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Genome Proteome and Structure of a T7-Like Bacteriophage of the Kiwifruit Canker Phytopathogen Pseudomonas syringae pv. actinidiae

机译:猕猴桃溃疡病致病性假单胞菌丁香PV的T7噬菌体的基因组蛋白质组和结构。猕猴桃

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摘要

Pseudomonas syringae pv. actinidiae is an economically significant pathogen responsible for severe bacterial canker of kiwifruit (Actinidia sp.). Bacteriophages infecting this phytopathogen have potential as biocontrol agents as part of an integrated approach to the management of bacterial canker, and for use as molecular tools to study this bacterium. A variety of bacteriophages were previously isolated that infect P. syringae pv. actinidiae, and their basic properties were characterized to provide a framework for formulation of these phages as biocontrol agents. Here, we have examined in more detail φPsa17, a phage with the capacity to infect a broad range of P. syringae pv. actinidiae strains and the only member of the Podoviridae in this collection. Particle morphology was visualized using cryo-electron microscopy, the genome was sequenced, and its structural proteins were analysed using shotgun proteomics. These studies demonstrated that φPsa17 has a 40,525 bp genome, is a member of the T7likevirus genus and is closely related to the pseudomonad phages φPSA2 and gh-1. Eleven structural proteins (one scaffolding) were detected by proteomics and φPsa17 has a capsid of approximately 60 nm in diameter. No genes indicative of a lysogenic lifecycle were identified, suggesting the phage is obligately lytic. These features indicate that φPsa17 may be suitable for formulation as a biocontrol agent of P. syringae pv. actinidiae.
机译:丁香假单胞菌PV。猕猴桃是一种经济上重要的病原体,可导致猕猴桃的严重细菌性溃疡(猕猴桃属)。感染这种植物病原体的噬菌体具有作为生物防治剂的潜力,可作为管理细菌性溃疡病的综合方法的一部分,并可用作研究这种细菌的分子工具。先前已分离出多种感染丁香假单胞菌PV的噬菌体。猕猴桃及其基本特性的特征为为这些噬菌体配制成生物防治剂提供了框架。在这里,我们已经更详细地研究了φPsa17,它是一种能够感染丁香假单胞菌pv的噬菌体。猕猴桃属菌株,也是该集合中Podoviridae的唯一成员。使用冷冻电子显微镜观察颗粒形态,对基因组进行测序,并使用shot弹枪蛋白质组学分析其结构蛋白。这些研究表明,φPsa17具有40,525 bp的基因组,是T7likevirus属的成员,并且与假单胞菌噬菌体φPSA2和gh-1密切相关。蛋白质组学检测到11种结构蛋白(一个支架),φPsa17的衣壳直径约为60 nm。没有发现指示溶源性生命周期的基因,表明噬菌体专一性裂解。这些特征表明,φPsa17可能适合作为丁香假单胞菌PV的生物防治剂。猕猴桃。

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