Genetic Engineering Research Center, School of Life Sciences, Chongqing University, Chongqing, 401331, People's Republic of China.
Chongqing Engineering Research Center for Fungal Insecticide, Chongqing, 401331, People's Republic of China.
Curr Genet. 2020 Apr;66(2):397-408. doi: 10.1007/s00294-019-01032-3. Epub 2019 Aug 30.
PacC is a pH-responsive transcription factor gene highly expressed at alkaline pH and plays distinct roles in environmental fitness, conidiation and virulence of different fungi. Here, we show biological functions of orthologous MaPacC in the locust-specific fungal pathogen Metarhizium acridum. Disruption of MapacC slowed down the fungal growth only under alkaline conditions. Intriguingly, the fungal thermotolerance was enhanced by the MapacC deletion, accompanied by transcriptional upregulation of some heat shock-responsive genes. The disruptant suffered a reduction in conidial yield and a change in conidial surface structure, but showed little change in cell wall integrity. The virulence of the disruptant against a locust species was markedly attenuated due to delayed appressorium formation, repressed expression of some insect cuticle hydrolases and slowed growth in locust hemolymph. The phenoloxidase activity and nodules of the locusts infected by the disruptant were also boosted. All of these phenotypic changes were restored by targeted gene complementation. Our results indicate that MaPacC acts a negative regulator of thermotolerance and contributes to the virulence of M. acridum by an involvement in hyphal penetration through insect cuticle and evasion from insect immunity.
PacC 是一种对 pH 敏感的转录因子基因,在碱性 pH 下高度表达,在不同真菌的环境适应性、分生孢子形成和毒力方面发挥着不同的作用。在这里,我们展示了同源的 MaPacC 在蝗虫特异性真菌病原体绿僵菌中的生物学功能。MapacC 的缺失仅在碱性条件下减缓了真菌的生长速度。有趣的是,MapacC 的缺失增强了真菌的耐热性,同时一些热应激响应基因的转录上调。突变体的分生孢子产量减少,分生孢子表面结构发生变化,但细胞壁完整性变化不大。由于附着胞形成延迟、一些昆虫几丁质水解酶的表达受到抑制以及在蝗虫血淋巴中的生长速度减慢,突变体对一种蝗虫物种的毒力明显减弱。通过靶向基因互补,这些表型变化得到了恢复。我们的研究结果表明,MaPacC 作为热耐受性的负调控因子,通过参与穿过昆虫表皮的菌丝穿透和逃避昆虫免疫,促进了绿僵菌的毒力。