Genome sequences of two cold-adaptedCryobacterium spp. SO1 and SO2 from FildesPeninsula, Antarctica
Psychrophilic and psychrotrophic bacteria play important roles in nutrient cycling in cold environments. These bacteria are suitable as model organisms for studying cold-adaptation, and sources of cold-active enzymes and metabolites for industrial applications. Here, we report the genome sequences o...
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my.ums.eprints.252292021-04-19T02:45:18Z https://eprints.ums.edu.my/id/eprint/25229/ Genome sequences of two cold-adaptedCryobacterium spp. SO1 and SO2 from FildesPeninsula, Antarctica C. P. Teoh Clemente Michael Vui Ling Wong D. J. H. Lee M. A. González N. Najimudin P. C. Lee Y. K. Cheah Q Science (General) QH Natural history Psychrophilic and psychrotrophic bacteria play important roles in nutrient cycling in cold environments. These bacteria are suitable as model organisms for studying cold-adaptation, and sources of cold-active enzymes and metabolites for industrial applications. Here, we report the genome sequences of two Cryobacterium sp. strains SO1 and SO2. Genes coding major proteins related to cold- or thermal-stress adaptations and those with industrial applications found in their genomes are described. 2018-11 Article PeerReviewed text en https://eprints.ums.edu.my/id/eprint/25229/1/Genome%20sequences%20of%20two%20cold-adapted%20Cryobacterium%20spp.%20SO1%20and%20SO2%20from%20Fildes%20Peninsula%2C%20Antarctica.pdf text en https://eprints.ums.edu.my/id/eprint/25229/7/Genome%20sequences%20of%20two%20cold-adapted%20Cryobacterium%20spp.%20SO1%20and%20SO2%20from%20Fildes%20Peninsula%2C%20Antarctica.1pdf.pdf C. P. Teoh and Clemente Michael Vui Ling Wong and D. J. H. Lee and M. A. González and N. Najimudin and P. C. Lee and Y. K. Cheah (2018) Genome sequences of two cold-adaptedCryobacterium spp. SO1 and SO2 from FildesPeninsula, Antarctica. CURRENT SCIENCE, 115 (9). pp. 1706-1708. |
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Q Science (General) QH Natural history C. P. Teoh Clemente Michael Vui Ling Wong D. J. H. Lee M. A. González N. Najimudin P. C. Lee Y. K. Cheah Genome sequences of two cold-adaptedCryobacterium spp. SO1 and SO2 from FildesPeninsula, Antarctica |
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Psychrophilic and psychrotrophic bacteria play important roles in nutrient cycling in cold environments. These bacteria are suitable as model organisms for studying cold-adaptation, and sources of cold-active enzymes and metabolites for industrial applications. Here, we report the genome sequences of two Cryobacterium sp. strains SO1 and SO2. Genes coding major proteins related to cold- or thermal-stress adaptations and those with industrial applications found in their genomes are described. |
format |
Article |
author |
C. P. Teoh Clemente Michael Vui Ling Wong D. J. H. Lee M. A. González N. Najimudin P. C. Lee Y. K. Cheah |
author_facet |
C. P. Teoh Clemente Michael Vui Ling Wong D. J. H. Lee M. A. González N. Najimudin P. C. Lee Y. K. Cheah |
author_sort |
C. P. Teoh |
title |
Genome sequences of two cold-adaptedCryobacterium spp. SO1 and SO2 from FildesPeninsula, Antarctica |
title_short |
Genome sequences of two cold-adaptedCryobacterium spp. SO1 and SO2 from FildesPeninsula, Antarctica |
title_full |
Genome sequences of two cold-adaptedCryobacterium spp. SO1 and SO2 from FildesPeninsula, Antarctica |
title_fullStr |
Genome sequences of two cold-adaptedCryobacterium spp. SO1 and SO2 from FildesPeninsula, Antarctica |
title_full_unstemmed |
Genome sequences of two cold-adaptedCryobacterium spp. SO1 and SO2 from FildesPeninsula, Antarctica |
title_sort |
genome sequences of two cold-adaptedcryobacterium spp. so1 and so2 from fildespeninsula, antarctica |
publishDate |
2018 |
url |
https://eprints.ums.edu.my/id/eprint/25229/1/Genome%20sequences%20of%20two%20cold-adapted%20Cryobacterium%20spp.%20SO1%20and%20SO2%20from%20Fildes%20Peninsula%2C%20Antarctica.pdf https://eprints.ums.edu.my/id/eprint/25229/7/Genome%20sequences%20of%20two%20cold-adapted%20Cryobacterium%20spp.%20SO1%20and%20SO2%20from%20Fildes%20Peninsula%2C%20Antarctica.1pdf.pdf https://eprints.ums.edu.my/id/eprint/25229/ |
_version_ |
1760230341259296768 |