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1.
Microbiol Spectr ; 12(1): e0253723, 2024 Jan 11.
Article in English | MEDLINE | ID: mdl-38063386

ABSTRACT

IMPORTANCE: This work was undertaken because plasmid-dependent phages can reduce the prevalence of conjugative plasmids and can be leveraged to prevent the acquisition and dissemination of ARGs by bacteria. The two novel phages described in this study, Lu221 and Hi226, can infect Escherichia coli, Salmonella enterica, Kluyvera sp. and Enterobacter sp. carrying conjugative plasmids. This was verified with plasmids carrying resistance determinants and belonging to the most common plasmid families among Gram-negative pathogens. Therefore, the newly isolated phages could have the potential to help control the spread of ARGs and thus help combat the antimicrobial resistance crisis.


Subject(s)
Bacteriophages , Salmonella enterica , Humans , Anti-Bacterial Agents , Plasmids/genetics , Escherichia coli/genetics , Salmonella enterica/genetics , Conjugation, Genetic
2.
Environ Microbiol ; 24(4): 2098-2118, 2022 04.
Article in English | MEDLINE | ID: mdl-35293111

ABSTRACT

The Bacillus phage SPß has been known for about 50 years, but only a few strains are available. We isolated four new wild-type strains of the SPbeta species. Phage vB_BsuS-Goe14 introduces its prophage into the spoVK locus, previously not observed to be used by SPß-like phages. Sequence data revealed the genome replication strategy and the genome packaging mode of SPß-like phages. We extracted 55 SPß-like prophages from public Bacillus genomes, thereby discovering three more integration loci and one additional type of integrase. The identified prophages resemble four new species clusters and three species orphans in the genus Spbetavirus. The determined core proteome of all SPß-like prophages consists of 38 proteins. The integration cassette proved to be not conserved, even though, present in all strains. It consists of distinct integrases. Analysis of SPß transcriptomes revealed three conserved genes, yopQ, yopR, and yokI, to be transcribed from a dormant prophage. While yopQ and yokI could be deleted from the prophage without activating the prophage, damaging of yopR led to a clear-plaque phenotype. Under the applied laboratory conditions, the yokI mutant showed an elevated virion release implying the YokI protein being a component of the arbitrium system.


Subject(s)
Bacillus Phages , Siphoviridae , Bacillus Phages/genetics , Bacillus Phages/metabolism , Integrases/genetics , Lysogeny/genetics , Prophages/genetics , Virus Integration
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