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MoGrr1, a novel F-box protein, is involved in conidiogenesis and cell wall integrity and is critical for the full virulence of Magnaporthe oryzae

机译:MoGrr1,一种新型的F-box蛋白,参与分生孢子形成和细胞壁完整性,对于稻瘟病菌的全部毒力至关重要

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The production of asexual spores plays a critical role in rice blast disease. However, the mechanisms of the genes involved in the conidiogenesis pathway are not well understood. F-box proteins are specific adaptors to E3 ubiquitin ligases that determine the fate of different substrates in ubiquitin-mediated protein degradation and play diverse roles in fungal growth regulation. Here, we identify a Saccharomyces cerevisiae Grr1 homolog, MoGrr1, in Magnaporthe oryzae. Targeted disruption of Mogrr1 resulted in defects in vegetative growth, melanin pigmentation, conidial production, and resistance to oxidative stress, and these mutants consequently exhibited attenuated virulence to host plants. Microscopy studies revealed that the inability to form conidiophores is responsible for the defect in conidiation. Although the Mogrr1 mutants could develop melanized appressoria from hyphal tips, the appressoria were unable to penetrate into plant tissues due to insufficient turgor pressure within the appressorium, thereby attenuating the virulence of the mutants. Quantitative RT-PCR results revealed significantly decreased expression of chitin synthase-encoding genes, which are involved in fungal cell wall integrity, in the Mogrr1 mutants. The Mogrr1 mutants also displayed reduced expression of central components of the MAP kinase and cAMP signaling pathways, which are required for appressorium differentiation. Furthermore, domain complementation analysis indicated that two putative protein-interacting domains in MoGrr1 play essential roles during fungal development and pathogenicity. Taken together, our results suggest that MoGrr1 plays essential roles in fungal development and is required for the full virulence of M. oryzae.
机译:无性孢子的产生在稻瘟病中起关键作用。但是,关于分生孢子途径的基因的机制尚不十分清楚。 F-box蛋白是E3泛素连接酶的特异性衔接子,可确定泛素介导的蛋白质降解中不同底物的命运,并在真菌生长调节中发挥多种作用。在这里,我们在稻瘟病菌中鉴定了酿酒酵母Grr1的同系物MoGrr1。 Mogrr1的有针对性的破坏导致营养生长,黑色素色素沉着,分生孢子产生和抗氧化胁迫的缺陷,这些突变体因此对宿主植物表现出减弱的毒力。显微镜研究表明,不能形成分生孢子是造成分生孢子缺陷的原因。尽管Mogrr1突变体可以从菌丝尖端发展出黑色化的Appressoria,但由于Appressorium内压力不足,Appressoria无法穿透植物组织,从而减弱了突变体的毒力。定量RT-PCR结果显示,在Mogrr1突变体中,与真菌细胞壁完整性有关的几丁质合酶编码基因的表达显着降低。 Mogrr1突变体还显示出降低了MAP激酶和cAMP信号传导途径的中央成分的表达,这是Appressorium分化所必需的。此外,域互补分析表明,MoGrr1中的两个推定的蛋白质相互作用域在真菌发育和致病性中起着重要作用。综上所述,我们的结果表明MoGrr1在真菌发育中起着必不可少的作用,是米曲霉完全毒力所必需的。

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