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首页> 外文期刊>Scientific reports. >FgSsn3 kinase, a component of the mediator complex, is important for sexual reproduction and pathogenesis in Fusarium graminearum
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FgSsn3 kinase, a component of the mediator complex, is important for sexual reproduction and pathogenesis in Fusarium graminearum

机译:FgSsn3激酶是介体复合物的组成部分,对于禾谷镰刀菌的有性生殖和发病机理很重要

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摘要

Fusarium graminearum is an important pathogen of wheat and barley. In addition to severe yield losses, infested grains are often contaminated with harmful mycotoxins. In this study, we characterized the functions of FgSSN3 kinase gene in different developmental and infection processes and gene regulation in F. graminearum. The FgSSN3 deletion mutant had a nutrient-dependent growth defects and abnormal conidium morphology. It was significantly reduced in DON production, TRI gene expression, and virulence. Deletion of FgSSN3 also resulted in up-regulation of HTF1 and PCS1 expression in juvenile cultures, and repression of TRI genes in DON-producing cultures. In addition, Fgssn3 was female sterile and defective in hypopodium formation and infectious growth. RNA-seq analysis showed that FgSsn3 is involved in the transcriptional regulation of a wide variety genes acting as either a repressor or activator. FgSsn3 physically interacted with C-type cyclin Cid1 and the cid1 mutant had similar phenotypes with Fgssn3, indicating that FgSsn3 and Cid1 form the CDK-cyclin pair as a component of the mediator complex in F. graminearum. Taken together, our results indicate that FgSSN3 is important for secondary metabolism, sexual reproduction, and plant infection, as a subunit of mediator complex contributing to transcriptional regulation of diverse genes.
机译:禾谷镰刀菌是小麦和大麦的重要病原体。除了严重的产量损失外,受侵染的谷物还经常被有害的霉菌毒素污染。在这项研究中,我们表征了FgSSN3激酶基因在不同发育和感染过程中的功能以及禾谷镰刀菌的基因调控。 FgSSN3缺失突变体具有营养依赖性的生长缺陷和分生孢子形态。 DON产量,TRI基因表达和毒力显着降低。 FgSSN3的删除还导致少年文化中的HTF1和PCS1表达上调,并在产生DON的文化中抑制TRI基因。此外,Fgssn3是雌性不育的,在次po形成和感染性生长方面存在缺陷。 RNA-seq分析表明,FgSsn3参与了多种基因的转录调控,这些基因充当阻遏物或激活物。与C型细胞周期蛋白Cid1物理相互作用的FgSsn3和cid1突变体与Fgssn3具有相似的表型,表明FgSsn3和Cid1形成CDK-细胞周期蛋白对,作为禾谷镰刀菌介导复合体的组成部分。两者合计,我们的结果表明FgSSN3对于次级代谢,有性繁殖和植物感染很重要,它是介导复合体的亚基,有助于多种基因的转录调控。

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