4.5 Article

Phylogenic analysis of new viral cluster of large phages with unusual DNA genomes containing uracil in place of thymine in gene-sharing network, using phages S6 and PBS1 and relevant uncultured phages derived from sewage metagenomics

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VIRUS RESEARCH
卷 319, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.virusres.2022.198881

关键词

Environmental virus; Jumbophage; Metagenomics; Evolution; Uncultured phage

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资金

  1. Ministry of Education, Culture, Sports, Science and Technology of Japan [15K19095]
  2. [28-604]

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This study examined the phylogeny of dU jumbophages, a type of phage with uracil in their DNA. Through gene analysis and gene-sharing network analysis, the researchers found that dU jumbophages are similar to each other and form a clustered group. They also discovered two uncultured phages that may be related to dU jumbophages. These findings suggest that dU jumbophages may have originated from a common source and diverged before the divergence of Gram-negative and Gram-positive bacteria.
Bacteriophages (phages) are the most diverse and abundant life-form on Earth. Jumbophages are phages with double-stranded DNA genomes longer than 200 kbp. Among these, some jumbophages with uracil in place of thymine as a nucleic acid base, which we have tentatively termed dU jumbophages in this study, have been reported. Because the dU jumbophages are considered to be a living fossil from the RNA world, the evolutionary traits of dU jumbophages are of interest. In this study, we examined the phylogeny of dU jumbophages. First, tBLASTx analysis of newly sequenced dU jumbophages such as Bacillus phage PBS1 and previously isolated Staphylococcus phage S6 showed similarity to the other dU jumbophages. Second, we detected the two partial genome sequences of uncultured phages possibly relevant to dU jumbophages, scaffold_002 and scaffold_007, from wastewater metagenomics. Third, according to the gene-sharing network analysis, the dU jumbophages, including phages PBS1 and S6, and uncultured phage scaffold_002 formed a cluster, which suggested a new viral subfamily/family. Finally, analyses of the phylogenetic relationship with other phages showed that the dU jumbophage cluster, which had two clades of phages infecting Gram-negative and Gram-positive bacteria, diverged from the single ancestral phage. These findings together with previous reports may imply that dU jumbophages evolved from the same origin before divergence of Gram-negative and Gram-positive bacteria.

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