The transcription factor FgStuA regulates virulence and mycotoxin biosynthesis via recruiting the SAGA complex in Fusarium graminearum

Author:

Xu Chaoyun1,Wang Jing12,Zhang Yueqi1,Luo Yuming3,Zhao Youfu4,Chen Yun1ORCID,Ma Zhonghua1ORCID

Affiliation:

1. State Key Laboratory of Rice Biology and Breeding, Institute of Biotechnology Zhejiang University 866 Yuhangtang Road Hangzhou 310058 China

2. College of Plant Protection Southwest University Chongqing 400715 China

3. Jiangsu Key Laboratory for Eco‐Agricultural Biotechnology around Hongze Lake, Jiangsu Collaborative Innovation Center of Regional Modern Agriculture and Environmental Protection Huaiyin Normal University Huai'an 223300 China

4. Department of Plant Pathology, Irrigated Agriculture Research and Extension Center Washington State University Prosser WA 99350 USA

Abstract

Summary The conserved Spt‐Ada‐Gcn5‐Acetyltransferase (SAGA) complex controls eukaryotic transcription by modifying acetylation of histones. However, the mechanisms for this complex in regulating the transcription of target‐specific genes remain largely unknown in phytopathogenic fungi. A filamentous fungal‐specific transcription factor FgStuA was identified to interact with the SAGA complex physically. The coordinative mechanisms of FgStuA with the SAGA complex in regulating secondary metabolism and virulence were investigated in Fusarium graminearum with genetic, biochemical and molecular techniques. The transcription factor FgStuA binds to a 7‐bp cis‐element (BVTGCAK) of its target gene promoter. Under mycotoxin deoxynivalenol (DON) induction conditions, FgStuA recruits the SAGA complex into the promoter of TRI6, a core regulator of the DON biosynthesis gene cluster, leading to enhanced transcription of TRI6. During this process, we found that FgStuA is subject to acetylation by the SAGA complex, and acetylation of FgStuA plays a critical role for its enrichment in the TRI6 promoter. In addition, FgStuA together with the SAGA complex modulates fungal virulence. This study uncovers a novel regulatory mechanism of a transcription factor, which recruits and interacts with the SAGA complex to activate specific gene expression in pathogenic fungi.

Funder

Earmarked Fund for China Agriculture Research System

National Basic Research Program of China

National Natural Science Foundation of China

Publisher

Wiley

Subject

Plant Science,Physiology

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