Ramphul Chitra, Casareto Beatriz Estela, Dohra Hideo, Suzuki Tomohiro, Yoshimatsu Katsuhiko, Yoshinaga Koichi, Suzuki Yoshimi
Department of Environment and Energy Systems, Graduate School of Science and Technology, Shizuoka University, 836 Ohya, Suruga-ku, Shizuoka 422-8529, Japan.
Department of Environment and Energy Systems, Graduate School of Science and Technology, Shizuoka University, 836 Ohya, Suruga-ku, Shizuoka 422-8529, Japan; Research Institute of Green Science and Technology, Shizuoka University, 836 Ohya, Suruga-ku, Shizuoka 422-8529, Japan.
Mar Genomics. 2017 Oct;35:69-75. doi: 10.1016/j.margen.2017.06.005. Epub 2017 Jul 6.
Three novel Vibrio phages were isolated from seawater in Okinawa. The Vibrio phage RYC infected Vibrio coralliilyticus SWA 07, while Vibrio phages CKB-S1 and CKB-S2 infected the coral pathogen V. coralliilyticus P1 (LMG 23696). The Vibrio phages CKB-S1 and CKB-S2 displayed head-tail structures whereas the Vibrio phage RYC showed a tailless non-enveloped capsid. All these Vibrio phages contained linear and double-stranded DNA. The whole genome sequencing revealed that Vibrio phage RYC has a larger genome size compared to Vibrio phages CKB-S1 and CKB-S2, and six tRNAs genes were found only in Vibrio phage RYC. Genome-wide comparison showed that Vibrio phage CKB-S1 was closely related, but was not identical, to Vibrio parahaemolyticus phages VP16T and VP16C. Meanwhile, the Vibrio phages RYC and CKB-S2 did not show high genome-wide similarity to any phages. These results suggest that the Vibrio phages CKB-S1, CKB-S2 and RYC are novel phages, which need further exploration, especially for their potential applications in phage therapy.
从冲绳的海水中分离出三种新型弧菌噬菌体。弧菌噬菌体RYC感染溶珊瑚弧菌SWA 07,而弧菌噬菌体CKB-S1和CKB-S2感染珊瑚病原体溶珊瑚弧菌P1(LMG 23696)。弧菌噬菌体CKB-S1和CKB-S2呈现头尾结构,而弧菌噬菌体RYC显示无尾无包膜的衣壳。所有这些弧菌噬菌体都含有线性双链DNA。全基因组测序显示,与弧菌噬菌体CKB-S1和CKB-S2相比,弧菌噬菌体RYC的基因组更大,并且仅在弧菌噬菌体RYC中发现了六个tRNA基因。全基因组比较表明,弧菌噬菌体CKB-S1与副溶血性弧菌噬菌体VP16T和VP16C密切相关,但并不相同。同时,弧菌噬菌体RYC和CKB-S2与任何噬菌体都没有显示出高全基因组相似性。这些结果表明,弧菌噬菌体CKB-S1、CKB-S2和RYC是新型噬菌体,需要进一步探索,特别是它们在噬菌体治疗中的潜在应用。