Draft genome sequence of the halophilic Halobacillus mangrovi KTB 131 isolated from Topan salt of the Jeon-nam in Korea

The draft genome sequence of the halophilic bacterium Halobacillus mangrovi KTB 131, isolated from Topan salt of the Jeon-nam in Korea, was established. The genome comprises 4,151,649 bp, with a G + C content of 41.6%. The strain displays a high number of genes responsible for secondary metabolite b...

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Main Authors: Mingyeong Woo, Sun-Hee Park, Kyounghee Park, Min-Kyu Park, Ji-Yeon Kim, Han-Seung Lee, Jae Hak Sohn, Dong-Woo Lee, Gaewon Nam, Kee-Sun Shin, Sang-Jae Lee
Format: Article
Language:English
Published: Elsevier 2017-12-01
Series:Genomics Data
Online Access:http://www.sciencedirect.com/science/article/pii/S2213596017300934
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author Mingyeong Woo
Sun-Hee Park
Kyounghee Park
Min-Kyu Park
Ji-Yeon Kim
Han-Seung Lee
Jae Hak Sohn
Dong-Woo Lee
Gaewon Nam
Kee-Sun Shin
Sang-Jae Lee
author_facet Mingyeong Woo
Sun-Hee Park
Kyounghee Park
Min-Kyu Park
Ji-Yeon Kim
Han-Seung Lee
Jae Hak Sohn
Dong-Woo Lee
Gaewon Nam
Kee-Sun Shin
Sang-Jae Lee
author_sort Mingyeong Woo
collection DOAJ
description The draft genome sequence of the halophilic bacterium Halobacillus mangrovi KTB 131, isolated from Topan salt of the Jeon-nam in Korea, was established. The genome comprises 4,151,649 bp, with a G + C content of 41.6%. The strain displays a high number of genes responsible for secondary metabolite biosynthesis, transport, and catabolism compared to other Halobacillus bacterial genus members. Numerous genes responsible for various transport systems, solute accumulation, and aromatic/sulfur decomposition were detected. The first genomic analysis encourages further research on comparative genomics and potential biotechnological applications. The whole draft genome sequence of Halobacillus mangrovi KTB 131 is now available (Bioproject PRJNA380285).
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spelling doaj.art-f6a885fb40224c12bc855ad9732214242022-12-21T22:48:46ZengElsevierGenomics Data2213-59602017-12-0114C182010.1016/j.gdata.2017.07.010Draft genome sequence of the halophilic Halobacillus mangrovi KTB 131 isolated from Topan salt of the Jeon-nam in KoreaMingyeong Woo0Sun-Hee Park1Kyounghee Park2Min-Kyu Park3Ji-Yeon Kim4Han-Seung Lee5Jae Hak Sohn6Dong-Woo Lee7Gaewon Nam8Kee-Sun Shin9Sang-Jae Lee10Major in Food Biotechnology and The Research Center for Extremophiles & Marine Microbiology, Silla University, Busan 46958, South KoreaMajor in Food Biotechnology and The Research Center for Extremophiles & Marine Microbiology, Silla University, Busan 46958, South KoreaMajor in Food Biotechnology and The Research Center for Extremophiles & Marine Microbiology, Silla University, Busan 46958, South KoreaSchool of Applied Bioscience, Kyungpook National University, Daegu 41566, South KoreaSchool of Applied Bioscience, Kyungpook National University, Daegu 41566, South KoreaMajor in Food Biotechnology and The Research Center for Extremophiles & Marine Microbiology, Silla University, Busan 46958, South KoreaMajor in Food Biotechnology and The Research Center for Extremophiles & Marine Microbiology, Silla University, Busan 46958, South KoreaSchool of Applied Bioscience, Kyungpook National University, Daegu 41566, South KoreaDepartment of Bio-cosmetic Science, Seowon University, Cheongju 28674, South KoreaIndustrial Bio-materials Research Center, Korea Research Institute of Bioscience and Biotechnology (KRIBB), Daejeon 34141, South KoreaMajor in Food Biotechnology and The Research Center for Extremophiles & Marine Microbiology, Silla University, Busan 46958, South KoreaThe draft genome sequence of the halophilic bacterium Halobacillus mangrovi KTB 131, isolated from Topan salt of the Jeon-nam in Korea, was established. The genome comprises 4,151,649 bp, with a G + C content of 41.6%. The strain displays a high number of genes responsible for secondary metabolite biosynthesis, transport, and catabolism compared to other Halobacillus bacterial genus members. Numerous genes responsible for various transport systems, solute accumulation, and aromatic/sulfur decomposition were detected. The first genomic analysis encourages further research on comparative genomics and potential biotechnological applications. The whole draft genome sequence of Halobacillus mangrovi KTB 131 is now available (Bioproject PRJNA380285).http://www.sciencedirect.com/science/article/pii/S2213596017300934
spellingShingle Mingyeong Woo
Sun-Hee Park
Kyounghee Park
Min-Kyu Park
Ji-Yeon Kim
Han-Seung Lee
Jae Hak Sohn
Dong-Woo Lee
Gaewon Nam
Kee-Sun Shin
Sang-Jae Lee
Draft genome sequence of the halophilic Halobacillus mangrovi KTB 131 isolated from Topan salt of the Jeon-nam in Korea
Genomics Data
title Draft genome sequence of the halophilic Halobacillus mangrovi KTB 131 isolated from Topan salt of the Jeon-nam in Korea
title_full Draft genome sequence of the halophilic Halobacillus mangrovi KTB 131 isolated from Topan salt of the Jeon-nam in Korea
title_fullStr Draft genome sequence of the halophilic Halobacillus mangrovi KTB 131 isolated from Topan salt of the Jeon-nam in Korea
title_full_unstemmed Draft genome sequence of the halophilic Halobacillus mangrovi KTB 131 isolated from Topan salt of the Jeon-nam in Korea
title_short Draft genome sequence of the halophilic Halobacillus mangrovi KTB 131 isolated from Topan salt of the Jeon-nam in Korea
title_sort draft genome sequence of the halophilic halobacillus mangrovi ktb 131 isolated from topan salt of the jeon nam in korea
url http://www.sciencedirect.com/science/article/pii/S2213596017300934
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