Streptococcus pyogenes prophage phi 1207.3 (formerly Tn1207.3) carries the mef(A)-msr(D) resistance genes, responsible for type M macrolide resistance. To investigate if phi 1207.3 is a functional bacteriophage, we transferred the element from the original S. pyogenes host in a prophage-free and competence-deficient S. pneumoniae strain. Pneumococcal cultures of the phi 1207.3-carrying lysogen were treated with mitomycin C to assess if phi 1207.3 enters the lytic cycle. Mitomycin C induced a limited phage burst and a growth impairment, resulting in early entrance into the stationary phase. To determine if phi 1207.3 is able to produce mature phage particles, we prepared concentrated supernatants recovered from a mitomycin C-induced pneumococcal culture by sequential centrifugation and ultracentrifugation steps. Negative-staining transmission electron microscopy (TEM) of supernatants revealed the presence of phage particles with an icosahedral, electron-dense capsid and a long, noncontractile tail, typical of a siphovirus. Quantification of phi 1207.3 was performed by quantitative PCR (qPCR) and semiquantitatively by TEM. PCR quantified 3.34 x 10(4) and 6.06 x 10(4) excised forms of phage genome per milliliter of supernatant obtained from the untreated and mitomycin C-treated cultures, respectively. By TEM, we estimated 3.02 x 10(3) and 7.68 x 10(3) phage particles per milliliter of supernatant. The phage preparations of phi 1207.3 infected and lysogenized pneumococcal recipient strains at a frequency of 7.5 x 10(-6) lysogens/recipient but did not show sufficient lytic activity to form plaques. Phage lysogenization efficiently occurred after 30 min of contact of the phages with the recipient cells and required a minimum of 10(3) phage particles. © 2023 Santoro et al.
Santoro, F., Pastore, G., Fox, V., Petit, M., Iannelli, F., Pozzi, G. (2023). Streptococcus pyogenes Φ1207.3 Is a Temperate Bacteriophage Carrying the Macrolide Resistance Gene Pair mef(A)-msr(D) and Capable of Lysogenizing Different Streptococci. MICROBIOLOGY SPECTRUM, 11(1), 1-9 [10.1128/spectrum.04211-22].
Streptococcus pyogenes Φ1207.3 Is a Temperate Bacteriophage Carrying the Macrolide Resistance Gene Pair mef(A)-msr(D) and Capable of Lysogenizing Different Streptococci
Santoro, Francesco
;Pastore, Gabiria;Fox, Valeria;Iannelli, Francesco;Pozzi, Gianni
2023-01-01
Abstract
Streptococcus pyogenes prophage phi 1207.3 (formerly Tn1207.3) carries the mef(A)-msr(D) resistance genes, responsible for type M macrolide resistance. To investigate if phi 1207.3 is a functional bacteriophage, we transferred the element from the original S. pyogenes host in a prophage-free and competence-deficient S. pneumoniae strain. Pneumococcal cultures of the phi 1207.3-carrying lysogen were treated with mitomycin C to assess if phi 1207.3 enters the lytic cycle. Mitomycin C induced a limited phage burst and a growth impairment, resulting in early entrance into the stationary phase. To determine if phi 1207.3 is able to produce mature phage particles, we prepared concentrated supernatants recovered from a mitomycin C-induced pneumococcal culture by sequential centrifugation and ultracentrifugation steps. Negative-staining transmission electron microscopy (TEM) of supernatants revealed the presence of phage particles with an icosahedral, electron-dense capsid and a long, noncontractile tail, typical of a siphovirus. Quantification of phi 1207.3 was performed by quantitative PCR (qPCR) and semiquantitatively by TEM. PCR quantified 3.34 x 10(4) and 6.06 x 10(4) excised forms of phage genome per milliliter of supernatant obtained from the untreated and mitomycin C-treated cultures, respectively. By TEM, we estimated 3.02 x 10(3) and 7.68 x 10(3) phage particles per milliliter of supernatant. The phage preparations of phi 1207.3 infected and lysogenized pneumococcal recipient strains at a frequency of 7.5 x 10(-6) lysogens/recipient but did not show sufficient lytic activity to form plaques. Phage lysogenization efficiently occurred after 30 min of contact of the phages with the recipient cells and required a minimum of 10(3) phage particles. © 2023 Santoro et al.File | Dimensione | Formato | |
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https://hdl.handle.net/11365/1227336