Biointeractions & Crop Protection, Rothamsted Research, Harpenden, AL5 2JQ, UK.
Plant Sciences, Rothamsted Research, Harpenden, AL5 2JQ, UK.
New Phytol. 2018 Jan;217(1):320-331. doi: 10.1111/nph.14786. Epub 2017 Sep 12.
The fungus Zymoseptoria tritici is the causal agent of Septoria Tritici Blotch (STB) disease of wheat leaves. Zymoseptoria tritici secretes many functionally uncharacterized effector proteins during infection. Here, we characterized a secreted ribonuclease (Zt6) with an unusual biphasic expression pattern. Transient expression systems were used to characterize Zt6, and mutants thereof, in both host and non-host plants. Cell-free protein expression systems monitored the impact of Zt6 protein on functional ribosomes, and in vitro assays of cells treated with recombinant Zt6 determined toxicity against bacteria, yeasts and filamentous fungi. We demonstrated that Zt6 is a functional ribonuclease and that phytotoxicity is dependent on both the presence of a 22-amino-acid N-terminal 'loop' region and its catalytic activity. Zt6 selectively cleaves both plant and animal rRNA species, and is toxic to wheat, tobacco, bacterial and yeast cells, but not to Z. tritici itself. Zt6 is the first Z. tritici effector demonstrated to have a likely dual functionality. The expression pattern of Zt6 and potent toxicity towards microorganisms suggest that, although it may contribute to the execution of wheat cell death, it is also likely to have an important secondary function in antimicrobial competition and niche protection.
小麦叶枯病菌(Zymoseptoria tritici)是导致小麦叶枯病(Septoria Tritici Blotch,STB)的病原菌。Zymoseptoria tritici 在感染过程中会分泌许多功能尚未明确的效应蛋白。在这里,我们描述了一种具有不寻常双相表达模式的分泌型核糖核酸酶(Zt6)。我们使用瞬时表达系统来研究 Zt6 及其突变体在宿主和非宿主植物中的特征。无细胞蛋白表达系统监测了 Zt6 蛋白对功能性核糖体的影响,并用重组 Zt6 处理的细胞进行体外试验,以确定其对细菌、酵母和丝状真菌的毒性。我们证明 Zt6 是一种功能性核糖核酸酶,其植物毒性既依赖于 22 个氨基酸的 N 端“环”区的存在,也依赖于其催化活性。Zt6 特异性切割植物和动物 rRNA 种类,对小麦、烟草、细菌和酵母细胞有毒,但对 Z. tritici 本身无毒。Zt6 是第一个被证明具有双重功能的 Z. tritici 效应蛋白。Zt6 的表达模式及其对微生物的强烈毒性表明,尽管它可能有助于执行小麦细胞死亡,但它也可能在抗菌竞争和生态位保护中具有重要的次要功能。