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The Arabidopsis miR396 mediates pathogen-associated molecular pattern-triggered immune responses against fungal pathogens

机译:拟南芥miR396介导病原体相关分子模式触发的针对真菌病原体的免疫反应

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摘要

MicroRNAs (miRNAs) play a pivotal role in regulating gene expression during plant development. Although a substantial fraction of plant miRNAs has proven responsive to pathogen infection, their role in disease resistance remains largely unknown, especially during fungal infections. In this study, we screened Arabidopsis thaliana lines in which miRNA activity has been reduced using artificial miRNA target mimics (MIM lines) for their response to fungal pathogens. Reduced activity of miR396 (MIM396 plants) was found to confer broad resistance to necrotrophic and hemibiotrophic fungal pathogens. MiR396 levels gradually decreased during fungal infection, thus, enabling its GRF (GROWTH-REGULATING FACTOR) transcription factor target genes to trigger host reprogramming. Pathogen resistance in MIM396 plants is based on a superactivation of defense responses consistent with a priming event during pathogen infection. Notably, low levels of miR396 are not translated in developmental defects in absence of pathogen challenge. Our findings support a role of miR396 in regulating plant immunity, and broaden our knowledge about the molecular players and processes that sustain defense priming. That miR396 modulates innate immunity without growth costs also suggests fine-tuning of miR396 levels as an effective biotechnological means for protection against pathogen infection.
机译:MicroRNA(miRNA)在植物发育过程中调节基因表达中起着关键作用。尽管已证明大部分植物miRNA对病原体感染有反应,但它们在抗病性中的作用仍然未知,尤其是在真菌感染期间。在这项研究中,我们筛选了拟南芥品系,其中使用人工miRNA靶模拟物(MIM品系)针对细菌病原体的反应降低了miRNA活性。发现miR396(MIM396植物)的活性降低,赋予了对坏死性和半生性真菌病原体的广泛耐药性。在真菌感染过程中,MiR396的水平逐渐降低,从而使其GRF(生长调节因子)转录因子靶基因能够触发宿主重编程。 MIM396植物中的病原体抗性基于与病原体感染期间引发事件一致的防御反应的超活化。值得注意的是,在缺乏病原体攻击的情况下,低水平的miR396不能转化为发育缺陷。我们的发现支持miR396在调节植物免疫力中的作用,并拓宽了我们对维持防御启动的分子参与者和过程的了解。 miR396可调节先天免疫力而无须增加成本,也表明miR396水平的微调是一种有效的生物技术手段,可防止病原体感染。

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