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COP9信号体复合物调控小麦赤霉病菌的真菌发育和毒力。

The COP9 signalosome complex regulates fungal development and virulence in the wheat scab fungus .

作者信息

Chen Ahai, Ren Yiyi, Han Xingmin, Liu Chao, Zhou Yifan, Xu Chenghui, Qi Hao, Ma Zhonghua, Chen Yun

机构信息

State Key Laboratory of Rice Biology, The Key Laboratory of Molecular Biology of Crop Pathogens and Insects, Institute of Biotechnology, Zhejiang University, Hangzhou, China.

出版信息

Front Microbiol. 2023 Apr 24;14:1179676. doi: 10.3389/fmicb.2023.1179676. eCollection 2023.

Abstract

The COP9 signalosome (Csn) complex is an evolutionarily conserved complex that regulates various important cellular processes. However, the function of the Csn complex in pathogenic fungi remains elusive. Here, the distribution of Csn subunits in the fungal kingdom was surveyed, and their biological functions were systematically characterized in the fungal pathogen , which is among the top 10 plant fungal pathogens. The results obtained from bioinformatic analyses suggested that the Csn complex consisted of seven subunits (Csn1-Csn7) and that Csn5 was the most conserved subunit across the fungi kingdom. Yeast two-hybrid assays demonstrated that the seven Csn subunits formed a complex in The Csn complex was localized to both the nucleus and cytoplasm and necessary for hyphal growth, asexual and sexual development and stress response. Transcriptome profiling revealed that the Csn complex regulated the transcription abundance of genes necessary for mycotoxin deoxynivalenol (DON) biosynthesis, subsequently regulating DON production to control fungal virulence. Collectively, the roles of the Csn complex in were comprehensively analyzed, providing new insights into the functions of the Csn complex in fungal virulence and suggesting that the complex may be a potential target for combating fungal diseases.

摘要

COP9信号体(Csn)复合物是一种进化上保守的复合物,可调节各种重要的细胞过程。然而,Csn复合物在致病真菌中的功能仍不清楚。在此,我们调查了Csn亚基在真菌界的分布,并在一种位列十大植物真菌病原体之中的真菌病原体中系统地表征了它们的生物学功能。生物信息学分析结果表明,Csn复合物由七个亚基(Csn1 - Csn7)组成,且Csn5是真菌界中最保守的亚基。酵母双杂交试验表明,七个Csn亚基在[具体真菌名称未给出]中形成了一个复合物。Csn复合物定位于细胞核和细胞质,是菌丝生长、无性和有性发育以及应激反应所必需的。转录组分析表明,Csn复合物调节霉菌毒素脱氧雪腐镰刀菌烯醇(DON)生物合成所需基因的转录丰度,随后调节DON的产生以控制真菌毒力。总的来说,我们全面分析了Csn复合物在[具体真菌名称未给出]中的作用,为Csn复合物在真菌毒力方面的功能提供了新的见解,并表明该复合物可能是对抗真菌疾病的潜在靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c17e/10165099/b9ab9d9e9320/fmicb-14-1179676-g001.jpg

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