Ridenour John B, Bluhm Burton H
Department of Plant Pathology, University of Arkansas Division of Agriculture, Fayetteville, AR 72701, USA.
Mol Plant Pathol. 2017 May;18(4):513-528. doi: 10.1111/mpp.12414. Epub 2016 Jul 15.
Fusarium verticillioides is a globally important pathogen of maize, capable of causing severe yield reductions and economic losses. In addition, F. verticillioides produces toxic secondary metabolites during kernel colonization that pose significant threats to human and animal health. Fusarium verticillioides and other plant-pathogenic fungi possess a large number of genes with no known or predicted function, some of which could encode novel virulence factors or antifungal targets. In this study, we identified and characterized the novel gene FUG1 (Fungal Unknown Gene 1) in F. verticillioides through functional genetics. Deletion of FUG1 impaired maize kernel colonization and fumonisin biosynthesis. In addition, deletion of FUG1 increased sensitivity to the antimicrobial compound 2-benzoxazolinone and to hydrogen peroxide, which indicates that FUG1 may play a role in mitigating stresses associated with host defence. Transcriptional profiling via RNA-sequencing (RNA-seq) identified numerous fungal genes that were differentially expressed in the kernel environment following the deletion of FUG1, including genes involved in secondary metabolism and mycelial development. Sequence analysis of the Fug1 protein provided evidence for nuclear localization, DNA binding and a domain of unknown function associated with previously characterized transcriptional regulators. This information, combined with the observed transcriptional reprogramming in the deletion mutant, suggests that FUG1 represents a novel class of fungal transcription factors or genes otherwise involved in signal transduction.
轮枝镰孢菌是一种在全球范围内对玉米具有重要影响的病原菌,能够导致严重的产量下降和经济损失。此外,轮枝镰孢菌在侵染玉米粒期间会产生有毒的次生代谢产物,对人类和动物健康构成重大威胁。轮枝镰孢菌和其他植物病原真菌拥有大量功能未知或未被预测的基因,其中一些可能编码新的致病因子或抗真菌靶点。在本研究中,我们通过功能遗传学方法在轮枝镰孢菌中鉴定并表征了新基因FUG1(真菌未知基因1)。FUG1的缺失损害了对玉米粒的侵染以及伏马菌素的生物合成。此外,FUG1的缺失增加了对抗菌化合物2-苯并恶唑啉酮和过氧化氢的敏感性,这表明FUG1可能在减轻与宿主防御相关的应激反应中发挥作用。通过RNA测序(RNA-seq)进行的转录谱分析确定了许多在FUG1缺失后在玉米粒环境中差异表达的真菌基因,包括参与次生代谢和菌丝体发育的基因。对Fug1蛋白的序列分析为其核定位、DNA结合以及与先前表征的转录调节因子相关的未知功能结构域提供了证据。这些信息,结合在缺失突变体中观察到的转录重编程,表明FUG1代表一类新型的真菌转录因子或参与信号转导的其他基因。