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Biological control of cucumber and sugar beet damping-off caused by Pythium ultimum with bacterial and fungal antagonists

机译:终生腐霉与细菌和真菌拮抗剂引起的黄瓜和甜菜减毒的生物防治

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Aims: Five bacterial strains belonging to Bacillus subtilis, Pseudomonas fluorescens and Ps. corrugata and two fungal strains belonging to Trichoderma viride and Gliocladium virens were evaluated for their efficacy in controlling sugar beet and cucumber damping-off caused by Pythium ultimum. Methods and Results: The in vitro antagonistic of bacteria against various Pythium spp. was evaluated with dual cultures in various media. Pseudomonas strains inhibited the pathogen better than Bacillus strains. To identify potentially useful antagonist combinations, dual compatibility of antagonists was also evaluated, based on growth in two liquid media containing substrate previously used by other antagonists. Four pairs of bacteria were selected. Sugar beet damping-off biocontrol was attempted with bacterial seed treatments (individually and in pairs). Cucumber damping-off biocontrol was attempted with bacterial seed treatments and bacterial and fungal compost treatments. In sugar beet, satisfactory biocontrol was only achieved with Pseudomonas antagonists. Antagonist combinations did not show any superior biocontrol ability to individual antagonists and compatibility of bacteria in vitro did not correlate with compatibility in vivo. Bacterial seed treatments and fungal compost treatments failed to control cucumber damping-off. Better biocontrol in cucumber was achieved when bacterial antagonists were applied by drenching or by coating seed with bacteria in a peat carrier. Conclusions: Pseudomonas antagonists were superior to Bacillus antagonists in controlling damping-off in cucumber and sugar beet. Pseudomonas peat inocular maintained a good shelf-life 2 years after preparation. Significance and Impact of the Study: Pseudomonas peat formulations have the potential for development into commercial biopesticides.
机译:目的:五个枯草芽孢杆菌,荧光假单胞菌和Ps的细菌菌株。评价了皱纹小球藻和两个属于木霉属木霉和胶质胶质霉菌的真菌菌株在控制甜菜和黄瓜中抑制终极腐霉菌致病的功效。方法和结果:细菌对各种腐霉菌的体外拮抗作用。在多种媒体中以双重文化进行了评估。假单胞菌菌株比芽孢杆菌菌株更好地抑制病原体。为了鉴定潜在有用的拮抗剂组合,还基于先前在其他拮抗剂中使用的两种含有底物的液体培养基中的生长,评估了拮抗剂的双重相容性。选择了四对细菌。尝试通过细菌种子处理(单独或成对)进行甜菜抑制生物防治。尝试通过细菌种子处理以及细菌和真菌堆肥处理来抑制黄瓜的生物防治。在甜菜中,只有用假单胞菌拮抗剂才能达到令人满意的生物防治。拮抗剂组合没有显示出对单个拮抗剂的任何优异的生物防治能力,并且体外细菌的相容性与体内相容性不相关。细菌种子处理和真菌堆肥处理无法控制黄瓜的生长。当通过浸湿或在泥炭载体中用细菌包被种子来施用细菌拮抗剂时,黄瓜的生物防治效果更好。结论:假单胞菌拮抗剂在控制黄瓜和甜菜阻尼方面优于芽孢杆菌拮抗剂。制备后的2年间,泥炭小球菌的人工眼保持了良好的保存期限。研究的意义和影响:假单胞菌泥炭配方具有发展为商业生物农药的潜力。

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