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The use of Pseudomonas fluorescens P13 to control sclerotinia stem rot (Sclerotinia sclerotiorum) of oilseed rape

机译:荧光假单胞菌P13在控制油菜油菜菌核干腐病中的应用

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Sclerotinia stem rot (SSR) caused by the fungus Sclerotinia sclerotiorum has been an increasing threat to oilseed rape (Brassica napus L.) cultivation. Efficient and environment-friendly treatments are much needed. Here we focus on microbial control. The Pseudomonas fluorescens P13 that was isolated from oilseed rape cultivation soil, proved to be a useful biocontrol strain for application. Morphology, physiological and biochemical tests and 16S rDNA analysis demonstrated that it was P. fluorescens P13 and that it had a broad antagonistic spectrum, significantly lessening the mycelial growth of S. sclerotiorum by 84. 4% and suppressing sclerotial formation by 95-100%. Scanning electron microscopy studies attested that P13 deformed S. sclerotiorum mycelia when they were cultured together. P13 did not produce chitinase but did produce hydrogen cyanide (HCN) which was likely one of the antagonistic mechanisms. The density of P13 remained at a high level (≥10~6 CFU/ml) during 5 weeks in the rhizosphere soil and roots. P13 reduced SSR severity at least by 59% in field studies and also promoted seedling growth (p<0.05) at the seedling stage. From these data, our work provided evidence that P13 could be a good alternative biological resource for biocontrol of S. sclerotiorum.
机译:由真菌核盘菌引起的核盘菌茎腐病(SSR)对油菜(Brassica napus L.)种植的威胁日益增加。迫切需要高效,环保的治疗方法。在这里,我们专注于微生物控制。从油菜油菜栽培土壤中分离出的荧光假单胞菌P13被证明是一种有用的生物防治菌株。形态学,生理生化测试和16S rDNA分析表明,它是荧光假单胞菌P13,具有广谱的拮抗谱,显着降低了菌核菌菌丝体的生长84. 4%,并抑制了菌核形成95-100% 。扫描电子显微镜研究证明,当它们一起培养时,P13使核盘菌菌丝体变形。 P13不会产生几丁质酶,但会产生氰化氢(HCN),这可能是拮抗机制之一。在根际土壤和根系中,P13的密度在5周内保持在较高水平(≥10〜6 CFU / ml)。在田间研究中,P13将SSR严重程度降低了至少59%,并且还促进了苗期的幼苗生长(p <0.05)。从这些数据中,我们的工作提供了证据,证明P13可能是控制菌核盘菌的良好替代生物资源。

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