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Updated: Mar 19, 2026

Isolation and Genome Analysis of Single Virions using 'Single Virus Genomics'
Published on: May 26, 2013
Complete Genome Sequences of T1-Like Phages JMPW1 and JMPW2
Mengyu Shen1, Hongbin Zhu1, Shuguang Lu1
1Department of Microbiology, College of Basic Medical Science, Third Military Medical University, Chongqing, People's Republic of China.
Abstract:
We report the complete genome sequences of phages JMPW1 (49,840 bp) and JMPW2 (50,298 bp), two T1-like Escherichia coli phages isolated from contaminated experiment samples. Although the genomes of JMPW1 and JMPW2 share high identity with T1, they show some differences, which are mainly located in several genes with unknown functions and genes encoding tail fiber proteins and endonucleases.
Insights
We sequenced two T1-like Escherichia coli phages, JMPW1 and JMPW2. Their genomes show high similarity to phage T1 but contain distinct genes, particularly those for tail fibers and unknown functions.
Area of Science:
- Microbiology and Virology
- Bacteriophage genomics
- Escherichia coli phage research
Background:
- Bacteriophages are viruses that infect bacteria, playing crucial roles in microbial ecosystems and bacterial evolution.
- T1-like phages are a group of bacteriophages known to infect Escherichia coli, a common model organism and opportunistic pathogen.
- Understanding phage genomes is essential for phage therapy development and microbial population control.
Purpose of the Study:
- To determine and analyze the complete genome sequences of two novel T1-like Escherichia coli phages, designated JMPW1 and JMPW2.
- To compare the genomic features of JMPW1 and JMPW2 with the reference phage T1.
- To identify genetic variations, particularly in genes with unknown functions and those encoding structural or enzymatic proteins.
Main Methods:
- Isolation of bacteriophages JMPW1 and JMPW2 from contaminated experimental samples.
- Whole-genome sequencing of both phages using established next-generation sequencing technologies.
- Bioinformatic analysis, including genome assembly, annotation, and comparative genomics against the T1 phage genome.
Main Results:
- Complete genome sequences were obtained for JMPW1 (49,840 bp) and JMPW2 (50,298 bp).
- Both phages exhibit high overall genomic identity with the T1 phage.
- Significant genetic differences were identified, primarily in genes of unknown function and genes encoding tail fiber proteins and endonucleases.
Conclusions:
- The genomic data provide a foundation for further functional studies of JMPW1 and JMPW2.
- The identified genetic variations may contribute to differences in host range, lytic activity, or other biological properties compared to T1.
- These findings enhance our understanding of T1-like phage diversity and evolution within the Escherichia coli species.
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