噬菌链球菌对耐多药半乳链球菌的体外溶菌潜力

IF 1.4 4区 生物学 Q3 BIOLOGY Biologia Pub Date : 2024-07-03 DOI:10.1007/s11756-024-01730-5
Rajan Preenanka, Muhammed Puratheparampilchira Safeena
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引用次数: 0

摘要

无乳链球菌是一种重要的细菌病原体,给水产养殖业造成了巨大的经济损失。鉴于多重耐药性带来的挑战,本研究探讨了噬菌体疗法作为生物控制策略中抗生素替代品的潜力。研究的重点是评估从罗非鱼养殖场分离出来的 S. agalactiae 的多药耐药性特征,尤其关注菌株 KSA/01,该菌株对七种结构不同的抗生素具有耐药性,MAR 指数高达 0.6 左右。为应对这一挑战,该研究成功鉴定并分离出针对耐多药菌株 KSA/01 的特异性溶菌噬菌体 SAP-13。透射电子显微镜显示,SAP-13 与 Siphoviridae 家族具有相同的形态特征。在一步生长曲线中,该噬菌体在很短的迸发期表现出大约 610 PFU/细胞的巨大迸发量,而且该噬菌体在温度、pH 值和盐度等各种理化参数下都表现出稳定性。SAP-13 在不同感染倍数下的体外溶解能力突出表明,它具有有效消灭 S. agalactiae 的潜力,尤其是在 MOI 为 0.01 时。因此,这些研究结果表明,噬菌体 SAP-13 对 S. agalactiae 具有很高的感染性,为解决水产养殖中的耐多药菌株问题提供了一个很有前景的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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In vitro lytic potential of Streptococcus bacteriophage against multidrug resistant Streptococcus agalactiae

Streptococcus agalactiae stands out as a significant bacterial pathogen, causing substantial economic losses in the aquaculture sector. Given the challenges posed by multidrug resistance, this study explores the potential of phage therapy as an alternative to antibiotics in biocontrol strategies. The focus is on evaluating the multidrug resistance profile of S. agalactiae isolated from a tilapia aquaculture farm, with particular attention to the strain KSA/01, which exhibits resistance to seven structurally different classes of antibiotics and a notable MAR index of around 0.6. In response to this challenge, the study successfully identifies and isolates the specific and lytic phage SAP-13 targeting the multidrug-resistant strain KSA/01. Transmission electron microscopy reveals that SAP-13 shares morphological characteristics with the Siphoviridae family. In a one-step growth curve, the phage demonstrates a substantial burst size of approximately 610 PFU/cell over a short burst period and the phage exhibited stability across various physicochemical parameters such as temperature, pH, and salinity. In vitro lytic ability of SAP-13 at different multiplicity of infection underscores its potential to effectively eliminate S. agalactiae, particularly at an MOI of 0.01. Consequently, these findings suggest that phage SAP-13 exhibits high infectivity against S. agalactiae, presenting a promising avenue for addressing multidrug-resistant strains in aquaculture.

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来源期刊
Biologia
Biologia 生物-生物学
CiteScore
3.30
自引率
6.70%
发文量
290
审稿时长
6 months
期刊介绍: Established in 1946, Biologia publishes high-quality research papers in the fields of microbial, plant and animal sciences. Microbial sciences papers span all aspects of Bacteria, Archaea and microbial Eucarya including biochemistry, cellular and molecular biology, genomics, proteomics and bioinformatics. Plant sciences topics include fundamental research in taxonomy, geobotany, genetics and all fields of experimental botany including cellular, whole-plant and community physiology. Zoology coverage includes animal systematics and taxonomy, morphology, ecology and physiology from cellular to molecular level.
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