mBio · 2017 · 146 citations · 29 references
Bacteriophages (phages), viruses that infect bacteria, are the planet's most numerous biological entities and kill vast numbers of bacteria in natural environments. Many of these bacteria carry plasmids, extrachromosomal DNA elements that frequently encode antibiotic resistance. However, it is largely unknown whether plasmids are destroyed during phage infection or released intact upon phage lysis, whereupon their encoded resistance could be acquired and manifested by other bacteria (transformation). Because phages are being developed to combat antibiotic-resistant bacteria and because transformation is a principal form of horizontal gene transfer, this question has important implications for biomedicine and microbial evolution alike. Here we report the isolation and characterization of two novel Escherichia coli phages, dubbed "superspreaders," that promote extensive plasmid transformation and efficiently disperse antibiotic resistance genes. Our work suggests that phage superspreaders are not suitable for use in medicine but may help drive bacterial evolution in natural environments.
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The RAST Server: Rapid Annotations using Subsystems Technology
Ramy K. Aziz, Daniela Bartels, Aaron A. Best et al. · BMC Genomics · 2008 · 11.5K citations · Full text
The Complete Genome Sequence of <i>Escherichia coli</i> K-12
Frederick R. Blattner, Guy Plunkett, Craig A. Bloch et al. · Science · 1997 · 7.4K citations