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禾本科布氏白粉菌大麦专化型效应蛋白候选物与大麦ARF-GAP的相互作用表明宿主囊泡运输是真菌致病作用的一个靶点。

Interaction of a Blumeria graminis f. sp. hordei effector candidate with a barley ARF-GAP suggests that host vesicle trafficking is a fungal pathogenicity target.

作者信息

Schmidt Sarah M, Kuhn Hannah, Micali Cristina, Liller Corinna, Kwaaitaal Mark, Panstruga Ralph

机构信息

Department of Plant-Microbe Interactions, Max-Planck Institute for Plant Breeding Research, Carl-von-Linné-Weg 10, D-50829, Köln, Germany.

出版信息

Mol Plant Pathol. 2014 Aug;15(6):535-49. doi: 10.1111/mpp.12110. Epub 2014 Mar 3.

Abstract

Filamentous phytopathogens, such as fungi and oomycetes, secrete effector proteins to establish successful interactions with their plant hosts. In contrast with oomycetes, little is known about effector functions in true fungi. We used a bioinformatics pipeline to identify Blumeria effector candidates (BECs) from the obligate biotrophic barley powdery mildew pathogen, Blumeria graminis f. sp. hordei (Bgh). BEC1-BEC5 are expressed at different time points during barley infection. BEC1, BEC2 and BEC4 have orthologues in the Arabidopsis thaliana-infecting powdery mildew fungus Golovinomyces orontii. Arabidopsis lines stably expressing the G. orontii BEC2 orthologue, GoEC2, are more susceptible to infection with the non-adapted fungus Erysiphe pisi, suggesting that GoEC2 contributes to powdery mildew virulence. For BEC3 and BEC4, we identified thiopurine methyltransferase, a ubiquitin-conjugating enzyme, and an ADP ribosylation factor-GTPase-activating protein (ARF-GAP) as potential host targets. Arabidopsis knockout lines of the respective HvARF-GAP orthologue (AtAGD5) allowed higher entry levels of E. pisi, but exhibited elevated resistance to the oomycete Hyaloperonospora arabidopsidis. We hypothesize that ARF-GAP proteins are conserved targets of powdery and downy mildew effectors, and we speculate that BEC4 might interfere with defence-associated host vesicle trafficking.

摘要

丝状植物病原体,如真菌和卵菌,会分泌效应蛋白以与它们的植物宿主建立成功的相互作用。与卵菌不同,对于真正真菌中效应蛋白的功能了解甚少。我们使用生物信息学流程从专性活体营养型大麦白粉病病原体禾本科布氏白粉菌大麦专化型(Bgh)中鉴定白粉菌效应蛋白候选物(BECs)。BEC1 - BEC5在大麦感染期间的不同时间点表达。BEC1、BEC2和BEC4在感染拟南芥的白粉菌戈氏白粉菌中有直系同源物。稳定表达戈氏白粉菌BEC2直系同源物GoEC2的拟南芥品系对非适应性真菌豌豆白粉菌的感染更敏感,这表明GoEC2有助于白粉病的致病性。对于BEC3和BEC4,我们鉴定出硫嘌呤甲基转移酶、一种泛素结合酶和一种ADP核糖基化因子 - GTP酶激活蛋白(ARF - GAP)作为潜在的宿主靶标。各自HvARF - GAP直系同源物(AtAGD5)的拟南芥敲除品系允许豌豆白粉菌有更高的侵入水平,但对卵菌寄生霜霉表现出更高的抗性。我们推测ARF - GAP蛋白是白粉病和霜霉病效应蛋白的保守靶标,并且我们推测BEC4可能会干扰与防御相关的宿主囊泡运输。

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