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通过代谢和钙信号传导对稻瘟病感染期间水稻免疫反应的昼夜节律调节

Circadian Regulation of the Rice Immune Response during Rice Blast Infection via Metabolic and Calcium Signaling.

作者信息

Sun Mengyan, Song Lin, Liu Qiuyun, Zhu Jichao, Ding Kunying, Du Xiangru, Lu Tao, Qian Haifeng, Fu Zhengwei, Ni Yinhua

机构信息

College of Biotechnology and Bioengineering, Zhejiang University of Technology, Hangzhou 310032, China.

College of Environment, Zhejiang University of Technology, Hangzhou 310032, China.

出版信息

J Agric Food Chem. 2025 Jan 8;73(1):273-288. doi: 10.1021/acs.jafc.4c09464. Epub 2024 Dec 26.

Abstract

The circadian clock is crucial in plant immunity and metabolism, yet the coordinating mechanisms remain elusive. In the present study, transcriptome analysis of -infected rice leaves and rhythmic analysis showed reduced amplitudes of circadian and phytochrome genes, impacting immune response, metabolic pathways, and calcium signaling. The amplitudes of pattern-triggered immunity (PTI)-related genes declined, while the rhythmicity of effector-triggered immunity (ETI)-related genes disappeared. Moreover, alterations in the phases of metabolic pathways were observed, potentially involved in immune response regulation like phytohormone biosynthesis. Calcium signaling exhibited a circadian pattern similar to that of the whole-transcriptome analysis. The administration of CaCl alleviated, whereas the calcium ion chelator EGTA aggravated, the phenotypes of rice blasts, suggesting their role in regulating the circadian clock-mediated immune response in rice. Our study highlighted the significance of circadian regulation in rice blast-induced immune modulation, which may contribute to developing immunomodulators and the formulation of chronobiology-based precise therapeutic regimens.

摘要

生物钟在植物免疫和新陈代谢中至关重要,但其协调机制仍不清楚。在本研究中,对感染水稻叶片的转录组分析和节律分析表明,生物钟和光敏色素基因的振幅降低,影响免疫反应、代谢途径和钙信号传导。模式触发免疫(PTI)相关基因的振幅下降,而效应子触发免疫(ETI)相关基因的节律性消失。此外,观察到代谢途径的相位变化,可能参与免疫反应调节,如植物激素生物合成。钙信号传导表现出与全转录组分析相似的昼夜节律模式。施用氯化钙可缓解稻瘟病表型,而钙离子螯合剂EGTA则加重稻瘟病表型,表明它们在调节水稻生物钟介导的免疫反应中发挥作用。我们的研究强调了昼夜节律调节在稻瘟病诱导的免疫调节中的重要性,这可能有助于开发免疫调节剂和制定基于时间生物学的精确治疗方案。

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