Karlsruhe Institute of Technology, Institute for Applied Biosciences, Department of Genetics, D-76187 Karlsruhe, Germany.
Mol Plant Microbe Interact. 2010 Sep;23(9):1118-29. doi: 10.1094/MPMI-23-9-1118.
Ustilago maydis is a plant-pathogenic fungus that establishes a biotrophic relationship with its host plant, Zea mays. The pathogenic stage of U. maydis is initiated by the fusion of two haploid cells, resulting in the formation of a dikaryotic hypha that invades the plant cell. The switch from saprophytic, yeast-like cells to the biotrophic hyphae requires the complex regulation of a multitude of biological processes to constitute the compatible host-fungus interaction. Transcriptional regulators involved in the establishment of the infectious dikaryon and penetration of the host tissue have been identified; however, regulators required during the post-penetration stages remained to be elucidated. In this study, we report the identification of a U. maydis forkhead transcription factor, Fox1, which is exclusively expressed during biotrophic development. Deletion of fox1 results in reduced virulence and impaired tumor development. The Deltafox1 hyphae induce the accumulation of H(2)O(2) in and around infected cells and a maize defense response phenotypically represented by the encasement of proliferating hyphae in a cellulose-containing matrix. The phenotype can be attributed to the fox1-dependent deregulation of several effector genes that are linked to pathogenic development and host defense suppression.
玉米黑粉菌是一种植物病原真菌,与宿主植物玉米建立了一种生物营养关系。玉米黑粉菌的致病阶段是由两个单倍体细胞融合启动的,融合后形成一个双核菌丝,侵入植物细胞。从腐生、酵母样细胞向生物营养菌丝的转变需要复杂的调控大量的生物学过程来构成相容的宿主-真菌相互作用。已经鉴定出参与建立传染性双核体和穿透宿主组织的转录调控因子;然而,在穿透后阶段所需的调控因子仍有待阐明。在这项研究中,我们报告了玉米黑粉菌叉头转录因子 Fox1 的鉴定,该因子仅在生物营养发育过程中表达。fox1 缺失导致毒力降低和肿瘤发育受损。Deltafox1 菌丝在感染细胞内和周围诱导 H2O2 的积累,并导致玉米防御反应,表现为增殖菌丝被纤维素包裹的基质包裹。这种表型可以归因于 fox1 依赖性的几个效应基因的失调,这些基因与致病性发育和宿主防御抑制有关。