State Key Laboratory of North China Crop Improvement and Regulation, Baoding, China.
College of Life Sciences, Hebei Agricultural University, Baoding, China.
Mol Plant Pathol. 2022 Jan;23(1):32-44. doi: 10.1111/mpp.13140. Epub 2021 Oct 10.
The fungal pathogen Setosphaeria turcica causes leaf blight on maize, which leads to considerable crop losses. However, how S. turcica establishes sustained systemic infection is largely unknown. Here, we report several novel factors contributing to S. turcica pathogenicity, identified using a genomic and transcriptional screen at different stages of S. turcica appressorium development. We identified two cytoskeleton regulators, SLM1 and SLM2, that are crucial for hypha and appressorium development. The SLM1 and SLM2 transcripts accumulated during germling stage but their levels were notably reduced at the appressorium stage. Deletion of SLM2 dramatically affected cell morphology, penetration ability, and pathogenicity. We also identified three different types of S. turcica glycosyl hydrolases that are critical for plant cell wall degradation. Their transcripts accumulated during the appressorium infection stage induced by cellophane and maize leaf. Most importantly, we characterized a novel and specific S. turcica effector, appressorium-coupled effector 1 (StACE1), whose expression is coupled to appressorium formation in S. turcica. This protein is required for maize infection and induces cell death on expression in Nicotiana benthamiana. These observations suggest that the phytopathogen S. turcica is primed in advance with multiple strategies for maize infection, which are coupled to appressorium formation at the early infection stages.
真菌病原体土耳其轮枝孢(Setosphaeria turcica)可引起玉米叶枯病,导致大量作物损失。然而,土耳其轮枝孢如何建立持续的系统性感染在很大程度上仍是未知的。在这里,我们报告了几个新的有助于土耳其轮枝孢致病性的因素,这些因素是通过在土耳其轮枝孢附着胞发育的不同阶段进行基因组和转录组筛选确定的。我们鉴定了两个细胞骨架调节剂 SLM1 和 SLM2,它们对菌丝和附着胞的发育至关重要。SLM1 和 SLM2 的转录本在芽生阶段积累,但在附着胞阶段水平显著降低。SLM2 的缺失显著影响细胞形态、穿透能力和致病性。我们还鉴定了三种不同类型的土耳其轮枝孢糖苷水解酶,它们对植物细胞壁的降解至关重要。它们的转录本在纤维素和玉米叶片诱导的附着胞感染阶段积累。最重要的是,我们对一种新型的、特异的土耳其轮枝孢效应子附着胞偶联效应子 1(StACE1)进行了表征,该效应子的表达与土耳其轮枝孢附着胞的形成相关。该蛋白是玉米感染所必需的,并在表达于本氏烟(Nicotiana benthamiana)时诱导细胞死亡。这些观察结果表明,植物病原菌土耳其轮枝孢预先准备了多种针对玉米感染的策略,这些策略与早期感染阶段附着胞的形成相关。