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首页> 外文期刊>Journal of Plant Pathology >BIOCONTROL OF ROOT ROT OF STRAWBERRY CAUSED BY PHYTOPHTHORA CACTORUM WITH A COMBINATION OF TWO PSEUDOMONAS FLUORESCENS STRAINS
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BIOCONTROL OF ROOT ROT OF STRAWBERRY CAUSED BY PHYTOPHTHORA CACTORUM WITH A COMBINATION OF TWO PSEUDOMONAS FLUORESCENS STRAINS

机译:两种拟南磷菌株引起的草莓疫霉菌对草莓根的生物防治。

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Pseudomonas fluorescens strains EPS817 and EPS894 protecting strawberry plants against Phytophthora cactorum root rot and producing different bioactive metabolites were used in combination to enhance the level of biocontrol achieved by each strain used alone. Moreover, it was confirmed by chemical analysis that the strains have clear physiological differences in terms of biocontrol potential. EPS817 produced 2,4-diacetylphloroglucinol and HCN, and EPS894 produced phenazine-1-carboxylic acid and pyoluteorin. Interaction studies between bacterial strains and P. cactorum revealed a significant inhibition of cyst germination in vitro. Scanning electron microscopy confirmed that each strain inhibited P. cactorum cyst germination on the A strawberry root surface. Bacterial strains were able to colonize and survive on strawberry roots individually and together in a substrate potting mixture, thus indicating compatibility between strains. Biocontrol experiments performed in strawberry potted plants under greenhouse conditions revealed that the mixture of both strains not only reduced the disease severity of Phytophthora root rot but also the variability within experiments compared to single strain application.
机译:荧光假单胞菌菌株EPS817和EPS894可保护草莓植株免受仙人掌疫霉根腐病并产生不同的生物活性代谢产物,从而提高每种菌株单独使用所获得的生物防治水平。此外,通过化学分析证实,该菌株在生物防治潜力方面具有明显的生理差异。 EPS817产生2,4-二乙酰基间苯三酚和HCN,EPS894产生吩嗪-1-羧酸和pyuteuterin。细菌菌株与仙人掌假单胞菌之间的相互作用研究表明,体外囊肿萌发具有明显的抑制作用。扫描电子显微镜证实,每个菌株均能抑制草莓根表面的仙人掌孢囊发芽。细菌菌株能够单独或一起在底物盆栽混合物中定居并在草莓根上存活,因此表明菌株之间具有相容性。在温室条件下在草莓盆栽植物中进行的生物防治实验表明,两种菌株的混合物不仅降低了疫霉根腐病的病害严重程度,而且与单株施用相比,还降低了实验中的变异性。

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