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首页> 外文期刊>Plant physiology >Mutation of a Nucleotide-Binding Leucine-Rich Repeat Immune Receptor-Type Protein Disrupts Immunity to Bacterial Blight
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Mutation of a Nucleotide-Binding Leucine-Rich Repeat Immune Receptor-Type Protein Disrupts Immunity to Bacterial Blight

机译:核苷酸结合幼亮的幼氨酸重复免疫受体型蛋白的突变破坏了细菌枯萎病

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摘要

Most characterized plant resistance proteins belong to the nucleotide-binding domain and Leu-rich repeat-containing (NLR) family. NLRs are present in an auto-inhibited state in the absence of specific pathogens, while gain-of-function mutations in NLRs usually cause autoimmunity. Here, we show that a gain-of-function mutation, weaker defense (wed), which caused a Phe-to-Leu substitution in the nucleotide-binding domain of a typical NLR in rice (Oryza sativa), led to enhanced susceptibility to Xanthomonas oryzae pv. Oryzae. The unexpected accumulation of salicylic acid (SA), along with downregulation of NONEXPRESSOR OF PR1 (NPR1), in wed indicates the potential presence of a feedback regulation loop of SA biosynthesis in rice. Epistasis analyses illustrated that SA accumulation and the NLR-associated components RAR1, OsRac1, and PhyB are dispensable for the wed phenotypes. Intriguingly, besides pattern-triggered immunity, effector-triggered immunity conferred by different resistance proteins, including Xa3/Xa26, Xa4, and Xa21, was also disturbed by wed to a certain extent, indicating the existence of shared regulatory mechanisms for various defense systems. The identification of wed therefore provides a unique system for genetic dissection of shared immune signaling pathways activated by different types of immune receptors.
机译:最具特征的植物抵抗蛋白属于核苷酸结合结构域和富含富含含量的含有含量的重复(NLR)家族。在没有特异性病原体的情况下,NLR存在于自动抑制状态下,而NLR中的功能突变通常会导致自动免疫。在这里,我们表明,功能突变较弱的防御(周三),这导致典型NLR在水稻(Oryza sativa)的核苷酸结合结构域中引起了Phe-to-Leu取代,导致了增强的易感性Xanthomonas oryzae pv。 oryzae。西红柿中的水杨酸(SA)的意外积累以及非重症体(NPR1)的下调,表明水稻中SA生物合成的反馈调节环的潜在存在。 EPSistasis分析说明了SA累积和NLR相关组分RAR1,OSRAC1和PHYB可用于结婚表型。除了模式触发的免疫之外,目的地是通过不同抗性蛋白赋予的效应触发的免疫,包括XA3 / XA26,XA4和XA21,在一定程度上也受到干扰,表明存在用于各种防御系统的共同调节机制。因此,WED的鉴定提供了由不同类型的免疫受体激活的共用免疫信号传导途径的遗传解剖遗传解剖的独特系统。

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  • 来源
    《Plant physiology 》 |2019年第3期| 共19页
  • 作者单位

    Chinese Acad Sci Inst Genet &

    Dev Biol State Key Lab Plant Genom Beijing 100101 Peoples R China;

    Chinese Acad Sci Inst Genet &

    Dev Biol State Key Lab Plant Genom Beijing 100101 Peoples R China;

    Chinese Acad Sci Inst Genet &

    Dev Biol State Key Lab Plant Genom Beijing 100101 Peoples R China;

    Chinese Acad Agr Sci China Natl Rice Res Inst State Key Lab Rice Biol Hangzhou 310006 Peoples R China;

    Chinese Acad Sci Inst Genet &

    Dev Biol State Key Lab Plant Genom Beijing 100101 Peoples R China;

    Chinese Acad Sci Inst Genet &

    Dev Biol State Key Lab Plant Genom Beijing 100101 Peoples R China;

    Yangzhou Univ Key Lab Plant Funct Genom Jiangsu Prov Key Lab Crop Genet &

    Physiol Jiangsu Prov Yangzhou 225009 Jiangsu Peoples R China;

    Anhui Acad Agr Sci Rice Res Inst Hefei 230031 Peoples R China;

    Biogle Genome Editing Ctr Changzhou 213125 Peoples R China;

    Yangzhou Univ Key Lab Plant Funct Genom Jiangsu Prov Key Lab Crop Genet &

    Physiol Jiangsu Prov Yangzhou 225009 Jiangsu Peoples R China;

    Chinese Acad Agr Sci China Natl Rice Res Inst State Key Lab Rice Biol Hangzhou 310006 Peoples R China;

    Chinese Acad Sci Inst Genet &

    Dev Biol State Key Lab Plant Genom Beijing 100101 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物生理学 ;
  • 关键词

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