Mol Plant Microbe Interact. 2013 Oct;26(10):1151-64. doi: 10.1094/MPMI-03-13-0064-R.
Reactive oxygen species producing NADPH oxidase (Nox) complexes are involved in defense reactions in animals and plants while they trigger infection-related processes in pathogenic fungi. Knowledge about the composition and localization of these complexes in fungi is limited; potential components identified thus far include two to three catalytical subunits, a regulatory subunit (NoxR), the GTPase Rac, the scaffold protein Bem1, and a tetraspanin-like membrane protein (Pls1). We showed that, in the biotrophic grass-pathogen Claviceps purpurea, the catalytical subunit CpNox1 is important for infection. Here, we present identification of major Nox complex partners and a functional analysis of CpNox2 and the tetraspanin CpPls1. We show that, as in other fungi, Nox complexes are important for formation of sclerotia; CpRac is, indeed, a complex partner because it interacts with CpNoxR, and CpNox1/2 and CpPls1 are associated with the endoplasmatic reticulum. However, unlike in all other fungi, Δcppls1 is more similar to Δcpnox1 than to Δcpnox2, and CpNox2 is not essential for infection. In contrast, Δcpnox2 shows even more pronounced disease symptoms, indicating that Cpnox2 controls the infection process and moderates damage to the host. These data confirm that fungal Nox complexes have acquired specific functions dependent of the lifestyle of the pathogen.
产生 NADPH 氧化酶 (Nox) 复合物的活性氧物种参与动物和植物的防御反应,而它们在致病真菌中引发与感染相关的过程。关于这些复合物在真菌中的组成和定位的知识有限;迄今为止已确定的潜在成分包括两个到三个催化亚基、一个调节亚基 (NoxR)、GTPase Rac、支架蛋白 Bem1 和一个四跨膜蛋白样膜蛋白 (Pls1)。我们表明,在生物营养型草病原菌 Claviceps purpurea 中,催化亚基 CpNox1 对感染很重要。在这里,我们介绍了主要 Nox 复合物伙伴的鉴定以及 CpNox2 和四跨膜蛋白 CpPls1 的功能分析。我们表明,与其他真菌一样,Nox 复合物对于形成菌核很重要;事实上,CpRac 是一个复合物伙伴,因为它与 CpNoxR 相互作用,CpNox1/2 和 CpPls1 与内质网相关联。然而,与所有其他真菌不同,Δcppls1 与 Δcpnox1 更相似,而不是与 Δcpnox2 相似,并且 CpNox2 对于感染不是必需的。相比之下,Δcpnox2 表现出更明显的疾病症状,表明 Cpnox2 控制感染过程并减轻对宿主的损害。这些数据证实,真菌 Nox 复合物已经获得了依赖于病原体生活方式的特定功能。