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Arabidopsis RAR1 Exerts Rate-Limiting Control of R Gene–Mediated Defenses against Multiple Pathogens

机译:拟南芥RAR1发挥R基因介导的多种病原体防御的速率限制控制

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摘要

We have identified the Arabidopsis ortholog of barley RAR1 as a component of resistance specified by multiple nucleotide binding/Leu-rich repeat resistance (R) genes recognizing different bacterial and oomycete pathogen isolates. Characterization of partially and fully defective rar1 mutations revealed that wild-type RAR1 acts as a rate-limiting regulator of early R gene–triggered defenses, determining the extent of pathogen containment, hypersensitive plant cell death, and an oxidative burst at primary infection sites. We conclude that RAR1 defense signaling function is conserved between plant species that are separated evolutionarily by 150 million years. RAR1 encodes a protein with two zinc binding (CHORD) domains that are highly conserved across eukaryotic phyla, and the single nematode CHORD-containing homolog, Chp, was found previously to be essential for embryo viability. An absence of obvious developmental defects in null Arabidopsis rar1 mutants favors the notion that, in contrast, RAR1 does not play a fundamental role in plant development.
机译:我们已经确定大麦RAR1的拟南芥直系同源物是由识别不同细菌和卵菌病原体分离物的多个核苷酸结合/富Leu的重复抗性(R)基因指定的抗性成分。部分和完全有缺陷的rar1突变的特征表明,野生型RAR1作为早期R基因触发的防御的限速调节剂,决定了病原体的包容程度,超敏植物细胞死亡和主要感染部位的氧化爆发。我们得出的结论是,RAR1防御信号转导功能在进化间隔了1.5亿年的植物物种之间得以保留。 RAR1编码具有两个锌结合(CHORD)域的蛋白质,该蛋白质在真核生物门中高度保守,以前发现单个含线虫CHORD的同源物Chp对胚胎的生存力至关重要。在无效的拟南芥rar1突变体中没有明显的发育缺陷,这支持以下观点:RAR1在植物发育中不发挥基本作用。

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