Literature DB >> 25359913

Draft Genome Sequences of Two Vibrionaceae Species, Vibrio ponticus C121 and Photobacterium aphoticum C119, Isolated as Coral Reef Microbiota.

Nurhidayu Al-Saari1, Pedro Milet Meirelles2, Sayaka Mino1, Wataru Suda3, Kenshiro Oshima3, Masahira Hattori3, Moriya Ohkuma4, Fabiano L Thompson2, Bruno Gomez-Gil5, Toko Sawabe6, Tomoo Sawabe7.   

Abstract

Here, the draft genome sequences of two Vibrionaceae, Vibrio ponticus C121 and Photobacterium aphoticum C119, which were isolated from the coral reef vicinity in Okinawa, Japan, are reported. The genome provides further insight into the genomic plasticity, biocomplexity, and ecophysiology, including pathogenicity and evolution, of these genera.
Copyright © 2014 Al-saari et al.

Entities:  

Year:  2014        PMID: 25359913      PMCID: PMC4214989          DOI: 10.1128/genomeA.01095-14

Source DB:  PubMed          Journal:  Genome Announc


GENOME ANNOUNCEMENT

The family Vibrionaceae encompasses diverse metabolically versatile marine bacteria that are associated with many significant events in the marine ecosystem, including fish/shellfish pathogenicity (1), mutual symbiosis with marine organisms (2, 3), and mediation of the nutrient cycle in the marine food web (4, 5). They are ubiquitous in marine environments and are characterized by high genomic plasticity (6). These dynamics have made the differentiation of sister species difficult (7). Interestingly, such characteristics have also nominated Vibrionaceae species as a great test model for genomic taxonomy (7). To date, the family Vibrionaceae accounts for 142 validly described species and the number is growing continuously (http://www.bacterio.net/-candidatus.html). However, the rapid expansion of the family has also demanded more reliable, reproducible, and informative schemes to define a new species that can be attained using microbial genomic taxonomy. While the type strains of V. ponticus (8) and P. aphoticum (9) were described in 2004 and 2011, respectively, no genome sequence has been reported since then. Our study reports the first draft genome sequences of V. ponticus C121 and P. aphoticum C119, which were isolated from water samples taken near the coral reef vicinity of Iriomote-Ishigaki National Park, Okinawa, Japan. V. ponticus strain was isolated not only from seawater and mussels but also diseased sea bream (8) and Japanese sea bass (10). P. aphoticum was isolated from seawater (9). The species might be found closed as a clade of P. rosenbergii on the basis of multilocus sequence analysis (11). The data presented here is aimed to extend the current database of Vibrionaceae and subsequently assist further elucidation in the genomics, pathogenicity, and evolution of this group of bacteria. The genome sequences of V. ponticus C121 and P. aphoticum C119 were sequenced with the Ion PGM System (Life Technologies, Carlsbad, CA) and assembled using Newbler version 2.8. The annotation and genome analysis were performed by RAST (Rapid Annotation Subsystem Technology) (12). The size of the draft genome of V. ponticus C121 is 4,658,121 bp, comprising 98 contigs with a G+C content of 45.2%. On the other hand, the size of the draft genome of P. aphoticum C119 is 5,412,298 bp, comprising 56 contigs with a G+C content of 49.7%. The redundancies of both were 71 and 26, and N50 contig lengths were 128,889 bp and 217,077 bp, respectively. The numbers of putative coding sequences (CDS) were 5,654 for V. ponticus C121 and 6,976 for P. aphoticum C119; of rRNA sequences were 3 and 6; and of tRNA sequences were 78 and 61, respectively. These strains have been deposited in the Japan Collection of Microorganisms as JCM 19238 (C121) and JCM 19237 (C119), respectively.

Nucleotide sequence accession numbers.

The genome data have been deposited at DDBJ/EMBL/GenBank under the accession numbers BBMI01000001 to BBMI01000098 for Vibrio ponticus C121 and BBMN01000001 to BBMN01000056 for Photobacterium aphoticum C119.
  11 in total

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3.  Photobacterium aphoticum sp. nov., isolated from coastal water.

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Journal:  Syst Appl Microbiol       Date:  2004-09       Impact factor: 4.022

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8.  Updating the Vibrio clades defined by multilocus sequence phylogeny: proposal of eight new clades, and the description of Vibrio tritonius sp. nov.

Authors:  Tomoo Sawabe; Yoshitoshi Ogura; Yuta Matsumura; Gao Feng; Akm Rohul Amin; Sayaka Mino; Satoshi Nakagawa; Toko Sawabe; Ramesh Kumar; Yohei Fukui; Masataka Satomi; Ryoji Matsushima; Fabiano L Thompson; Bruno Gomez-Gil; Richard Christen; Fumito Maruyama; Ken Kurokawa; Tetsuya Hayashi
Journal:  Front Microbiol       Date:  2013-12-27       Impact factor: 5.640

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Authors:  Cristiane C Thompson; Ana Carolina P Vicente; Rangel C Souza; Ana Tereza R Vasconcelos; Tammi Vesth; Nelson Alves; David W Ussery; Tetsuya Iida; Fabiano L Thompson
Journal:  BMC Evol Biol       Date:  2009-10-27       Impact factor: 3.260

Review 10.  Associations and dynamics of Vibrionaceae in the environment, from the genus to the population level.

Authors:  Alison F Takemura; Diana M Chien; Martin F Polz
Journal:  Front Microbiol       Date:  2014-02-11       Impact factor: 5.640

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