生物
病菌
疫霉菌
微生物学
辣椒疫霉
杀菌剂
疫病疫霉菌
免疫系统
孢子萌发
大豆疫霉
菌丝体
杀生物剂
寄主(生物学)
植物
孢子
免疫学
生态学
枯萎病
化学
有机化学
作者
Long Lin,Zixiang Yang,Tao Min,Danyu Shen,Chuanbin Cui,Pingping Wang,Limin Wang,Maofeng Jing,Guoliang Qian,Xiaolong Shao
标识
DOI:10.3389/fpls.2023.1116147
摘要
The Phytophthora pathogen causes enormous damage to important agricultural plants. This group of filamentous pathogens is phylogenetically distant from fungi, making them difficult to control by most chemical fungicides. Lysobacter enzymogenes OH11 (OH11) is a biocontrol bacterium that secretes HSAF (Heat-Stable Antifungal Factor) as a broad-spectrum antifungal weapon. Here, we showed that OH11 could also control a variety of plant Phytophthora diseases caused by three major oomycetes (P. sojae, P. capsici and P. infestans). We provided abundant evidence to prove that OH11 protected host plants from Phytophthora pathogen infection by inhibiting mycelial growth, digesting cysts, suppressing cyst germination, and eliciting plant immune responses. Interestingly, the former two processes required the presence of HSAF, while the latter two did not. This suggested that L. enzymogenes could prevent Phytophthora infection via multiple previously unknown mechanisms. Therefore, this study showed that L. enzymogenes could serve as a promising alternative resource for promoting plant resistance to multiple Phytophthora pathogens.
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