首页> 外文期刊>Scientific reports. >Isolation and characterisation of pVa-21, a giant bacteriophage with anti-biofilm potential against Vibrio alginolyticus
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Isolation and characterisation of pVa-21, a giant bacteriophage with anti-biofilm potential against Vibrio alginolyticus

机译:pVa-21的分离和鉴定,这是一种巨大的噬菌体,可对溶藻弧菌产生抗生物膜作用

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There is an increasing emergence of antibiotic-resistant Vibrio alginolyticus, a zoonotic pathogen that causes mass mortality in aquatic animals and infects humans; therefore, there is a demand for alternatives to antibiotics for the treatment and prevention of infections caused by this pathogen. One possibility is through the exploitation of bacteriophages. In the present study, the novel bacteriophage pVa-21 was classified as Myoviridae and characterised as a candidate biocontrol agent against V. alginolyticus. Its morphology, host range and infectivity, growth characteristics, planktonic or biofilm lytic activity, stability under various conditions, and genome were investigated. Its latent period and burst size were estimated to be approximately 70?min and 58 plaque-forming units/cell, respectively. In addition, phage pVa-21 can inhibit bacterial growth in both the planktonic and biofilm states. Furthermore, phylogenetic and genome analysis revealed that the phage is closely related to the giant phiKZ-like phages and can be classified as a new member of the phiKZ-like bacteriophages that infect bacteria belonging to the family Vibrionaceae.
机译:耐抗生素的溶藻弧菌(Vibrio alginolyticus)的出现越来越多,这是一种人畜共患的病原体,可导致水生动物大量死亡并感染人类。因此,需要用于治疗和预防由该病原体引起的感染的抗生素替代品。一种可能性是通过噬菌体的利用。在本研究中,新型噬菌体pVa-21被分类为肌病毒科,并被表征为抗溶藻弧菌的候选生物防治剂。研究了其形态,寄主范围和感染性,生长特性,浮游生物膜或生物膜的裂解活性,在各种条件下的稳定性以及基因组。它的潜伏期和破裂大小估计分别约为70分钟和58个噬菌斑形成单位/细胞。另外,噬菌体pVa-21可在浮游和生物膜状态下抑制细菌生长。此外,系统发育和基因组分析表明,该噬菌体与巨大的phiKZ样噬菌体密切相关,可以被归类为phiKZ样噬菌体的新成员,该噬菌体感染属于弧菌科的细菌。

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