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特异性噬菌体BsXeu269p/3可减少辣椒细菌性斑点病的传播。

-Specific Bacteriophage BsXeu269p/3 Reduces the Spread of Bacterial Spot Disease in Pepper Plants.

作者信息

Shopova Elena, Brankova Liliana, Ivanov Sergei, Urshev Zoltan, Dimitrova Lyudmila, Dimitrova Melani, Hristova Petya, Kizheva Yoana

机构信息

Institute of Plant Physiology and Genetics, Bulgarian Academy of Sciences, Acad. G. Bonchev Str., bl. 21., 1113 Sofia, Bulgaria.

Centre of Food Biology, 1592 Sofia, Bulgaria.

出版信息

Plants (Basel). 2023 Sep 22;12(19):3348. doi: 10.3390/plants12193348.

Abstract

The present study was focused on the pathosystem pepper plants ( L.)-phytopathogenic bacterium (wild strain 269p)-bacteriophage BsXeu269p/3 and the possibility of bacteriophage-mediated biocontrol of the disease. Two new model systems were designed for the monitoring of the effect of the phage treatment on the infectious process in vivo. The spread of the bacteriophage and the pathogen was monitored by qPCR. A new pair of primers for phage detection via qPCR was designed, as well as probes for TaqMan qPCR. The epiphytic bacterial population and the potential bacteriolytic effect of BsXeu269p/3 in vivo was observed by SEM. An aerosol-mediated transmission model system demonstrated that treatment with BsXeu269p/3 reduced the amount of on the leaf surface five-fold. The needle-pricking model system showed a significant reduction of the amount of the pathogen in infectious lesions treated with BsXeu269p/3 (av. 59.7%), compared to the untreated control. We found that the phage titer is 10-fold higher in the infection lesions but it was still discoverable even in the absence of the specific host in the leaves. This is the first report of in vivo assessment of the biocontrol potential of locally isolated phages against BS pathogen in Bulgaria.

摘要

本研究聚焦于辣椒植株(L.)-植物致病细菌(野生菌株269p)-噬菌体BsXeu269p/3构成的病理系统以及噬菌体介导的该病害生物防治可能性。设计了两个新的模型系统用于监测噬菌体处理对体内感染过程的影响。通过定量聚合酶链反应(qPCR)监测噬菌体和病原体的传播。设计了一对用于通过qPCR检测噬菌体的新引物以及用于TaqMan qPCR的探针。通过扫描电子显微镜(SEM)观察了BsXeu269p/3在体内的附生细菌群体和潜在溶菌作用。气溶胶介导的传播模型系统表明,用BsXeu269p/3处理使叶片表面的[具体细菌名称未给出]数量减少了五倍。针刺模型系统显示,与未处理的对照相比,用BsXeu269p/3处理的感染病灶中病原体数量显著减少(平均减少59.7%)。我们发现感染病灶中的噬菌体滴度高出10倍,但即使叶片中没有特定宿主时仍可检测到。这是保加利亚首次关于对本地分离的噬菌体针对BS病原体的生物防治潜力进行体内评估的报告。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c5d/10574073/a94977d795ea/plants-12-03348-g001.jpg

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