Isolation, characterization, and genome analysis of a broad host range Salmonella phage vB_SenS_TUMS_E4: a candidate bacteriophage for biocontrol
- PMID: 37097546
- DOI: 10.1007/s11259-023-10105-1
Isolation, characterization, and genome analysis of a broad host range Salmonella phage vB_SenS_TUMS_E4: a candidate bacteriophage for biocontrol
Abstract
Salmonella enteritidis is one of the most important foodborne pathogens that cause numerous outbreaks worldwide. Some strains of Salmonella have become progressively resistant to antibiotics, so they could represent a critical threat to public health and have led to the use of alternative therapeutic approaches like phage therapy. In this study, a lytic phage, vB_SenS_TUMS_E4 (E4), was isolated from poultry effluent and characterized to evaluate its potential and efficacy for bio-controlling S. enteritidis in foods. Transmission electron microscopy revealed that E4 has a siphovirus morphotype, with an isometric head and non-contractile tail. Determining the host range showed that this phage can effectively infect different motile as well as non-motile Salmonella enterica serovars. The biological characteristics of E4 showed that it has a short latent period of about 15 min and a large burst size of 287 PFU/cell, and is also significantly stable in a broad range of pHs and temperatures. The E4 whole genome contains 43,018 bp and encodes 60 coding sequences (CDSs) but no tRNA genes. Bioinformatics analysis revealed that the genome of E4 lacks any genes related to lysogeny behavior, antibiotic resistance, toxins, or virulence factors. The efficacy of phage E4 as a bio-control agent was assessed in various foodstuffs inoculated with S. enteritidis at 4°C and 25°C, and the resulting data indicated that it could eradicate S. enteritidis after a very short time of 15 min. The findings of the present study showed that E4 is a hopeful candidate as a bio-control agent against S. enteritidis and has the potential to be used in various foodstuffs.
Keywords: Antibiotic resistance; Biocontrol agents; Lytic phage, Siphovirus; Salmonella enteritidis.
© 2023. The Author(s), under exclusive licence to Springer Nature B.V.
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References
-
- Ackermann Hans-W (2009) ‘Phage classification and characterization.‘ in, Bacteriophages (Springer). https://doi.org/10.1007/978-1-60327-164-6_13
-
- Adriaenssens E, Rodney Brister J (2017) ‘How to name and classify your phage: an informal guide’, Viruses, 9: 70. https://doi.org/10.3390/v9040070
-
- Amarillas L, Rubí-Rangel L Cristobal Chaidez, Arturo González-Robles, Luis Lightbourn-Rojas, and Josefina León-Félix (2017) ‘isolation and characterization of phiLLS, a novel phage with potential biocontrol agent against multidrug-resistant Escherichia coli’,Front. Microbiol., 8:1355. https://doi.org/10.3389/fmicb.2017.01355
-
- Brewer ML, Lori Freitag Diachin PM, Knupp T, Leurent, Darryl JM (2003)”The Mesquite Mesh Quality Improvement Toolkit.“ In IMR
-
- Caflisch KM, Gina A, Suh, Patel R (2019) Biological challenges of phage therapy and proposed solutions: a literature review. Expert Rev anti-infective therapy 17:1011–1041. https://doi.org/10.1080/14787210.2019.1694905 - DOI - PubMed
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