化合物的积累,在防御中发挥重要作用。在感染的LTH中,JA - ET/JA - SA表现出拮抗相互作用。布洛芬(IBU)是一种JA抑制剂。尽管有上述发现,但我们发现外源JA - Ile和IBU在接种后36小时(活体营养阶段)和72小时(BNS阶段)显著减轻了感染LTH中的稻瘟病症状,表明这两个时间点可能对亲和互作中稻瘟病的防治至关重要。相反,IBU在接种后36小时显著增加了感染Acuce上的稻瘟病症状,证实JA信号在感染的Acuce的防御反应中起核心作用。根据转录分析,植物激素信号通路中富集的基因数量显著高于其他通路。我们的研究结果表明,JA介导的防御机制在调节Acuce的抗性中至关重要,特别是在活体营养阶段和BNS阶段。

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