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首页> 外文期刊>Frontiers in Microbiology >Isolation and Characterization of phiLLS, a Novel Phage with Potential Biocontrol Agent against Multidrug-Resistant Escherichia coli
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Isolation and Characterization of phiLLS, a Novel Phage with Potential Biocontrol Agent against Multidrug-Resistant Escherichia coli

机译:phiLLS的分离和鉴定,一种具有潜在耐药性的多药耐药性大肠杆菌噬菌体

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摘要

Foodborne diseases are a serious and growing problem, and the incidence and prevalence of antimicrobial resistance among foodborne pathogens is reported to have increased. The emergence of antibiotic-resistant bacterial strains demands novel strategies to counteract this epidemic. In this regard, lytic bacteriophages have reemerged as an alternative for the control of pathogenic bacteria. However, the effective use of phages relies on appropriate biological and genomic characterization. In this study, we present the isolation and characterization of a novel bacteriophage named phiLLS, which has shown strong lytic activity against generic and multidrug-resistant Escherichia coli strains. Transmission electron microscopy of phiLLS morphology revealed that it belongs to the Siphoviridae family. Furthermore, this phage exhibited a relatively large burst size of 176 plaque-forming units per infected cell. Phage phiLLS significantly reduced the growth of E. coli under laboratory conditions. Analyses of restriction profiles showed the presence of submolar fragments, confirming that phiLLS is a pac -type phage. Phylogenetic analysis based on the amino acid sequence of large terminase subunits confirmed that this phage uses a headful packaging strategy to package their genome. Genomic sequencing and bioinformatic analysis showed that phiLLS is a novel bacteriophage that is most closely related to T5-like phages. In silico analysis indicated that the phiLLS genome consists of 107,263 bp (39.0 % GC content) encoding 160 putative ORFs, 16 tRNAs, several potential promoters and transcriptional terminators. Genome analysis suggests that the phage phiLLS is strictly lytic without carrying genes associated with virulence factors and/or potential immunoreactive allergen proteins. The bacteriophage isolated in this study has shown promising results in the biocontrol of bacterial growth under in vitro conditions, suggesting that it may prove useful as an alternative agent for the control of foodborne pathogens. However, further oral toxicity testing is needed to ensure the safety of phage use.
机译:食源性疾病是一个严重且日益严重的问题,据报道食源性病原体中抗菌素耐药性的发生率和患病率增加。耐药细菌菌株的出现需要新的策略来抵抗这种流行病。在这方面,溶解性噬菌体作为控制病原细菌的替代物已经重新出现。但是,噬菌体的有效利用取决于适当的生物学和基因组表征。在这项研究中,我们介绍了一种名为phiLLS的新型噬菌体的分离和鉴定,该噬菌体对普通和耐多药大肠埃希菌菌株显示出强大的裂解活性。 phiLLS形态的透射电子显微镜显示它属于Siphoviridae家族。此外,该噬菌体表现出相对较大的爆发大小,每个感染细胞为176个噬菌斑形成单位。在实验室条件下,噬菌体phiLLS显着降低了大肠杆菌的生长。限制性酶切谱分析表明存在亚摩尔片段,证实了phiLLS是一种pac型噬菌体。基于大末端酶亚基氨基酸序列的系统发育分析证实,该噬菌体使用了无效的包装策略来包装其基因组。基因组测序和生物信息学分析表明,phiLLS是一种新型噬菌体,与T5样噬菌体最密切相关。在计算机分析中,phiLLS基因组由107,263 bp(39.0%GC含量)组成,编码160个推定的ORF,16个tRNA,几个潜在的启动子和转录终止子。基因组分析表明,噬菌体phiLLS是严格裂解的,没有携带与毒力因子和/或潜在的免疫反应性过敏原蛋白相关的基因。在这项研究中分离出的噬菌体在体外条件下的细菌生长生物控制中显示出令人鼓舞的结果,表明它可能被证明可作为控制食源性病原体的替代药物。但是,需要进一步的口服毒性测试以确保噬菌体使用的安全性。

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