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FvSTUA 是. 中孢子形成、毒素合成和毒力的关键调节因子。

FvSTUA is a Key Regulator of Sporulation, Toxin Synthesis, and Virulence in .

机构信息

Department of Plant Pathology, University of Georgia, Athens, GA, U.S.A.

USDA, ARS, US National Poultry Research Center, Toxicology & Mycotoxin Research Unit, Athens, GA, U.S.A.

出版信息

Mol Plant Microbe Interact. 2020 Jul;33(7):958-971. doi: 10.1094/MPMI-09-19-0271-R. Epub 2020 Jun 2.

Abstract

is one of the most important pathogens of maize, causing rot and producing fumonisin mycotoxins during infection. Ingestion of fumonisin-contaminated corn causes underperformance and even fatal toxicity in livestock and is associated with neural tube birth defects, growth stunting in children, and some cancers. StuA, an APSES-class transcription factor, is a major developmental transcriptional regulator in fungi. It has been shown to regulate crucial developmental processes, such as sporulation, virulence, and mycotoxin synthesis among others. In this study, the role of FvSTUA in was examined by characterizing deletion mutants functionally and transcriptomally. The deletion mutants exhibited reduced vegetative growth, stunted aerial hyphae, and significant reductions in microconidiation. Macroconidiation and hydrophobicity of the deletion strains were reduced as well. Additionally, fumonisin production and virulence of the deletion mutants were greatly reduced. Transcriptomic analysis revealed downregulation of expression of several genes in the fumonisin and fusarin C biosynthetic clusters and differential expression of genes involved in conidiation and virulence. Nuclear localization of FvSTUA supported its likely function as a transcription factor. Together, our results indicate that FvSTUA plays a global role in transcriptional regulation in influencing morphogenesis, toxin production, and virulence.

摘要

是玉米的最重要病原体之一,在感染过程中会导致腐烂并产生伏马菌素真菌毒素。摄入受伏马菌素污染的玉米会导致牲畜性能下降,甚至致命毒性,并与神经管出生缺陷、儿童生长迟缓以及某些癌症有关。StuA 是一种 APSES 类转录因子,是真菌中主要的发育转录调控因子。已经表明它可以调节关键的发育过程,例如孢子形成、毒力和真菌毒素合成等。在这项研究中,通过对功能和转录组学特征进行表征,研究了 FvSTUA 在 中的作用。缺失突变体表现出营养生长减少、气生菌丝生长受阻以及微分生孢子形成显著减少。大分生孢子和疏水性的缺失菌株也减少了。此外,缺失突变体的伏马菌素产生和毒力大大降低。转录组分析显示,伏马菌素和棒曲霉素生物合成簇中的几个基因的表达下调,以及与分生孢子形成和毒力相关的基因的差异表达。FvSTUA 的核定位支持其作为转录因子的可能功能。总之,我们的结果表明,FvSTUA 在转录调控中发挥全局作用,影响形态发生、毒素产生和毒力。

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