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Complete genome sequence of the halophile bacterium Kushneria konosiri X49T, isolated from salt-fermented Konosirus punctatus
by
Ji-Hyun, Yun
, June-Young, Lee
, Sung, Hojun
, Dong-Wook Hyun
, Euon Jung Tak
, Kim, Pil Soo
, Jin-Woo, Bae
, Kang, Woorim
, Kim, Hyun Sik
in
Bacteria
/ Bacteriology
/ Biotechnology
/ Classification
/ Cytoplasm
/ E coli
/ Fermented food
/ Fish
/ Genomes
/ Nucleotide sequence
/ Phylogenetics
/ Salts
/ Seafood
2018
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Complete genome sequence of the halophile bacterium Kushneria konosiri X49T, isolated from salt-fermented Konosirus punctatus
by
Ji-Hyun, Yun
, June-Young, Lee
, Sung, Hojun
, Dong-Wook Hyun
, Euon Jung Tak
, Kim, Pil Soo
, Jin-Woo, Bae
, Kang, Woorim
, Kim, Hyun Sik
in
Bacteria
/ Bacteriology
/ Biotechnology
/ Classification
/ Cytoplasm
/ E coli
/ Fermented food
/ Fish
/ Genomes
/ Nucleotide sequence
/ Phylogenetics
/ Salts
/ Seafood
2018
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Complete genome sequence of the halophile bacterium Kushneria konosiri X49T, isolated from salt-fermented Konosirus punctatus
by
Ji-Hyun, Yun
, June-Young, Lee
, Sung, Hojun
, Dong-Wook Hyun
, Euon Jung Tak
, Kim, Pil Soo
, Jin-Woo, Bae
, Kang, Woorim
, Kim, Hyun Sik
in
Bacteria
/ Bacteriology
/ Biotechnology
/ Classification
/ Cytoplasm
/ E coli
/ Fermented food
/ Fish
/ Genomes
/ Nucleotide sequence
/ Phylogenetics
/ Salts
/ Seafood
2018
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Complete genome sequence of the halophile bacterium Kushneria konosiri X49T, isolated from salt-fermented Konosirus punctatus
Journal Article
Complete genome sequence of the halophile bacterium Kushneria konosiri X49T, isolated from salt-fermented Konosirus punctatus
2018
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Overview
Kushneria konosiri X49T is a member of the Halomonadaceae family within the order Oceanospirillales and can be isolated from salt-fermented larval gizzard shad. The genome of K. konosiri X49T reported here provides a genetic basis for its halophilic character. Diverse genes were involved in salt-in and -out strategies enabling adaptation of X49T to hypersaline environments. Due to resistance to high salt concentrations, genome research of K. konosiri X49T will contribute to the improvement of environmental and biotechnological usage by enhancing understanding of the osmotic equilibrium in the cytoplasm. Its genome consists of 3,584,631 bp, with an average G + C content of 59.1%, and 3261 coding sequences, 12 rRNAs, 66 tRNAs, and 8 miscRNAs.
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