生物
昼夜节律
生物钟
镰刀菌酸
粗脉脉孢菌
病菌
发病机制
效应器
细胞生物学
遗传学
基因
免疫学
神经科学
镰刀菌
突变体
作者
Qiaojia Lu,Muqun Yu,Xianyun Sun,Xin Zhou,Rui Zhang,Yanyun Zhang,Xiao-Lan Liu,Zhanbiao Li,Lei Cai,Hongwei Liu,Shaojie Li,Yunkun Dang,Xiaodong Xu,Qun He,Yi Liu,Xiao Liu
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2025-03-28
卷期号:11 (13)
标识
DOI:10.1126/sciadv.ads1341
摘要
Circadian clocks are known to modulate host immune responses to pathogen infections, yet their role in influencing pathogen pathogenesis remains unclear. Here, we investigated the role of circadian clocks in regulating the pathogenesis of the fungal pathogen Fusarium oxysporum , which has multiple genes homologous to the Neurospora crassa frq due to gene duplication events, with Fofrq1 being the primary circadian clock gene. The pathogenesis of F. oxysporum in plants is controlled by its circadian clock, with infections causing severe disease symptoms at dawn. Notably, disruption of clock genes dramatically reduces fungal pathogenicity. Circadian clocks regulate the rhythmic expression of several transcription factors, including FoZafA, which enables the pathogen to adapt to zinc starvation within the plant, and FoCzf1, which governs the production of the toxin fusaric acid. Together, our findings highlight the critical roles of circadian clocks in F. oxysporum pathogenicity by regulating zinc starvation response and secondary metabolite production.
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