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由丝裂原活化蛋白激酶介导的细胞壁完整性与SsFkh1之间的偶联参与了……的菌核形成和致病性。 (原文中“. ”处信息缺失)

The Coupling Between Cell Wall Integrity Mediated by MAPK Kinases and SsFkh1 Is Involved in Sclerotia Formation and Pathogenicity of .

作者信息

Cong Jie, Xiao Kunqin, Jiao Wenli, Zhang Cheng, Zhang Xianghui, Liu Jinliang, Zhang Yanhua, Pan Hongyu

机构信息

College of Plant Sciences, Jilin University, Changchun, China.

College of Resource and Environment, Jilin Agricultural University, Changchun, China.

出版信息

Front Microbiol. 2022 Apr 25;13:816091. doi: 10.3389/fmicb.2022.816091. eCollection 2022.

Abstract

The plant pathogenic fungus can survive on a wide range of hosts and cause significant losses on crop yields. FKH, a forkhead box (FOX)-containing protein, functions to regulate transcription and signal transduction. As a transcription factor (TF) with multiple biological functions in eukaryotic organisms, little research has been done on the role of FKH protein in pathogenic fungi. Fkh1 encodes a protein which has been predicted to contain FOX domain in . In this study, the deletion mutant of SsFkh1 resulted in severe defects in hyphal development, virulence, and sclerotia formation. Moreover, knockout of lead to gene functional enrichment in mitogen-activated protein kinase (MAPK) signaling pathway in transcriptome analysis and SsFkh1 was found to be involved in the maintenance of the cell wall integrity (CWI) and the MAPK signaling pathway. Yeast two-hybrid and bimolecular fluorescence complementation assays showed that SsFkh1 interacts with SsMkk1. In addition, we explored the conserved MAPK signaling pathway components, including Bck1, Mkk1, Pkc1, and Smk3 in . Δ, Δ, Δ, and Δknockout mutant strains together with Δ , Δ , Δ , and Δ complementation mutant strains were obtained. The results indicated that Δ, Δ, Δ, and Δ displayed similar phenotypes to Δ in sclerotia formation, compound appressorium development, and pathogenicity. Taken together, SsFkh1 may be the downstream substrate of SsMkk1 and involved in sclerotia formation, compound appressorium development, and pathogenicity in .

摘要

植物病原真菌可在多种寄主上存活,并导致作物产量大幅损失。FKH是一种含叉头框(FOX)的蛋白质,具有调节转录和信号转导的功能。作为一种在真核生物中具有多种生物学功能的转录因子(TF),关于FKH蛋白在致病真菌中的作用研究较少。Fkh1编码一种预测在……中含有FOX结构域的蛋白质。在本研究中,SsFkh1的缺失突变体导致菌丝发育、毒力和菌核形成出现严重缺陷。此外,在转录组分析中,……的敲除导致丝裂原活化蛋白激酶(MAPK)信号通路中的基因功能富集,并且发现SsFkh1参与细胞壁完整性(CWI)和MAPK信号通路的维持。酵母双杂交和双分子荧光互补试验表明SsFkh1与SsMkk1相互作用。此外,我们探究了……中保守的MAPK信号通路成分,包括Bck1、Mkk1、Pkc1和Smk3。获得了Δ……、Δ……、Δ……和Δ……敲除突变体菌株以及Δ……、Δ……、Δ……和Δ……互补突变体菌株。结果表明,Δ……、Δ……、Δ……和Δ……在菌核形成、复合附着胞发育和致病性方面表现出与Δ……相似的表型。综上所述,SsFkh1可能是SsMkk1的下游底物,并参与……的菌核形成、复合附着胞发育和致病性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ef3/9081980/fd2b6802a666/fmicb-13-816091-g001.jpg

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