Comparative genome analyses of three serotypes of Lactococcus bacteria isolated from diseased cultured striped jack (Pseudocaranx dentex)

Author:

Mahmoud Mahmoud Mostafa1,Abdelsalam Mohamed2,Kawato Satoshi3,Harakawa Shogo4,Kawakami Hidemasa4,Hirono Ikuo3ORCID,Kondo Hidehiro3ORCID

Affiliation:

1. Department of Aquatic Animal Medicine and Management, Faculty of Veterinary Medicine Assiut University Assiut Egypt

2. Department of Aquatic Animal Medicine and Management, Faculty of Veterinary Medicine Cairo University Giza Egypt

3. Graduate School of Marine Science and Technology Tokyo University of Marine Science and Technology Tokyo Japan

4. Ehime Fisheries Research Center, Ehime Research Institute of Agriculture, Forestry and Fisheries Ehime Japan

Abstract

AbstractLactococcosis, caused by members of the genus Lactococcus, represents a devastating disease inducing mass mortalities and economic losses in many fish species worldwide. The present work aimed to compare the whole genome sequences of three different serotypes of Lactococcus garvieae isolated from diseased cultured striped jack (Pseudocaranx dentex) in Ehime prefecture, Japan. The three serotypes showed different virulence in the challenge test using Japanese amberjack (Seriola quinqueradiata). The genome sequencing revealed that two of the strains (serotype I and serotype III) were identified as L. garvieae, while the third strain (serotype II) was identified as L. formosensis. The chromosome sizes of the three serotypes ranged from 1.9 to 2.0 Mb; the GC content ranges were 38.2 to 38.9%; and the numbers of predicted protein‐coding sequences (CDSs) were from 1922 to 1959. Only the serotype II harbours two plasmids, sizes of around 14 kb and 9 kb. The detected virulence factors varied among the different serotypes with some shared factors like adherence, anti‐phagocytosis, secretion system, toxin (haemolysin), serum resistance, antimicrobial resistance and others. The genomes also contained factors responsible for resistance to toxic compounds. The genome of the serotype III tended to encode more prophage regions than the other serotypes.

Funder

Science and Technology Research Partnership for Sustainable Development

Publisher

Wiley

Subject

Veterinary (miscellaneous),Aquatic Science

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