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]
日期:2026-07-01
卷期号:127 (1): e71016-e71016
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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