Complete genome sequence and comparative genome analysis of Streptococcus parauberis KCTC11980

Streptococcus parauberis is recognized as an alpha-hemolytic gram-positive bacterial pathogen associated with bovine udder mastitis. Recently, S. parauberis was identified as the major pathogen of olive flounder (Paralichthys olivaceus) streptococcosis in Northeast Asia, a disease that causes severe...

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Published inGenes & genomics Vol. 37; no. 11; pp. 959 - 968
Main Authors Seo, J.S., National Fisheries Research and Development Institute (NFRDI), Busan, Republic of Korea, Kwon, M.G., National Fisheries Research and Development Institute (NFRDI), Busan, Republic of Korea, Hwang, J.Y., National Fisheries Research and Development Institute (NFRDI), Busan, Republic of Korea, Jung, S.H., National Fisheries Research and Development Institute (NFRDI), Busan, Republic of Korea, Han, H.J., National Fisheries Research and Development Institute (NFRDI), Busan, Republic of Korea, Kim, M.S., National Fisheries Research and Development Institute (NFRDI), Busan, Republic of Korea, Do, J.W., National Fisheries Research and Development Institute (NFRDI), Busan, Republic of Korea, Park, M.A., NFRDI, Busan, Republic of Korea, Kim, D.W., Mokweon University, Daejeon, Republic of Korea, Cho, W.S., Mokweon University, Daejeon, Republic of Korea, Lee, K., Konkuk University, Seoul, Republic of Korea
Format Journal Article
LanguageEnglish
Published Seoul The Genetics Society of Korea 01.11.2015
한국유전학회
Subjects
Online AccessGet full text
ISSN1976-9571
2092-9293
DOI10.1007/s13258-015-0325-y

