Welcome to Chinese Agricultural Science Bulletin,

Chinese Agricultural Science Bulletin ›› 2022, Vol. 38 ›› Issue (33): 124-131.doi: 10.11924/j.issn.1000-6850.casb2021-0906

Special Issue: 生物技术 植物保护

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Extract of Bacillus velezensis SX-45: The Antifungal Mechanism Against Fusarium oxysporum of Ginseng

ZHANG Tingting(), MA Guilong(), XIE Xiaobao, GAO Xinxin, CAI Qi   

  1. College of Plant Protection, Jilin Agricultural University, Changchun 130118
  • Received:2021-09-19 Revised:2022-02-05 Online:2022-11-25 Published:2022-11-22
  • Contact: MA Guilong E-mail:2435139404@qq.com;guilongma@163.com

Abstract:

Ginseng root rot is one of the serious diseases in the production of ginseng. The objective of this study is to clarify the antifungal mechanism of the extract of Bacillus velezensis SX-45 against Fusarium oxysporum of ginseng. In this study, Bacillus velezensis SX-45 and Fusarium oxysporum of ginseng were used as materials, the antifungal mechanism data were determined by thiobarbituric acid, coomassie bright blue G-250 methods etc. The results showed that after being treated with the extract of Bacillus velezensis SX-45 at the concentration of 15 μg/mL, the mycelia of Fusarium oxysporum of ginseng had malformation, the hypha surface protrusion and the hypha tip expansion were observed. The electrical conductivity and malondialdehyde content in the fungal suspension increased significantly, which were respectively 4.24 and 42.0 times those of the control group. The OD260 value of the fungal suspension also increased from 3.48 to 3.83. With the increase of extract concentration, the soluble protein content, reducing sugar content, NAD-MDH activity and SDH activity decreased significantly by 97.7%, 56.6%, 97.5% and 48.4%, respectively. This study indicates that the extract of Bacillus velezensis SX-45 has a good inhibition effect on Fusarium oxysporum, and can lay a foundation for the research and development of new biocontrol agent against ginseng diseases.

Key words: Fusarium oxysporum of ginseng, Bacillus velezensis, extract, antifungal activity, antifungal mechanism

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