粘细菌
采后
活性氧
尖孢镰刀菌
菌丝体
微生物学
指青霉
化学
植物
生物
园艺
生物化学
细菌
遗传学
作者
Xianfeng Ye,Chen Yang,Shiyun Ma,Tian Yuan,Yaxuan Wu,Yingxuan Li,Yuqiang Zhao,Shuying Chen,Yiwen Zhang,Liuyan Li,Zhoukun Li,Yan Huang,Hui Cao,Zhongli Cui
标识
DOI:10.1016/j.fm.2020.103502
摘要
Myxobacteria have excellent biocontrol activity against various phytopathogens due to their rich spectrum of secondary metabolites and active predatory characteristics. In this study, the mycelial growth of Fusarium oxysporum f. sp. cucumerinum (FOC) was found to be significantly inhibited by volatile compounds (VOCs) produced by Corallococcus sp. EGB. A total of 32 compounds were identified among the VOCs produced by strain EGB, of which isooctanol exhibited the highest antifungal activity, with dosages of 3.75 and 4.0 μL/plate being sufficient to suppress FOC and Penicillum digitatum, respectively. Isooctanol was found to damage the cell wall and cell membranes of FOC and P. digitatum. Apoptosis-like cell death of FOC and P. digitatum induced by isooctanol was observed subsequently due to the accumulation of reactive oxygen species (ROS). The transcription level of genes related to cell wall integrity (CWI) pathway and redox reactions were significantly upregulated by 15- to 40-fold, indicating the stress caused by isooctanol. Postharvest storage experiments showed that the disease severity of post-harvest oranges infected with P. digitatum could be significantly reduced by isooctanol at 114.2 μL/L.
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