A coordinated, multi‐subunit chitin deacetylase complex for robust evasion of wheat immunity by Fusarium graminearum

生物 毒力 胼胝质 甲壳素 镰刀菌 微生物学 突变体 逃避(道德) 酵母 免疫系统 免疫 细胞生物学 遗传学 真菌蛋白 细胞壁 酿酒酵母 基因 寄主(生物学) 遗传筛选 呕吐毒素 先天免疫系统 突变 突变 生物化学 宿主-病原体相互作用 菌丝
作者
Mengying Guo,Jing Xu,Yongjiang Zeng,Huili Huang,Weiran Kong,Zhaomei Qi,Huiquan Liu,Ming Xu
出处
期刊:Plant Journal [Wiley]
卷期号:127 (1): e71016-e71016
标识
DOI:10.1111/tpj.71016
摘要

Fusarium head blight (FHB), caused by Fusarium graminearum, poses a significant threat to global wheat production. F. graminearum-mediated suppression of host immunity is critical for infection, yet the underlying mechanisms remain incompletely understood. Fungal chitin deacetylases (CDAs) are known to modify cell wall chitin, a potent microbe-associated molecular pattern, to evade plant defenses. Here, we investigated the CDA family in F. graminearum and identified four secreted paralogs, FgCDA1-4, that are highly induced during wheat infection. Functional analyses confirmed that all four are potent virulence factors, protecting fungal hyphae from degradation by host proteins and suppressing chitin-triggered immunity, including ROS production and callose deposition. Crucially, genetic analysis of single, double, and quadruple deletion mutants revealed a non-additive functional relationship; the virulence defect in multigene mutants was no greater than that of single-gene mutants, pointing to a coordinated mechanism rather than functional redundancy. We subsequently showed through yeast two-hybrid assays, co-immunoprecipitation, and AlphaFold-based structural modeling that FgCDA1-4 physically interact and are likely to assemble into hetero-oligomeric complexes. Our findings uncover a sophisticated immune evasion strategy where F. graminearum deploys a multi-subunit enzymatic complex to ensure robust virulence. This FgCDA complex represents a novel, high-value target for developing durable FHB resistance.
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