Collins Nicholas C, Thordal-Christensen Hans, Lipka Volker, Bau Stephan, Kombrink Erich, Qiu Jin-Long, Hückelhoven Ralph, Stein Mónica, Freialdenhoven Andreas, Somerville Shauna C, Schulze-Lefert Paul
Sainsbury Laboratory John Innes Centre, Norwich, Norfolk NR4 7UH, UK.
Nature. 2003 Oct 30;425(6961):973-7. doi: 10.1038/nature02076.
Failure of pathogenic fungi to breach the plant cell wall constitutes a major component of immunity of non-host plant species--species outside the pathogen host range--and accounts for a proportion of aborted infection attempts on 'susceptible' host plants (basal resistance). Neither form of penetration resistance is understood at the molecular level. We developed a screen for penetration (pen) mutants of Arabidopsis, which are disabled in non-host penetration resistance against barley powdery mildew, Blumeria graminis f. sp. hordei, and we isolated the PEN1 gene. We also isolated barley ROR2 (ref. 2), which is required for basal penetration resistance against B. g. hordei. The genes encode functionally homologous syntaxins, demonstrating a mechanistic link between non-host resistance and basal penetration resistance in monocotyledons and dicotyledons. We show that resistance in barley requires a SNAP-25 (synaptosome-associated protein, molecular mass 25 kDa) homologue capable of forming a binary SNAP receptor (SNARE) complex with ROR2. Genetic control of vesicle behaviour at penetration sites, and plasma membrane location of PEN1/ROR2, is consistent with a proposed involvement of SNARE-complex-mediated exocytosis and/or homotypic vesicle fusion events in resistance. Functions associated with SNARE-dependent penetration resistance are dispensable for immunity mediated by race-specific resistance (R) genes, highlighting fundamental differences between these two resistance forms.
致病真菌无法突破植物细胞壁是非寄主植物物种(即病原体寄主范围之外的物种)免疫的主要组成部分,也是“易感”寄主植物上一部分感染尝试失败(基础抗性)的原因。目前在分子水平上对这两种形式的抗穿透性均不了解。我们开发了一种筛选拟南芥穿透(pen)突变体的方法,这些突变体在对大麦白粉病菌(Blumeria graminis f. sp. hordei)的非寄主穿透抗性方面存在缺陷,并且我们分离出了PEN1基因。我们还分离出了大麦ROR2(参考文献2),它是对大麦白粉病菌基础穿透抗性所必需的。这些基因编码功能同源的 syntaxin,证明了单子叶植物和双子叶植物中非寄主抗性和基础穿透抗性之间的机制联系。我们表明,大麦中的抗性需要一种能够与ROR2形成二元SNAP受体(SNARE)复合体的SNAP - 25(突触体相关蛋白,分子量25 kDa)同源物。穿透位点处囊泡行为的遗传控制以及PEN1/ROR2在质膜上的定位,与SNARE复合体介导的胞吐作用和/或同型囊泡融合事件参与抗性的推测一致。与SNARE依赖性穿透抗性相关的功能对于由小种特异性抗性(R)基因介导的免疫是可有可无的,这突出了这两种抗性形式之间的根本差异。