首页> 外文期刊>Plant Cell Reports >A mutation in a coproporphyrinogen III oxidase gene confers growth inhibition, enhanced powdery mildew resistance and powdery mildew-induced cell death in Arabidopsis.
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A mutation in a coproporphyrinogen III oxidase gene confers growth inhibition, enhanced powdery mildew resistance and powdery mildew-induced cell death in Arabidopsis.

机译:拟卟啉原Ⅲ氧化酶基因中的突变赋予拟南芥生长抑制,增强的白粉病抗性和白粉病诱导的细胞死亡。

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A number of genes that regulate powdery mildew resistance have been identified in Arabidopsis, such as ENHANCED DISEASE RESISTANCE 1 to 3 (EDR1 to 3). To further study the molecular interactions between the powdery mildew pathogen and Arabidopsis, we isolated and characterized a mutant that exhibited enhanced resistance to powdery mildew. The mutant also showed dramatic powdery mildew-induced cell death as well as growth defects and early senescence in the absence of pathogens. We identified the affected gene by map-based cloning and found that the gene encodes a coproporphyrinogen III oxidase, a key enzyme in the tetrapyrrole biosynthesis pathway, previously known as LESION INITIATION 2 (LIN2). Therefore, we designated the mutant lin2-2. Further studies revealed that the lin2-2 mutant also displayed enhanced resistance to Hyaloperonospora arabidopsidis (H.a.) Noco2. Genetic analysis showed that the lin2-2-mediated disease resistance and spontaneous cell death were dependent on PHYTOALEXIN DEFICIENT 4 (PAD4), SALICYLIC ACID INDUCTION-DEFICIENT 2 (SID2), and NONEXPRESSOR OF PATHOGENESIS-RELATED GENES 1 (NPR1), which are all involved in salicylic acid signaling. Furthermore, the relative expression levels of defense-related genes were induced after powdery mildew infection in the lin2-2 mutant. These data indicated that LIN2 plays an important role in cell death control and defense responses in plants.
机译:已经在拟南芥中鉴定了许多调节白粉病抗性的基因,例如增强的疾病抗性1至3(EDR1至3)。为了进一步研究白粉病病原体和拟南芥之间的分子相互作用,我们分离并鉴定了对白粉病表现出增强抗性的突变体。在没有病原体的情况下,该突变体还显示出由白粉病引起的剧烈细胞死亡,以及生长缺陷和早期衰老。我们通过基于图的克隆鉴定了受影响的基因,发现该基因编码一种原卟啉原III氧化酶,该酶是四吡咯生物合成途径中的关键酶,以前称为LESION INITIATION 2(LIN2)。因此,我们将突变体命名为lin2-2。进一步的研究表明,lin2-2突变体还显示出对拟南芥透明假单胞菌(H.a.)Noco2的增强抗性。遗传分析表明,lin2-2-介导的疾病抗性和自发细胞死亡取决于植物生长素缺乏素4(PAD4),水杨酸诱导缺陷2(SID2)和与光致病相关的基因1的非表达子(NPR1)。全部参与水杨酸信号传导。此外,在lin2-2突变体中,白粉病感染后,诱导了防御相关基因的相对表达水平。这些数据表明LIN2在植物的细胞死亡控制和防御反应中起重要作用。

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