Zhou Jiayu, Gong Weifeng, Tu Tingting, Zhang Jiaqi, Xia Xiaoshuang, Zhao Luning, Zhou Xinghua, Wang Yun
School of Food and Biological Engineering, Jiangsu University, Zhenjiang 212013, China.
Center of Analysis, Jiangsu University, Zhenjiang 212013, China.
Foods. 2023 Jan 19;12(3):479. doi: 10.3390/foods12030479.
is the causal agent of blue mold decay on apple fruits and is also known to be the major producer of patulin, a mycotoxin that represents serious hazard to human health. Several mechanisms have been suggested to explain the pathogenesis of in host plants. Secreted effector proteins are vital for the pathogenicity of many fungal pathogens through manipulating their hosts for efficient colonization. In this study, we performed a RNA-Seq analysis followed by computational prediction of effector proteins from during infection of the host apple fruits, and a total of 212 and 268 candidate effector protein genes were identified at 6 and 9 h after inoculation (hai), respectively. One of the candidate effector protein genes was identified as a concanavalin A-like lectin/glucanase (), which was dramatically induced during the pathogen-host interaction. Targeted knockout of resulted in significant reduction in conidial production and germination relative to the wild type. Further studies showed that in addition to salt stress, the mutant was much more sensitive to SDS and Congo red, suggesting a defect in cell wall integrity. Pathogenicity assays revealed that the Δ mutant showed significant decrease in virulence and infectious growth on apple fruits. All these results suggest that is required for fungal growth, stress response, and the virulence of .
是苹果果实青霉腐烂病的致病因子,并且已知是展青霉素的主要产生者,展青霉素是一种对人类健康构成严重危害的霉菌毒素。已经提出了几种机制来解释其在寄主植物中的致病机理。分泌的效应蛋白对于许多真菌病原体的致病性至关重要,它们通过操纵寄主来实现有效定殖。在本研究中,我们进行了RNA测序分析,随后在寄主苹果果实感染期间对该菌的效应蛋白进行了计算预测,在接种后6小时和9小时分别鉴定出总共212个和268个候选效应蛋白基因。其中一个候选效应蛋白基因被鉴定为伴刀豆球蛋白A样凝集素/葡聚糖酶(),在病原体与寄主相互作用期间它被显著诱导。相对于野生型,对该基因进行靶向敲除导致分生孢子产生和萌发显著减少。进一步研究表明,除了盐胁迫外,该突变体对十二烷基硫酸钠和刚果红也更加敏感,这表明其细胞壁完整性存在缺陷。致病性测定表明,Δ突变体在苹果果实上的毒力和侵染生长显著降低。所有这些结果表明,该基因对于该菌的生长、胁迫反应和毒力是必需的。