首页> 外文期刊>The Plant Cell >Salicylic acid-independent ENHANCED DISEASE SUSCEPTIBILITY1 signaling in Arabidopsis immunity and cell death is regulated by the monooxygenase FMO1 and the Nudix hydrolase NUDT7
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Salicylic acid-independent ENHANCED DISEASE SUSCEPTIBILITY1 signaling in Arabidopsis immunity and cell death is regulated by the monooxygenase FMO1 and the Nudix hydrolase NUDT7

机译:单氧合酶FMO1和Nudix水解酶NUDT7调节拟南芥免疫和细胞死亡中不依赖水杨酸的疾病易感性信号

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Arabidopsis thaliana ENHANCED DISEASE SUSCEPTIBILITY1 (EDS1) controls defense activation and programmed cell death conditioned by intracellular Toll-related immune receptors that recognize specific pathogen effectors. EDS1 is also needed for basal resistance to invasive pathogens by restricting the progression of disease. In both responses, EDS1, assisted by its interacting partner, PHYTOALEXIN-DEFICIENT4 (PAD4), regulates accumulation of the phenolic defense molecule salicylic acid (SA) and other as yet unidentified signal intermediates. An Arabidopsis whole genome microarray experiment was designed to identify genes whose expression depends on EDS1 and PAD4, irrespective of local SA accumulation, and potential candidates of an SA-independent branch of EDS1 defense were found. We define two new immune regulators through analysis of corresponding Arabidopsis loss-of-function insertion mutants. FLAVIN-DEPENDENT MONOOXYGENASE1 (FMO1) positively regulates the EDS1 pathway, and one member (NUDT7) of a family of cytosolic Nudix hydrolases exerts negative control of EDS1 signaling. Analysis of fmo1 and nudt7 mutants alone or in combination with sid2-1, a mutation that severely depletes pathogen-induced SA production, points to SA-independent functions of FMO1 and NUDT7 in EDS1-conditioned disease resistance and cell death. We find instead that SA antagonizes initiation of cell death and stunting of growth in nudt7 mutants.
机译:拟南芥增强疾病易感性1(EDS1)通过识别特定病原体效应物的细胞内Toll相关免疫受体控制防御激活和程序性细胞死亡。通过限制疾病的进展,EDS1还需要对侵袭性病原体产生基础抵抗力。在这两种反应中,EDS1在其相互作用的伴侣PHYTOALEXIN-DEFICIENT4(PAD4)的协助下,调节酚类防御分子水杨酸(SA)和其他尚未鉴定的信号中间体的积累。设计拟南芥全基因组微阵列实验,以鉴定其表达依赖于EDS1和PAD4的基因,而与局部SA的积累无关,并发现了EDS1防御的SA独立分支的潜在候选者。我们通过分析相应的拟南芥功能丧失插入突变体来定义两个新的免疫调节剂。黄酮依赖性单氧合酶1(FMO1)积极调节EDS1途径,胞质Nudix水解酶家族的一个成员(NUDT7)发挥EDS1信号转导的负调控作用。单独分析fmo1和nudt7突变体或与严重破坏病原体诱导的SA产生的sid2-1组合分析,表明FMO1和NUDT7在不依赖于EDS1的疾病抗性和细胞死亡中不依赖SA。相反,我们发现SA拮抗nudt7突变体中细胞死亡的开始和生长发育迟缓。

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