Wang Lu, Liu Yanzhi, Liu Jinliang, Zhang Yanhua, Zhang Xianghui, Pan Hongyu
College of Plant Sciences, Jilin University, Changchun, 130062.
Phytopathology. 2016 May;106(5):484-90. doi: 10.1094/PHYTO-08-15-0181-R. Epub 2016 Mar 22.
Sclerotinia sclerotiorum is a widely dispersed plant pathogenic fungus causing many diseases such as white mold, Sclerotinia stem rot, stalk rot, and Sclerotinia head rot on many varieties of broadleaf crops worldwide. Previous studies have shown that the Forkhead-box transcription factors (FOX TFs) play key regulatory roles in the sexual reproduction of some fungi. Ss-FoxE2 is one of four FOX TF family member genes in S. sclerotiorum. Based on ortholog function in other fungi it is hypothesized to function in S. sclerotiorum sexual reproduction. In this study, the role of Ss-FoxE2 in S. sclerotiorum was identified with a gene knock-out strategy. Following transformation and screening, strains having undergone homologous recombination in which the hygromycin resistance gene replaced the gene Ss-FoxE2 from the genomic DNA were identified. No difference in hyphae growth, number, and weight of sclerotia and no obvious change in virulence was observed among the wild type Ss-FoxE2 knock-out mutant and genetically complemented mutant; however, following induction of sclerotia for sexual development, apothecia were not formed in Ss-FoxE2 knock-out mutant. The Ss-FoxE2 gene expressed significantly higher in the apothecial stages than in other developmental stages. These results indicate that Ss-FoxE2 appears to be necessary for the regulation of sexual reproduction, but may not affect the pathogenicity and vegetative development of S. sclerotiorum significantly.
核盘菌是一种广泛分布的植物病原真菌,在全球许多阔叶作物品种上引发多种病害,如白霉病、核盘菌茎腐病、茎基腐病和核盘菌菌核病。先前的研究表明,叉头框转录因子(FOX TFs)在一些真菌的有性生殖中发挥关键调控作用。Ss-FoxE2是核盘菌中FOX TF家族成员基因的四个基因之一。基于其他真菌中的直系同源功能,推测其在核盘菌的有性生殖中发挥作用。在本研究中,采用基因敲除策略确定了Ss-FoxE2在核盘菌中的作用。经过转化和筛选,鉴定出了在基因组DNA中潮霉素抗性基因取代了Ss-FoxE2基因的同源重组菌株。在野生型、Ss-FoxE2敲除突变体和基因互补突变体之间,未观察到菌丝生长、菌核数量和重量的差异,毒力也无明显变化;然而,在诱导菌核进行有性发育后,Ss-FoxE2敲除突变体中未形成子囊盘。Ss-FoxE2基因在子囊盘阶段的表达明显高于其他发育阶段。这些结果表明,Ss-FoxE2似乎是调控有性生殖所必需的,但可能不会显著影响核盘菌的致病性和营养生长。