Analysis of the Genetic Switch and Replication Region of a P335-Type Bacteriophage with an Obligate Lytic Lifestyle on Lactococcus lactis
- 1 March 2001
- journal article
- Published by American Society for Microbiology in Applied and Environmental Microbiology
- Vol. 67 (3) , 1128-39
- https://doi.org/10.1128/aem.67.3.1128-1139.2001
Abstract
The DNA sequence of the replication module, part of the lysis module, and remnants of a lysogenic module from the lytic P335 species lactococcal bacteriophage phi31 was determined, and its regulatory elements were investigated. The identification of a characteristic genetic switch including two divergent promoters and two cognate repressor genes strongly indicates that phi31 was derived from a temperate bacteriophage. Regulation of the two early promoters was analyzed by primer extension and transcriptional promoter fusions to a lacLM reporter. The regulatory behavior of the promoter region differed significantly from the genetic responses of temperate Lactococcus lactis phages. The cro gene homologue regulates its own production and is an efficient repressor of cI gene expression. No detectable cI gene expression could be measured in the presence of cro. cI gene expression in the absence of cro exerted minor influences on the regulation of the two promoters within the genetic switch. Homology comparisons revealed a replication module which is most likely expressed from the promoter located upstream of the cro gene homologue. The replication module encoded genes with strong homology to helicases and primases found in several Streptococcus thermophilus phages. Downstream of the primase homologue, an AT-rich noncoding origin region was identified. The characteristics and location of this region and its ability to reduce the efficiency of plaquing of phi31 10(6)-fold when present at high copy number in trans provide evidence for identification of the phage origin of replication. Phage phi31 is an obligately lytic phage that was isolated from commercial dairy fermentation environments. Neither a phage attachment site nor an integrase gene, required to establish lysogeny, was identified, explaining its lytic lifestyle and suggesting its origin from a temperate phage ancestor. Several regions showing extensive DNA and protein homologies to different temperate phages of Lactococcus, Lactobacillus, and Streptococcus were also discovered, indicating the likely exchange of DNA cassettes through horizontal gene transfer in the dynamic ecological environment of dairy fermentations.Keywords
This publication has 121 references indexed in Scilit:
- Helicases: amino acid sequence comparisons and structure-function relationshipsPublished by Elsevier ,2005
- A2 Cro, the Lysogenic Cycle Repressor, Specifically Binds to the Genetic Switch Region of Lactobacillus casei Bacteriophage A2Virology, 1999
- Primary structure and features of the genome of the Lactobacillus gasseri temperate bacteriophage φadhGene, 1999
- Temporal transcription of the lactococcal temperate phage TP901-1 and DNA sequence of the early promoter regionMicrobiology, 1998
- Complete nucleotide sequence and molecular characterization of the temperate staphylococcal bacteriophage φPVL carrying Panton–Valentine leukocidin genesGene, 1998
- Development of an Expression Strategy Using a Lytic Phage to Trigger Explosive Plasmid Amplification and Gene Expression†Nature Biotechnology, 1996
- High- and low-copy-number Lactococcus shuttle cloning vectors with features for clone screeningGene, 1993
- A self-splicing group I intron in the DNA polymerase gene of bacillus subtilis bacteriophage SPO1Cell, 1990
- Molecular Characterization and Comparison of 38 Virulent and Temperate Bacteriophages of Streptococcus lactisMicrobiology, 1987
- A THEORY OF MODULAR EVOLUTION FOR BACTERIOPHAGES*Annals of the New York Academy of Sciences, 1980