Literature DB >> 32307604

Isolation and complete genome sequence of a novel cyanophage, S-B05, infecting an estuarine Synechococcus strain: insights into environmental adaptation.

Tong Jiang1, Cui Guo2,3,4, Min Wang1,5,6, Meiwen Wang1, Siyuan You1, Yundan Liu1, Xinran Zhang1, Hongbin Liu7, Yong Jiang1,5,6, Hongbing Shao1, Yantao Liang1,5,6, Andrew McMinn1,8.   

Abstract

A new cyanophage, S-B05, infecting a phycoerythrin-enriched (PE-type) Synechococcus strain was isolated by the liquid infection method, and its morphology and genetic features were examined. Phylogenetic analysis and morphological observation confirmed that S-B05 belongs to the family Myoviridae of the order Caudovirales. Its genome was fully sequenced, and found to be 208,857 bp in length with a G + C content of 39.9%. It contained 280 potential open reading frames and 123 conserved domains. Ninety-eight functional genes responsible for cyanophage structuring and packaging, DNA replication and regulation, and photosynthesis were identified, as well as genes encoding 172 hypothetical proteins. The genome of S-B05 is most similar to that of Prochlorococcus phage P-TIM68. Homologues of open reading frames of S-B05 can be found in various marine environments, as revealed by comparison of the S-B05 genome sequence to sequences in marine viral metagenomic databases. The presence of auxiliary metabolic genes (AMGs) related to photosynthesis, carbon metabolism, and phosphorus assimilation, as well as the phylogenetic relationships based on AMGs and the complete genome sequence, reflect the phage-host interaction mechanism or the specific adaptation strategy of the host to environmental conditions. The genome sequence information reported here will provide an important basis for further study of the adaptive evolution and ecological role of cyanophages and their hosts in the marine environment.

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Year:  2020        PMID: 32307604     DOI: 10.1007/s00705-020-04595-6

Source DB:  PubMed          Journal:  Arch Virol        ISSN: 0304-8608            Impact factor:   2.574


  1 in total

1.  Genome Analysis of Two Novel Synechococcus Phages That Lack Common Auxiliary Metabolic Genes: Possible Reasons and Ecological Insights by Comparative Analysis of Cyanomyoviruses.

Authors:  Tong Jiang; Cui Guo; Min Wang; Meiwen Wang; Xinran Zhang; Yundan Liu; Yantao Liang; Yong Jiang; Hui He; Hongbing Shao; Andrew McMinn
Journal:  Viruses       Date:  2020-07-25       Impact factor: 5.048

  1 in total

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