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稻瘟病菌效应蛋白Pwl2改变HIPP43的定位以抑制宿主免疫。

The Magnaporthe oryzae effector Pwl2 alters HIPP43 localization to suppress host immunity.

作者信息

Were Vincent M, Yan Xia, Foster Andrew J, Sklenar Jan, Langner Thorsten, Gentle Amber, Sahu Neha, Bentham Adam, Zdrzałek Rafał, Ryder Lauren S, Kaimenyi Davies K, De La Cruz Diana Gómez, Petit-Houdenot Yohan, Eseola Alice Bisola, Smoker Matthew, Bautista Mark Jave, Ma Weibin, Kourelis Jiorgos, Maclean Dan, Banfield Mark J, Kamoun Sophien, Menke Frank L H, Moscou Matthew J, Talbot Nicholas J

机构信息

The Sainsbury Laboratory, University of East Anglia, Norwich Research Park, Norwich NR4 7UH, UK.

Department of Molecular Biology, Max-Planck-Institute for Biology, Tübingen 72076, Germany.

出版信息

Plant Cell. 2025 Jun 4;37(6). doi: 10.1093/plcell/koaf116.

Abstract

The rice blast fungus Magnaporthe oryzae secretes a battery of effector proteins to facilitate host infection. Among these effectors, pathogenicity toward weeping lovegrass 2 (Pwl2) was originally identified as a host specificity determinant for the infection of weeping lovegrass (Eragrostis curvula) and is also recognized by the barley (Hordeum vulgare) Mla3 resistance protein. However, the biological activity of Pwl2 remains unknown. Here, we showed that the Pmk1 MAP kinase regulates PWL2 expression during the cell-to-cell movement of M. oryzae at plasmodesmata-containing pit fields. Consistent with this finding, we provided evidence that Pwl2 binds to the barley heavy metal-binding isoprenylated protein HIPP43, which results in HIPP43 displacement from plasmodesmata. Transgenic barley lines overexpressing PWL2 or HIPP43 exhibit attenuated immune responses and increased disease susceptibility. In contrast, a Pwl2SNDEYWY variant that does not interact with HIPP43 fails to alter the plasmodesmata localization of HIPP43. Targeted deletion of 3 PWL2 copies in M. oryzae resulted in a Δpwl2 mutant showing gain of virulence toward weeping lovegrass and barley Mla3 lines, but reduced blast disease severity on susceptible host plants. Taken together, our results provide evidence that Pwl2 is a virulence factor that suppresses host immunity by perturbing the plasmodesmatal deployment of HIPP43.

摘要

稻瘟病菌(Magnaporthe oryzae)分泌一系列效应蛋白以促进对宿主的感染。在这些效应蛋白中,对垂穗披碱草2(Pwl2)的致病性最初被鉴定为感染垂穗披碱草(Eragrostis curvula)的宿主特异性决定因素,并且也能被大麦(Hordeum vulgare)的Mla3抗性蛋白识别。然而,Pwl2的生物学活性仍然未知。在此,我们表明Pmk1丝裂原活化蛋白激酶在稻瘟病菌通过含胞间连丝的纹孔场进行细胞间移动过程中调节PWL2的表达。与此发现一致,我们提供证据表明Pwl2与大麦重金属结合异戊烯化蛋白HIPP43结合,这导致HIPP43从胞间连丝移位。过表达PWL2或HIPP43的转基因大麦品系表现出减弱的免疫反应和增加的病害易感性。相比之下,不与HIPP43相互作用的Pwl2SNDEYWY变体无法改变HIPP43在胞间连丝的定位。在稻瘟病菌中靶向缺失3个PWL2拷贝导致Δpwl2突变体对垂穗披碱草和大麦Mla3品系表现出毒力增强,但在易感宿主植物上的稻瘟病严重程度降低。综上所述,我们的结果提供了证据,表明Pwl2是一种毒力因子,通过扰乱HIPP43在胞间连丝的分布来抑制宿主免疫。

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