Chang B, Taniguchi H, Miyamoto H, Yoshida S i
Department of Microbiology, School of Medicine, University of Occupational and Environmental Health, Iseigaoka 1-1, Yahatanishiku, Kitakyushu 807-8555, Japan.
J Bacteriol. 1998 Oct;180(19):5094-101. doi: 10.1128/JB.180.19.5094-5101.1998.
We have previously reported the isolation and characterization of two filamentous bacteriophages of Vibrio parahaemolyticus, designated Vf12 and Vf33. In this study, to understand the potential of these phages as tools for genetic transmission, we investigated the gene structures of replicative-form (RF) DNAs of their genomes and the distribution of these DNAs on chromosomal and extrachromosomal DNAs. The 7,965-bp nucleotide sequences of Vf12 and Vf33 were determined. An analysis of the overall gene structures revealed that Vf12 and Vf33 had conserved regions and distinctive regions. The gene organization of their conserved regions was similar to that of CTX phage of Vibrio cholerae and coliphage Ff of Escherichia coli, while their distinctive regions were characteristic of Vf12 and Vf33 phage genomes. Southern blot hybridization testing revealed that the filamentous phage genomes integrated into chromosomal DNA of V. parahaemolyticus at the distinctive region of the phage genome and were also distributed on some plasmids of V. parahaemolyticus and total cellular DNAs of one Vibrio damsela and one nonagglutinable Vibrio strain tested. These results strongly suggest the possibilities of genetic interaction among the bacteriophage Vf12 and Vf33 genomes and chromosomal and plasmid-borne DNAs of V. parahaemolyticus strains and of genetic transmission among strains through these filamentous phages.
我们之前报道过两株副溶血性弧菌丝状噬菌体的分离和特性鉴定,分别命名为Vf12和Vf33。在本研究中,为了解这些噬菌体作为基因传递工具的潜力,我们研究了其基因组复制型(RF)DNA的基因结构以及这些DNA在染色体DNA和染色体外DNA上的分布。测定了Vf12和Vf33的7965个碱基对的核苷酸序列。对整体基因结构的分析表明,Vf12和Vf33有保守区域和独特区域。它们保守区域的基因组织类似于霍乱弧菌的CTX噬菌体和大肠杆菌的Ff噬菌体,而其独特区域则是Vf12和Vf33噬菌体基因组所特有的。Southern杂交试验表明,丝状噬菌体基因组在噬菌体基因组的独特区域整合到副溶血性弧菌的染色体DNA中,并且也分布在副溶血性弧菌的一些质粒上以及一株美人鱼弧菌和一株非凝集性弧菌菌株的总细胞DNA中。这些结果有力地表明了噬菌体Vf12和Vf33基因组与副溶血性弧菌菌株的染色体DNA和质粒携带的DNA之间发生基因相互作用的可能性,以及通过这些丝状噬菌体在菌株之间进行基因传递的可能性。