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IRE1/bZIP60-Mediated Unfolded Protein Response Plays Distinct Roles in Plant Immunity and Abiotic Stress Responses

机译:IRE1 / bZIP60介导的未折叠蛋白质应答在植物免疫和非生物胁迫应答中起着不同的作用

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摘要

Endoplasmic reticulum (ER)-mediated protein secretion and quality control have been shown to play an important role in immune responses in both animals and plants. In mammals, the ER membrane-located IRE1 kinase/endoribonuclease, a key regulator of unfolded protein response (UPR), is required for plasma cell development to accommodate massive secretion of immunoglobulins. Plant cells can secrete the so-called pathogenesis-related (PR) proteins with antimicrobial activities upon pathogen challenge. However, whether IRE1 plays any role in plant immunity is not known. Arabidopsis thaliana has two copies of IRE1, IRE1a and IRE1b. Here, we show that both IRE1a and IRE1b are transcriptionally induced during chemically-induced ER stress, bacterial pathogen infection and treatment with the immune signal salicylic acid (SA). However, we found that IRE1a plays a predominant role in the secretion of PR proteins upon SA treatment. Consequently, the ire1a mutant plants show enhanced susceptibility to a bacterial pathogen and are deficient in establishing systemic acquired resistance (SAR), whereas ire1b is unaffected in these responses. We further demonstrate that the immune deficiency in ire1a is due to a defect in SA- and pathogen-triggered, IRE1-mediated cytoplasmic splicing of the bZIP60 mRNA, which encodes a transcription factor involved in the expression of UPR-responsive genes. Consistently, IRE1a is preferentially required for bZIP60 splicing upon pathogen infection, while IRE1b plays a major role in bZIP60 processing upon Tunicamycin (Tm)-induced stress. We also show that SA-dependent induction of UPR-responsive genes is altered in the bzip60 mutant resulting in a moderate susceptibility to a bacterial pathogen. These results indicate that the IRE1/bZIP60 branch of UPR is a part of the plant response to pathogens for which the two Arabidopsis IRE1 isoforms play only partially overlapping roles and that IRE1 has both bZIP60-dependent and bZIP60-independent functions in plant immunity.
机译:内质网(ER)介导的蛋白质分泌和质量控制已显示在动植物的免疫反应中起重要作用。在哺乳动物中,浆细胞发育需要容纳ER膜的IRE1激酶/内切核糖核酸酶(未折叠蛋白反应(UPR)的关键调节剂)来容纳免疫球蛋白的大量分泌。植物细胞可以在病原体攻击后分泌具有抗菌活性的所谓的病因相关(PR)蛋白。但是,IRE1是否在植物免疫中发挥任何作用尚不清楚。拟南芥具有IRE1,IRE1a和IRE1b的两个副本。在这里,我们表明IRE1a和IRE1b都是在化学诱导的内质网应激,细菌性病原体感染和免疫信号水杨酸(SA)处理期间被转录诱导的。但是,我们发现IRE1a在SA处理后的PR蛋白分泌中起主要作用。因此,ire1a突变体植物对细菌病原体的敏感性增强,并且缺乏建立系统获得性抗药性(SAR)的能力,而ire1b则不受这些应答的影响。我们进一步证明,ire1a中的免疫缺陷是由于bZIP60 mRNA的SA和病原体触发的,IRE1介导的胞质剪接中的缺陷所致,它编码参与UPR反应基因表达的转录因子。一致地,IRE1a是bZIP60剪接病原体感染时的首选,而IRE1b在丁卡霉素(Tm)诱导的压力下在bZIP60加工中起主要作用。我们还表明,bzip60突变体中SA依赖的UPR反应基因的诱导被改变,导致对细菌病原体的中等敏感性。这些结果表明,UPR的IRE1 / bZIP60分支是植物对病原体的一部分,病原体的两个拟南芥IRE1亚型仅部分重叠,并且IRE1在植物免疫中既具有bZIP60依赖性也具有bZIP60依赖性。

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