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Biosensor for Detection of Antibiotic Resistant Staphylococcus Bacteria
Published on: May 8, 2013
Biological characterization and genomic analysis of a novel methicillin-resistant Staphylococcus aureus phage,
Peisong Zhao1,2,3, Wenli Zhao4, Xin Zhai5
1Department of Microbiology, School of Basic Medicine, Guilin Medical University, Guilin, Guangxi, China.
Abstract:
Staphylococcus aureus, a representative gram-positive bacterium, is a common infectious pathogen widely present in the natural environment. The increasing application of antibiotics is witnessing an increment in the number of clinically resistant strains (such as methicillin-resistant S. aureus [MRSA]), which has posed a great challenge to antimicrobial therapy. In this study, a novel MRSA phage, SauPS-28, was isolated from the lake water of the Guangxi Zhuang Autonomous Region. This phage has an incubation period of approximately 30 min, a lysis period of approximately 40 min, and a burst size of approximately 25 PFU/cell. The isolated phage exhibited good biological stability at a pH range of 6.0-9.0 and temperature range of 4°C-37°C. In addition, the identification of an elongated tail using transmission electron microscopy confirmed that SauPS-28 belongs to the long-tailed phage family. Whole-genome sequencing analysis revealed that SauPS-28 has a 43,286-bp-long genome with 31.03% G + C content. Moreover, SauPS-28 exhibited 95.69% sequence identity with ECel-2020k, while the query coverage was only 66%, which is a newly discovered phage. Whole-genome functional annotation results revealed that SauPS-28 had 68 open reading frames (ORFs). Of these, 30 ORFs are unknown proteins. The results suggest that SauPS-28 could be a lysogenic phage strain. This study thus provides preliminary data to conduct further in-depth analysis of the mechanism of phage-host interaction and provides a reference value for phage therapy.IMPORTANCEIn recent years, drug-resistant bacterial infections have become increasingly serious. As a kind of virus with the ability to infect and lyse drug-resistant bacteria, phage is expected to be a new therapeutic method. In this study, we isolated and purified a new methicillin-resistant Staphylococcus aureus bacteriophage SauPS-28, studied a series of biological characteristics of the bacteriophage, analyzed the genome and structural proteome data of the bacteriophage, and provided reference data for further study of the interaction mechanism between bacteriophage and host bacteria and promoted new antibacterial strategies.
Insights
A novel bacteriophage, SauPS-28, was isolated to combat methicillin-resistant Staphylococcus aureus (MRSA). This study details its biological characteristics and genomic data, offering potential for new phage therapy strategies against drug-resistant bacteria.
Area of Science:
- Microbiology and Virology
- Antimicrobial Resistance Research
- Bacteriophage Therapy
Background:
- Increasing antibiotic resistance in bacteria, particularly methicillin-resistant Staphylococcus aureus (MRSA), poses a significant challenge to global health.
- Bacteriophages (phages) are viruses that infect bacteria and are being explored as a promising alternative to antibiotics for treating resistant infections.
Purpose of the Study:
- To isolate and characterize a novel bacteriophage with activity against MRSA.
- To analyze the biological properties and genomic features of the isolated phage.
- To provide foundational data for developing phage-based therapeutic strategies against MRSA.
Main Methods:
- Isolation of bacteriophage SauPS-28 from lake water.
- Determination of biological characteristics: incubation period, lysis period, burst size, pH, and temperature stability.
- Transmission electron microscopy for morphological analysis.
- Whole-genome sequencing and bioinformatic analysis, including open reading frame (ORF) identification and functional annotation.
Main Results:
- SauPS-28, a long-tailed phage, was isolated and characterized with specific lytic parameters (incubation ~30 min, lysis ~40 min, burst size ~25 PFU/cell).
- The phage demonstrated good stability within a pH range of 6.0-9.0 and temperatures of 4°C-37°C.
- Whole-genome sequencing revealed a 43,286 bp genome with 68 ORFs, suggesting SauPS-28 may be a lysogenic strain. It showed 95.69% sequence identity to ECel-2020k.
Conclusions:
- The novel MRSA bacteriophage SauPS-28 possesses favorable biological characteristics and genomic features.
- This study provides essential preliminary data for further investigation into phage-host interactions and the potential of SauPS-28 in phage therapy.
- SauPS-28 represents a potential candidate for developing new strategies to combat MRSA infections.
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