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首页> 外文期刊>Annals of Applied Biology >Biological control of bacterial plant diseases with Lactobacillus plantarum strains selected for their broad-spectrum activity
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Biological control of bacterial plant diseases with Lactobacillus plantarum strains selected for their broad-spectrum activity

机译:乳酸杆菌菌株对其广谱活性选择的细菌植物疾病的生物控制

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The use of lactic acid bacteria (LAB) to control multiple pathogens that affect different crops was studied, namely, Pseudomonas syringae pv. actinidiae in kiwifruit, Xanthomonas arboricola pv. pruni in Prunus and Xanthomonas fragariae in strawberry. A screening procedure based on in vitro and in planta assays of the three bacterial pathogens was successful in selecting potential LAB strains as biological control agents. The antagonistic activity of 55 strains was first tested in vitro and the strains Lactobacillus plantarum CC100, PM411 and TC92, and Leuconostoc mesenteroides CM160 and CM209 were selected because of their broad-spectrum activity. The biocontrol efficacy of the selected strains was assessed using a multiple-pathosystem approach in greenhouse conditions. L. plantarum PM411 and TC92 prevented all three pathogens from infecting their corresponding plant hosts. In addition, the biocontrol performance of PM411 and TC92 was comparable to the reference products (Bacillus amyloliquefaciens D747, Bacillus subtilis QST713, chitosan, acibenzolar-S-methyl, copper and kasugamycin) in semi-field and field experiments. The in vitro inhibitory mechanism of PM411 and TC92 is based, at least in part, on a pH lowering effect and the production of lactic acid. Moreover, both strains showed similar survival rates on leaf surfaces. PM411 and TC92 can easily be distinguished because of their different multilocus sequence typing and random amplified polymorphic DNA profiles.
机译:研究了使用乳酸菌(实验室)来控制影响不同作物的多种病原体,即,伪霉素Syringae PV。猕猴桃猕猴桃猕猴桃猕猴桃猕猴桃猕猴桃猕猴桃。普鲁尼在草莓蛋白的prunus和xanthomonas fragariae。基于体外和三种细菌病原体的Planta测定的筛选过程是成功选择潜在的实验室菌株作为生物对照剂。第一次在体外测试55株的拮抗活性,并且由于其广谱活性,选择了菌株乳酸杆菌CC100,PM411和TC92,以及蓝酮蛋白酶体CM160和CM209。在温室条件下使用多毒性系统方法评估所选菌株的生物防治效果。 L.Purerarum PM411和TC92阻止了所有三种病原体感染相应的植物宿主。此外,PM411和TC92的生物控制性能与参考产物(Bacillus淀粉硫胺硫胺D747,芽孢杆菌枯草芽孢杆菌QST713,壳聚糖,阿基苯甲脲-S-甲基,铜和Kasugamycin)相当。 PM411和TC92的体外抑制机制至少部分地基于pH降低效果和乳酸的产生。此外,两种菌株在叶面上显示出类似的存活率。由于其不同的多点序列键入和随机扩增的多晶晶型DNA型材,可以容易地区分PM411和TC92。

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