TY - JOUR
T1 - Molecular evidence for a new bacteriophage of Borrelia burgdorferi
AU - Eggers, Christian H.
AU - Samuels, D. Scott
PY - 1999/12
Y1 - 1999/12
N2 - We have recovered a DNase-protected, chloroform-resistant molecule of DNA from the cell-free supernatant of a Borrelia burgdorferi culture. The DNA is a 32-kb double-stranded linear molecule that is derived from the 32-kb circular plasmids (cp32s) of the B. burgdorferi genome. Electron microscopy of samples from which the 32-kb DNA molecule was purified revealed bacteriophage particles. The bacteriophage has a polyhedral head with a diameter of 55 nm and appears to have a simple 100-nm-long tail. The phage is produced constitutively at low levels from growing cultures of some B. burgdorferi strains and is inducible to higher levels with 10 μg of 1-methyl-3-nitroso-nitroguanidine (MNNG) ml-1. In addition, the prophage can be induced with MNNG from some Borrelia isolates that do not naturally produce phage. We have isolated and partially characterized the phage associated with B. burgdorferi CA-11.2A. To our knowledge, this is the first molecular characterization of a bacteriophage of B. burgdorferi.
AB - We have recovered a DNase-protected, chloroform-resistant molecule of DNA from the cell-free supernatant of a Borrelia burgdorferi culture. The DNA is a 32-kb double-stranded linear molecule that is derived from the 32-kb circular plasmids (cp32s) of the B. burgdorferi genome. Electron microscopy of samples from which the 32-kb DNA molecule was purified revealed bacteriophage particles. The bacteriophage has a polyhedral head with a diameter of 55 nm and appears to have a simple 100-nm-long tail. The phage is produced constitutively at low levels from growing cultures of some B. burgdorferi strains and is inducible to higher levels with 10 μg of 1-methyl-3-nitroso-nitroguanidine (MNNG) ml-1. In addition, the prophage can be induced with MNNG from some Borrelia isolates that do not naturally produce phage. We have isolated and partially characterized the phage associated with B. burgdorferi CA-11.2A. To our knowledge, this is the first molecular characterization of a bacteriophage of B. burgdorferi.
UR - http://www.scopus.com/inward/record.url?scp=0032699610&partnerID=8YFLogxK
U2 - 10.1128/jb.181.23.7308-7313.1999
DO - 10.1128/jb.181.23.7308-7313.1999
M3 - Article
C2 - 10572135
AN - SCOPUS:0032699610
SN - 0021-9193
VL - 181
SP - 7308
EP - 7313
JO - Journal of Bacteriology
JF - Journal of Bacteriology
IS - 23
ER -