The antifungal action mode of the rice endophyte Streptomyces hygroscopicus OsiSh-2 as a potential biocontrol agent against the rice blast pathogen

生物 菌丝体 菌丝 微生物学 吸水链霉菌 激发子 内生菌 行动方式 梨孢属 细胞壁 病菌 植物 链霉菌 生物化学 细菌 遗传学
作者
Ting Xu,Lidan Cao,Jiarui Zeng,Christopher M. M. Franco,Yuanzhu Yang,Xiaochun Hu,Ying Liu,Xiang Wang,Yan Gao,Zhigang Bu,Liming Shi,Zhou Guoying,Qian Zhou,Xuanming Liu,Yonghua Zhu
出处
期刊:Pesticide Biochemistry and Physiology [Elsevier]
卷期号:160: 58-69 被引量:76
标识
DOI:10.1016/j.pestbp.2019.06.015
摘要

Microbial antagonists and their bioactive metabolites provide one of the best alternatives to chemical pesticides to control crop disease for sustainable agriculture and global food security. The rice endophyte Streptomyces hygroscopicus OsiSh-2, with remarkable antagonistic activity towards the rice blast fungus Magnaporthe oryzae, was reported in our previous study. The present study deciphered the possible direct interaction mode of OsiSh-2 against M. oryzae. An in vitro antibiotic assay for OsiSh-2 culture filtrate revealed strong suppression of mycelial growth, conidial germination and appressorial formation of M. oryzae. Meanwhile, severe morphological and internal abnormalities in M. oryzae hyphae were observed under a scanning electron microscope and transmission electron microscope. Foliar treatment of rice seedlings by OsiSh-2 culture filtrate in the greenhouse and in the field showed 23.5% and 28.3% disease reduction, respectively. Correspondingly, OsiSh-2 culture filtrate could induce disorganized chitin deposition in the cell wall and lowered ergosterol content in the cell membrane of M. oryzae. Additionally, cell wall integrity pathway activation, large cell electrolytes release, reactive oxygen species accumulation and tricarboxylic acid cycle-related enzyme activity changes were found in M. oryzae. All these results suggested that the direct antagonistic activity of OsiSh-2 against M. oryzae may be attributed to damaging the integrity of the cell wall and membrane and disrupting mitochondrial function in the pathogen.
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