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Abstract Streptococcus parauberis is recognized as an alpha-hemolytic gram-positive bacterial pathogen associated with bovine udder mastitis. Recently, S. parauberis was identified as the major pathogen of olive flounder (Paralichthys olivaceus) streptococcosis in Northeast Asia, a disease that causes severe economic losses by triggering massive olive flounder mortality. In this study, the complete genome sequence of S. parauberis KCTC11980 was determined and analyzed. S. parauberis KCTC11980 harbors a single chromosome of 2,179,251 bp containing 2281 predicted coding sequences and featuring an average G?C content of 35.65 %. Dot-plot analysis of the entire genomic sequence and phylogenetic analysis of the 16S rRNA gene revealed a close evolutionary relationship between S. parauberis KCTC11980 and S. uberis. Our findings could serve as a basis for understanding the pathogen-host relationship and developing new prophylactic and therapeutic strategies against fish streptococcosis. This study also enhances our understanding of the physiology and evolution of a key representative of the Streptococcaceae family.
AbstractList Streptococcus parauberis is recognized as an alpha-hemolytic gram-positive bacterial pathogen associated with bovine udder mastitis. Recently, S. parauberis was identified as the major pathogen of olive flounder (Paralichthys olivaceus) streptococcosis in Northeast Asia, a disease that causes severe economic losses by triggering massive olive flounder mortality. In this study, the complete genome sequence of S. parauberis KCTC11980 was determined and analyzed. S. parauberis KCTC11980 harbors a single chromosome of 2,179,251 bp containing 2281 predicted coding sequences and featuring an average G+C content of 35.65 %. Dot-plot analysis of the entire genomic sequence and phylogenetic analysis of the 16S rRNA gene revealed a close evolutionary relationship between S. parauberis KCTC11980 and S. uberis. Our findings could serve as a basis for understanding the pathogen-host relationship and developing new prophylactic and therapeutic strategies against fish streptococcosis. This study also enhances our understanding of the physiology and evolution of a key representative of the Streptococcaceae family.
Streptococcus parauberis is recognized as an alpha-hemolytic gram-positive bacterial pathogen associated with bovine udder mastitis. Recently, S. parauberis was identified as the major pathogen of olive flounder (Paralichthys olivaceus) streptococcosis in Northeast Asia, a disease that causes severe economic losses by triggering massive olive flounder mortality. In this study, the complete genome sequence of S. parauberis KCTC11980 was determined and analyzed. S. parauberis KCTC11980 harbors a single chromosome of 2,179,251 bp containing 2281 predicted coding sequences and featuring an average G?C content of 35.65 %. Dot-plot analysis of the entire genomic sequence and phylogenetic analysis of the 16S rRNA gene revealed a close evolutionary relationship between S. parauberis KCTC11980 and S. uberis. Our findings could serve as a basis for understanding the pathogen-host relationship and developing new prophylactic and therapeutic strategies against fish streptococcosis. This study also enhances our understanding of the physiology and evolution of a key representative of the Streptococcaceae family. KCI Citation Count: 0
Streptococcus parauberis is recognized as an alpha-hemolytic gram-positive bacterial pathogen associated with bovine udder mastitis. Recently, S. parauberis was identified as the major pathogen of olive flounder (Paraiichthys olivaceus) streptococcosis in Northeast Asia, a disease that causes severe economic losses by triggering massive olive flounder mortality. In this study, the complete genome sequence of S. parauberis KCTC11980 was determined and analyzed. S. parauberis KCTC11980 harbors a single chromosome of 2,179,251 bp containing 2281 predicted coding sequences and featuring an average G+C content of 35.65 %. Dot-plot analysis of the entire genomic sequence and phylogenetic analysis of the 16S rRNA gene revealed a close evolutionary relationship between S. parauberis KCTC11980 and S. uberis. Our findings could serve as a basis for understanding the pathogen-host relationship and developing new prophylactic and therapeutic strategies against fish streptococcosis. This study also enhances our understanding of the physiology and evolution of a key representative of the Streptococcaceae family.
Streptococcus parauberis is recognized as an alpha-hemolytic gram-positive bacterial pathogen associated with bovine udder mastitis. Recently, S. parauberis was identified as the major pathogen of olive flounder (Paralichthys olivaceus) streptococcosis in Northeast Asia, a disease that causes severe economic losses by triggering massive olive flounder mortality. In this study, the complete genome sequence of S. parauberis KCTC11980 was determined and analyzed. S. parauberis KCTC11980 harbors a single chromosome of 2,179,251 bp containing 2281 predicted coding sequences and featuring an average G+C content of 35.65 %. Dot-plot analysis of the entire genomic sequence and phylogenetic analysis of the 16S rRNA gene revealed a close evolutionary relationship between S. parauberis KCTC11980 and S. uberis. Our findings could serve as a basis for understanding the pathogen-host relationship and developing new prophylactic and therapeutic strategies against fish streptococcosis. This study also enhances our understanding of the physiology and evolution of a key representative of the Streptococcaceae family.
Streptococcus parauberis is recognized as an alpha-hemolytic gram-positive bacterial pathogen associated with bovine udder mastitis. Recently, S. parauberis was identified as the major pathogen of olive flounder ( Paralichthys olivaceus ) streptococcosis in Northeast Asia, a disease that causes severe economic losses by triggering massive olive flounder mortality. In this study, the complete genome sequence of S. parauberis KCTC11980 was determined and analyzed. S. parauberis KCTC11980 harbors a single chromosome of 2,179,251 bp containing 2281 predicted coding sequences and featuring an average G+C content of 35.65 %. Dot-plot analysis of the entire genomic sequence and phylogenetic analysis of the 16S rRNA gene revealed a close evolutionary relationship between S. parauberis KCTC11980 and S. uberis . Our findings could serve as a basis for understanding the pathogen-host relationship and developing new prophylactic and therapeutic strategies against fish streptococcosis. This study also enhances our understanding of the physiology and evolution of a key representative of the Streptococcaceae family.
Author Han, H.J., National Fisheries Research and Development Institute (NFRDI), Busan, Republic of Korea
Kwon, M.G., National Fisheries Research and Development Institute (NFRDI), Busan, Republic of Korea
Kim, D.W., Mokweon University, Daejeon, Republic of Korea
Jung, S.H., National Fisheries Research and Development Institute (NFRDI), Busan, Republic of Korea
Hwang, J.Y., National Fisheries Research and Development Institute (NFRDI), Busan, Republic of Korea
Seo, J.S., National Fisheries Research and Development Institute (NFRDI), Busan, Republic of Korea
Kim, M.S., National Fisheries Research and Development Institute (NFRDI), Busan, Republic of Korea
Do, J.W., National Fisheries Research and Development Institute (NFRDI), Busan, Republic of Korea
Cho, W.S., Mokweon University, Daejeon, Republic of Korea
Park, M.A., NFRDI, Busan, Republic of Korea
Lee, K., Konkuk University, Seoul, Republic of Korea
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Snippet Streptococcus parauberis is recognized as an alpha-hemolytic gram-positive bacterial pathogen associated with bovine udder mastitis. Recently, S. parauberis...
Streptococcus parauberis is recognized as an alpha-hemolytic gram-positive bacterial pathogen associated with bovine udder mastitis. Recently, S. parauberis...
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SubjectTerms Animal Genetics and Genomics
Biomedical and Life Sciences
cattle
chromosomes
flounder
genes
GENOMAS
GENOME
GENOMES
host-pathogen relationships
Human Genetics
Life Sciences
mastitis
Microbial Genetics and Genomics
mortality
nucleotide sequences
Paralichthys olivaceus
pathogens
phylogeny
physiology
Plant Genetics and Genomics
Pleuronectiformes
Research Article
ribosomal RNA
sequence analysis
Streptococcaceae
Streptococcus parauberis
Streptococcus parauberis,Genome sequence,Fish pathogen,Olive flounder,Paralichthys olivaceus,16S rRNA
udders
생물학
Title Complete genome sequence and comparative genome analysis of Streptococcus parauberis KCTC11980
URI https://link.springer.com/article/10.1007/s13258-015-0325-y
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Volume 37
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