Department of Plant Pathology, Institute of Crop Science and Resource Conservation (INRES), University of Bonn, Nussallee 9, Bonn, 53115, Germany.
Gregor Mendel Institute (GMI), Austrian Academy of Sciences (OEAW), Vienna Bio Center (VBC), Dr. Bohr-Gasse 3, Vienna, 1030, Austria.
New Phytol. 2024 Nov;244(3):949-961. doi: 10.1111/nph.19967. Epub 2024 Jul 17.
Ustilago maydis is a biotrophic pathogen causing smut disease in maize. It secretes a cocktail of effector proteins, which target different host proteins during its biotrophic stages in the host plant. One such class of proteins we identified previously is TOPLESS (TPL) and TOPLESS-RELATED (TPR) transcriptional corepressors. Here, we screened 297 U. maydis effector candidates for their ability to interact with maize TPL protein RAMOSA 1 ENHANCER LOCUS 2 LIKE 2 (RELK2) and their ability to induce auxin signaling and thereby identified three novel TPL-interacting protein effectors (Tip6, Tip7, and Tip8). Structural modeling and mutational analysis allowed the identification of TPL-interaction motifs of Tip6 and Tip7. In planta interaction between Tip6 and Tip7 with RELK2 occurs mainly in nuclear compartments, whereas Tip8 colocalizes with RELK2 in a compartment outside the nucleus. Overexpression of Tip8 in nonhost plants leads to cell death, indicating recognition of the effector or its activity. By performing infection assays with single and multideletion mutants of U. maydis, we demonstrate a positive role of Tip6 and Tip7 in U. maydis virulence. Transcriptional profiling of maize leaves infected with Tip effector mutants in comparison with SG200 strain suggests Tip effector activities are not merely redundant.
玉米黑粉菌是一种生物营养性病原体,可引起玉米黑粉病。它分泌一组合成蛋白效应子,在宿主植物的生物营养阶段靶向不同的宿主蛋白。我们之前鉴定的一类蛋白质是 TOPLESS(TPL)和 TOPLESS-RELATED(TPR)转录共抑制子。在这里,我们筛选了 297 种玉米黑粉菌效应子候选物,以检测它们与玉米 TPL 蛋白 RAMOSA 1 ENHANCER LOCUS 2 LIKE 2(RELK2)相互作用的能力及其诱导生长素信号的能力,从而鉴定出三个新的 TPL 相互作用蛋白效应子(Tip6、Tip7 和 Tip8)。结构建模和突变分析允许鉴定 Tip6 和 Tip7 的 TPL 相互作用基序。Tip6 和 Tip7 与 RELK2 之间的体内相互作用主要发生在核区,而 Tip8 与 RELK2 在核外区室中共定位。Tip8 在非宿主植物中的过表达导致细胞死亡,表明效应子或其活性被识别。通过对玉米黑粉菌单突变体和多缺失突变体进行侵染试验,我们证明了 Tip6 和 Tip7 在玉米黑粉菌毒力中的积极作用。与 SG200 菌株相比,用 Tip 效应子突变体感染的玉米叶片的转录谱分析表明,Tip 效应子的活性不仅仅是冗余的。