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               REFERENCES
               1.       Fitz-Gibbon S, Tomida S, Chiu BH, et al. Propionibacterium acnes strain populations in the human skin microbiome associated with
                   acne. J Invest Dermatol 2013;133:2152-60.  DOI  PubMed  PMC
               2.       Li H. The human skin microbiome in health and skin diseases. In: Nelson K, editor. Metagenomics of the human body. New York:
                   Springer. 2011. pp. 145-63.  DOI
               3.       Marinelli LJ, Fitz-Gibbon S, Hayes C, et al. Propionibacterium acnes bacteriophages display limited genetic diversity and broad
                   killing activity against bacterial skin isolates. mBio 2012;3:e00279-12.  DOI  PubMed  PMC
               4.       Perry A, Lambert P. Propionibacterium acnes: infection beyond the skin. Expert Rev Anti Infect Ther 2011;9:1149-56.  DOI  PubMed
               5.       Leheste JR, Ruvolo KE, Chrostowski JE, et al. P. acnes-driven disease pathology: current knowledge and future directions. Front Cell
                   Infect Microbiol 2017;7:81.  DOI  PubMed  PMC
               6.       Brüggemann H, Lood R. Bacteriophages infecting Propionibacterium acnes. Biomed Res Int 2013;2013:705741.  DOI  PubMed  PMC
               7.       Jończyk-Matysiak E, Weber-Dąbrowska B, Żaczek M, et al. Prospects of phage application in the treatment of acne caused by
                   Propionibacterium acnes. Front Microbiol 2017;8:164.  DOI  PubMed  PMC
               8.       Coenye T, Peeters E, Nelis HJ. Biofilm formation by Propionibacterium acnes is associated with increased resistance to antimicrobial
                   agents and increased production of putative virulence factors. Res Microbiol 2007;158:386-92.  DOI  PubMed
               9.       Holmberg A, Lood R, Mörgelin M, et al. Biofilm formation by Propionibacterium acnes is a characteristic of invasive isolates. Clin
                   Microbiol Infect 2009;15:787-95.  DOI  PubMed
               10.      Brüggemann H, Lomholt HB, Kilian M. The flexible gene pool of Propionibacterium acnes. Mob Genet Elements 2012;2:145-8.  DOI
                   PubMed  PMC
               11.      Liu J, Yan R, Zhong Q, et al. The diversity and host interactions of Propionibacterium acnes bacteriophages on human skin. ISME J
                   2015;9:2078-93.  DOI  PubMed  PMC
               12.      Labrie SJ, Samson JE, Moineau S. Bacteriophage resistance mechanisms. Nature Rev Microbiol 2010;8:317-27.  DOI  PubMed
               13.      Sun X, Göhler A, Heller KJ, Neve H. The ltp gene of temperate Streptococcus thermophilus phage TP-J34 confers superinfection
                   exclusion to Streptococcus thermophilus and Lactococcus lactis. Virology 2006;350:146-57.  DOI  PubMed
               14.     Seed KD. Battling phages: how bacteria defend against viral attack. PLoS Pathog 2015;11:e1004847.  DOI  PubMed  PMC
               15.     McAllister WT, Barrett CL. Superinfection exclusion by bacteriophage T7. J Virol 1977;24:709-11.  DOI  PubMed  PMC
               16.      Hofer  B,  Ruge  M,  Dreiseikelmann  B.  The  superinfection  exclusion  gene  (sieA)  of  bacteriophage  P22:  identification  and
                   overexpression of the gene and localization of the gene product. J Bacteriol 1995;177:3080-6.  DOI  PubMed  PMC
               17.      Mahony J, McGrath S, Fitzgerald GF, van Sinderen D. Identification and characterization of lactococcal-prophage-carried
                   superinfection exclusion genes. Appl Environ Microbiol 2008;74:6206-15.  DOI  PubMed  PMC
               18.      van den Berg B, Silale A, Baslé A, Brandner AF, Mader SL, Khalid S. Structural basis for host recognition and superinfection
                   exclusion by bacteriophage T5. Proc Natl Acad Sci U S A 2022;119:e2211672119.  DOI  PubMed  PMC
               19.      Leavitt JC, Woodbury BM, Gilcrease EB, Bridges CM, Teschke CM, Casjens SR. Bacteriophage P22 SieA mediated superinfection
                   exclusion. mBio 2024;15:e02169-23.  DOI
               20.      Hasan M, Ahn J. Evolutionary dynamics between phages and bacteria as a possible approach for designing effective phage therapies
                   against antibiotic-resistant bacteria. Antibiotics 2022;11:915.  DOI  PubMed  PMC
               21.      Ruiz-Cruz S, Parlindungan E, Erazo Garzon A, et al. Lysogenization of a lactococcal host with three distinct temperate phages
                   provides homologous and heterologous phage resistance. Microorganisms 2020;8:1685.  DOI  PubMed  PMC
               22.      Bebeacua C, Lorenzo Fajardo JC, Blangy S, et al. X-ray structure of a superinfection exclusion lipoprotein from phage TP-J34 and
                   identification of the tape measure protein as its target. Mol Microbiol 2013;89:152-65.  DOI  PubMed
               23.      Ali Y, Koberg S, Heßner S, et al. Temperate Streptococcus thermophilus phages expressing superinfection exclusion proteins of the
                   Ltp type. Front Microbiol 2014;5:98.  DOI  PubMed  PMC
               24.      Lood R, Collin M. Characterization and genome sequencing of two Propionibacterium acnes phages displaying pseudolysogeny. BMC
                   Genomics 2011;12:198.  DOI  PubMed  PMC
               25.      Cieślik M, Bagińska N, Jończyk-Matysiak E, Węgrzyn A, Węgrzyn G, Górski A. Temperate bacteriophages - the powerful indirect
                   modulators of eukaryotic cells and immune functions. Viruses 2021;13:1013.  DOI  PubMed  PMC
               26.      Shapiro C, Moberg-Parker J, Toma S, et al. Comparing the impact of course-based and apprentice-based research experiences in a life
                   science laboratory curriculum. J Microbiol Biol Educ 2015;16:186-97.  DOI  PubMed  PMC
               27.      Webster GF, Cummins CS. Use of bacteriophage typing to distinguish Propionibacterium acne types I and II. J Clin Microbiol
                   1978;7:84-90.  DOI  PubMed  PMC
               28.      Neve H, Freudenberg W, Diestel-Feddersen F, Ehlert R, Heller KJ. Biology of the temperate Streptococcus thermophilus
                   bacteriophage TP-J34 and physical characterization of the phage genome. Virology 2003;315:184-94.  DOI  PubMed
               29.      Russell DA. Sequencing, assembling, and finishing complete bacteriophage genomes. In: Clokie M, Kropinski A, Lavigne R, editors.
                   Bacteriophages: methods in molecular biology. New York: Humana Press. 2018. pp. 109-25.  DOI
               30.      Delcher AL, Bratke KA, Powers EC, Salzberg SL. Identifying bacterial genes and endosymbiont DNA with Glimmer. Bioinformatics
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