首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Concerted action of two avirulent spore effectors activates Reaction to Puccinia graminis 1 (Rpg1)-mediated cereal stem rust resistance
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Concerted action of two avirulent spore effectors activates Reaction to Puccinia graminis 1 (Rpg1)-mediated cereal stem rust resistance

机译:两种无毒孢子效应子的协同作用激活了对Puccinia graminis 1(Rpg1)介导的谷物茎锈病抗性的反应

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摘要

The barley stem rust resistance gene Reaction to Puccinia graminis 1 (Rpg1), encoding a receptor-like kinase, confers durable resistance to the stem rust pathogen Puccinia graminis f. sp. tritici. The fungal urediniospores form adhesion structures with the leaf epidermal cells within 1 h of inoculation, followed by hyphae and haustorium formation. The RPG1 protein is constitutively expressed and not phosphorylated. On inoculation with avirulent urediniospores, it is phosphorylated in vivo within 5 min and subsequently degraded. Application of arginine-glycine-aspartic acid peptide loops prevented the formation of adhesion structures for spore attachment, the phosphorylation of RPG1, and germination of the viable spores. Arginine-glycine-aspartic acid affinity chromatography of proteins from the ungerminated avirulent rust spores led to the purification and identification of a protein with fibronectin type III and breast cancer type 1 susceptibility protein domains and a vacuolar protein sorting-associated protein 9 with a coupling of ubiquitin to endoplasmic reticulum degradation domain. Both proteins are required to induce in vivo phosphorylation and degradation of RPG1. Combined application of both proteins caused hypersensitive reaction on the stem rust-resistant cultivar Morex but not on the susceptible cultivar Steptoe. Expression studies indicated that mRNA of both genes are present in ungerminated urediniospores and are constitutively transcribed in sporelings, infected leaves, and haustoria in the investigated avirulent races. Evidence is presented that RPG1, in yeast, interacts with the two protein effectors from the urediniospores that activate cooperatively the stem rust resistance protein RPG1 long before haustoria formation.
机译:大麦茎锈病抗性基因对编码小麦样锈菌的Puccinia graminis 1(Rpg1)的反应赋予对茎锈病病原体Puccinia graminis f的持久抗性。 sp。小麦。接种后1 h内,真菌的uresiosiospores与叶片表皮细胞形成粘附结构,随后形成菌丝和黑霉菌。 RPG1蛋白是组成型表达的而不是磷酸化的。接种无毒的梭菌孢子后,它会在5分钟内在体内磷酸化,然后降解。精氨酸-甘氨酸-天冬氨酸肽环的应用阻止了孢子附着,RPG1的磷酸化和活孢子萌发的粘附结构的形成。来自未发芽的无毒锈孢子的蛋白质的精氨酸-甘氨酸-天冬氨酸亲和色谱法导致纯化和鉴定具有纤连蛋白III型和乳腺癌1型易感性蛋白结构域以及与液泡蛋白分选相关的蛋白9的蛋白泛素向内质网降解结构域。这两种蛋白都是诱导RPG1体内磷酸化和降解所必需的。两种蛋白质的联合应用对茎锈病抗性品种Morex产生了过敏反应,而对易感品种Steptoe则没有引起过敏反应。表达研究表明,在所研究的无毒种中,这两种基因的mRNA存在于未发芽的梭孢子孢子中,并在孢子,感染的叶子和手风琴中组成性转录。证据表明,酵母中的RPG1与来自uresiosiospores的两个蛋白质效应子相互作用,该蛋白质效应子很久之前就已形成烟灰霉菌,从而协同激活茎锈病抗性蛋白质RPG1。

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