Draft genome sequence of Joostella atrarenae M1-2T with cellulolytic and hemicellulolytic ability
The halophilic genus Joostella is one of the least-studied genera in the family of Flavobacteriaceae. So far, only two species were taxonomically identified with limited genomic analysis in the aspect of application has been reported. Joostella atrarenae M1-2T was previously isolated from a seashore...
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my.utm.1048512024-06-30T00:45:38Z http://eprints.utm.my/104851/ Draft genome sequence of Joostella atrarenae M1-2T with cellulolytic and hemicellulolytic ability Liew, Kok Jun Zakaria, Muhammad Ramziuddin Hong, Clarine Wan Ling Tan, Melvin Chun Yun Chong, Chun Shiong QH Natural history The halophilic genus Joostella is one of the least-studied genera in the family of Flavobacteriaceae. So far, only two species were taxonomically identified with limited genomic analysis in the aspect of application has been reported. Joostella atrarenae M1-2T was previously isolated from a seashore sample and it is the second discovered species of the genus Joostella. In this project, the genome of J. atrarenae M1-2T was sequenced using NovaSeq 6000. The final assembled genome is comprised of 71 contigs, a total of 3,983,942 bp, a GC ratio of 33.2%, and encoded for 3,416 genes. The 16S rRNA gene sequence of J. atrarenae M1-2T shows 97.3% similarity against J. marina DSM 19592T. Genome-genome comparison between the two strains by ANI, dDDH, AAI, and POCP shows values of 80.8%, 23.3%, 83.4%, and 74.1% respectively. Pan-genome analysis shows that strain M1-2T and J. marina DSM 19592T shared a total of 248 core genes. Taken together, strain M-2T and J. marina DSM 19592T belong to the same genus but are two different species. CAZymes analysis revealed that strain M1-2T harbors 109 GHs, 40 GTs, 5 PLs, 9 CEs, and 6 AAs. Among these CAZymes, while 5 genes are related to cellulose degradation, 12 and 24 genes are found to encode for xylanolytic enzymes and other hemicellulases that involve majorly in the side chain removal of the lignocellulose structure, respectively. Furthermore, both the intracellular and extracellular crude extracts of strain M1-2T exhibited enzymatic activities against CMC, xylan, pNPG, and pNPX substrates, which corresponding to endoglucanase, xylanase, ß-glucosidase, and ß-xylosidase, respectively. Collectively, description of genome coupled with the enzyme assay results demonstrated that J. atrarenae M1-2T has a role in lignocellulosic biomass degradation, and the strain could be useful for lignocellulosic biorefining. © 2023, King Abdulaziz City for Science and Technology. Springer Science and Business Media Deutschland GmbH 2023 Article PeerReviewed Liew, Kok Jun and Zakaria, Muhammad Ramziuddin and Hong, Clarine Wan Ling and Tan, Melvin Chun Yun and Chong, Chun Shiong (2023) Draft genome sequence of Joostella atrarenae M1-2T with cellulolytic and hemicellulolytic ability. 3 Biotech, 13 (2). pp. 1-12. ISSN 2190-572X http://dx.doi.org/10.1007/s13205-023-03472-8 DOI : 10.1007/s13205-023-03472-8 |
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QH Natural history Liew, Kok Jun Zakaria, Muhammad Ramziuddin Hong, Clarine Wan Ling Tan, Melvin Chun Yun Chong, Chun Shiong Draft genome sequence of Joostella atrarenae M1-2T with cellulolytic and hemicellulolytic ability |
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The halophilic genus Joostella is one of the least-studied genera in the family of Flavobacteriaceae. So far, only two species were taxonomically identified with limited genomic analysis in the aspect of application has been reported. Joostella atrarenae M1-2T was previously isolated from a seashore sample and it is the second discovered species of the genus Joostella. In this project, the genome of J. atrarenae M1-2T was sequenced using NovaSeq 6000. The final assembled genome is comprised of 71 contigs, a total of 3,983,942 bp, a GC ratio of 33.2%, and encoded for 3,416 genes. The 16S rRNA gene sequence of J. atrarenae M1-2T shows 97.3% similarity against J. marina DSM 19592T. Genome-genome comparison between the two strains by ANI, dDDH, AAI, and POCP shows values of 80.8%, 23.3%, 83.4%, and 74.1% respectively. Pan-genome analysis shows that strain M1-2T and J. marina DSM 19592T shared a total of 248 core genes. Taken together, strain M-2T and J. marina DSM 19592T belong to the same genus but are two different species. CAZymes analysis revealed that strain M1-2T harbors 109 GHs, 40 GTs, 5 PLs, 9 CEs, and 6 AAs. Among these CAZymes, while 5 genes are related to cellulose degradation, 12 and 24 genes are found to encode for xylanolytic enzymes and other hemicellulases that involve majorly in the side chain removal of the lignocellulose structure, respectively. Furthermore, both the intracellular and extracellular crude extracts of strain M1-2T exhibited enzymatic activities against CMC, xylan, pNPG, and pNPX substrates, which corresponding to endoglucanase, xylanase, ß-glucosidase, and ß-xylosidase, respectively. Collectively, description of genome coupled with the enzyme assay results demonstrated that J. atrarenae M1-2T has a role in lignocellulosic biomass degradation, and the strain could be useful for lignocellulosic biorefining. © 2023, King Abdulaziz City for Science and Technology. |
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Article |
author |
Liew, Kok Jun Zakaria, Muhammad Ramziuddin Hong, Clarine Wan Ling Tan, Melvin Chun Yun Chong, Chun Shiong |
author_facet |
Liew, Kok Jun Zakaria, Muhammad Ramziuddin Hong, Clarine Wan Ling Tan, Melvin Chun Yun Chong, Chun Shiong |
author_sort |
Liew, Kok Jun |
title |
Draft genome sequence of Joostella atrarenae M1-2T with cellulolytic and hemicellulolytic ability |
title_short |
Draft genome sequence of Joostella atrarenae M1-2T with cellulolytic and hemicellulolytic ability |
title_full |
Draft genome sequence of Joostella atrarenae M1-2T with cellulolytic and hemicellulolytic ability |
title_fullStr |
Draft genome sequence of Joostella atrarenae M1-2T with cellulolytic and hemicellulolytic ability |
title_full_unstemmed |
Draft genome sequence of Joostella atrarenae M1-2T with cellulolytic and hemicellulolytic ability |
title_sort |
draft genome sequence of joostella atrarenae m1-2t with cellulolytic and hemicellulolytic ability |
publisher |
Springer Science and Business Media Deutschland GmbH |
publishDate |
2023 |
url |
http://eprints.utm.my/104851/ http://dx.doi.org/10.1007/s13205-023-03472-8 |
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1803334978126217216 |