Department of Biosciences, University of Exeter, Exeter, UK.
Department of Protecting Crops and the Environment, Rothamsted Research, Harpenden, UK.
Mol Plant Pathol. 2023 Oct;24(10):1220-1237. doi: 10.1111/mpp.13365. Epub 2023 Jun 12.
The lifecycle of Zymoseptoria tritici requires a carefully regulated asymptomatic phase within the wheat leaf following penetration of the mesophyll via stomata. Here we compare the roles in this process of two key fungal signalling pathways, mutants of which were identified through forward genetics due to their avirulence on wheat. Whole-genome resequencing of avirulent Z. tritici T-DNA transformants identified disruptive mutations in ZtBCK1 from the kinase cascade of the cell wall integrity (CWI) pathway, and the adenylate cyclase gene ZtCYR1. Targeted deletion of these genes abolished the pathogenicity of the fungus and led to similar in vitro phenotypes to those associated with disruption of putative downstream kinases, both supporting previous studies and confirming the importance of these pathways in virulence. RNA sequencing was used to investigate the effect of ZtBCK1 and ZtCYR1 deletion on gene expression in both the pathogen and host during infection. ZtBCK1 was found to be required for the adaptation to the host environment, controlling expression of infection-associated secreted proteins, including known virulence factors. Meanwhile, ZtCYR1 is implicated in controlling the switch to necrotrophy, regulating expression of effectors associated with this transition. This represents the first study to compare the influence of CWI and cAMP signalling on in planta transcription of a fungal plant pathogen, providing insights into their differential regulation of candidate effectors during invasive growth.
小麦叶肉组织中厚壁细胞的穿透需要严格调控无症状阶段,而小麦腥黑粉菌(Zymoseptoria tritici)的生命周期就需要这一过程。在此,我们通过正向遗传学比较了这一过程中两个关键真菌信号通路的作用,由于其在小麦上的非毒性,这些通路的突变体被识别出来。通过对无毒的 Z. tritici T-DNA 转化子进行全基因组重测序,我们发现细胞壁完整性(CWI)途径激酶级联中的 ZtBCK1 和腺苷酸环化酶基因 ZtCYR1 发生了破坏性突变。这些基因的靶向缺失消除了真菌的致病性,并导致与破坏推定下游激酶相关的体外表型相似,这既支持了先前的研究,也证实了这些途径在毒力中的重要性。RNA 测序用于研究 ZtBCK1 和 ZtCYR1 缺失对感染过程中病原体和宿主基因表达的影响。结果发现,ZtBCK1 对于适应宿主环境是必需的,它控制着感染相关分泌蛋白的表达,包括已知的毒性因子。同时,ZtCYR1 参与控制向坏死营养型的转变,调节与这一转变相关的效应子的表达。这是首次比较 CWI 和 cAMP 信号对真菌植物病原体体内转录的影响的研究,为它们在侵入性生长过程中对候选效应子的差异调控提供了新的见解。