Genome-based characterization of the deep-sea psychrotolerant bacterium Bacillus altitudinis SORB11 isolated from the Indian Sector of the Southern Ocean

Life under deep-sea undergoes unusual adaption, especially with darkness, increased pressure, cold, and recalcitrant carbon. Microbes in the deep sea usually evolved through selection and are likely to increase little important natural ability like motility, surface adhesion, and membrane with polyu...

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Published in:Polar Biology
Main Authors: Halder, U, Biswas, R, Shaw, R, Chitikineni, A, Varshney, R K, Bandopadhyay, R
Format: Article in Journal/Newspaper
Language:unknown
Published: Springer Link 2023
Subjects:
Online Access:http://oar.icrisat.org/12696/
https://link.springer.com/article/10.1007/s00300-023-03212-x
https://doi.org/10.1007/s00300-023-03212-x
id fticrisat:oai:icrisat:12696
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spelling fticrisat:oai:icrisat:12696 2024-06-23T07:56:18+00:00 Genome-based characterization of the deep-sea psychrotolerant bacterium Bacillus altitudinis SORB11 isolated from the Indian Sector of the Southern Ocean Halder, U Biswas, R Shaw, R Chitikineni, A Varshney, R K Bandopadhyay, R 2023-12-22 http://oar.icrisat.org/12696/ https://link.springer.com/article/10.1007/s00300-023-03212-x https://doi.org/10.1007/s00300-023-03212-x unknown Springer Link Halder, U and Biswas, R and Shaw, R and Chitikineni, A and Varshney, R K and Bandopadhyay, R (2023) Genome-based characterization of the deep-sea psychrotolerant bacterium Bacillus altitudinis SORB11 isolated from the Indian Sector of the Southern Ocean. Polar Biology, 47. pp. 115-133. ISSN 0722-4060 Genetics and Genomics Article PeerReviewed 2023 fticrisat https://doi.org/10.1007/s00300-023-03212-x 2024-06-11T14:17:22Z Life under deep-sea undergoes unusual adaption, especially with darkness, increased pressure, cold, and recalcitrant carbon. Microbes in the deep sea usually evolved through selection and are likely to increase little important natural ability like motility, surface adhesion, and membrane with polyunsaturated fatty acids. Sporulation within the genus Bacillus may perhaps play an important role for survival in the deep-sea biosphere. Bacillus altitudinis SORB11 was isolated from the dark and cold deep-sea environment of the Southern Ocean. Violet radiation and starvation were primarily investigated and characterized; the bacterial strain is a motile, free-living, bathypelagic, psychrotolerant. Genome of the strain B. altitudinis SORB11 consisting of 3.6 Mb circular chromosome with an average 41.2% GC predictably included Brevibacillus phage genome. The genome harbored a considerable number of foreign genetic materials that would likely to be acquired by the lateral gene transfer. Moreover, the energy metabolic pathway associated genes, potentially involved in methane, sulfur, and nitrogen metabolisms, are essentially present in the genome. Cells of the strain were capable to withstand more than 1800 Jcmˉ2 exposure of UV-B radiation, consequently, the exposed cells were characterized by having thick cell-wall and reduced cell shape and size. UvrA and UvrB proteins from UvrABC repair system were over-expressed in the treated cells. So, detailed investigations on such adaptations might help to understand the origin and evolution of extremophilic organisms. Article in Journal/Newspaper Polar Biology Southern Ocean ICRISAT (International Crops Research Institute for the Semi-Arid Tropics): Open Access Repository Indian Southern Ocean Polar Biology 47 2 115 133
institution Open Polar
collection ICRISAT (International Crops Research Institute for the Semi-Arid Tropics): Open Access Repository
op_collection_id fticrisat
language unknown
topic Genetics and Genomics
spellingShingle Genetics and Genomics
Halder, U
Biswas, R
Shaw, R
Chitikineni, A
Varshney, R K
Bandopadhyay, R
Genome-based characterization of the deep-sea psychrotolerant bacterium Bacillus altitudinis SORB11 isolated from the Indian Sector of the Southern Ocean
topic_facet Genetics and Genomics
description Life under deep-sea undergoes unusual adaption, especially with darkness, increased pressure, cold, and recalcitrant carbon. Microbes in the deep sea usually evolved through selection and are likely to increase little important natural ability like motility, surface adhesion, and membrane with polyunsaturated fatty acids. Sporulation within the genus Bacillus may perhaps play an important role for survival in the deep-sea biosphere. Bacillus altitudinis SORB11 was isolated from the dark and cold deep-sea environment of the Southern Ocean. Violet radiation and starvation were primarily investigated and characterized; the bacterial strain is a motile, free-living, bathypelagic, psychrotolerant. Genome of the strain B. altitudinis SORB11 consisting of 3.6 Mb circular chromosome with an average 41.2% GC predictably included Brevibacillus phage genome. The genome harbored a considerable number of foreign genetic materials that would likely to be acquired by the lateral gene transfer. Moreover, the energy metabolic pathway associated genes, potentially involved in methane, sulfur, and nitrogen metabolisms, are essentially present in the genome. Cells of the strain were capable to withstand more than 1800 Jcmˉ2 exposure of UV-B radiation, consequently, the exposed cells were characterized by having thick cell-wall and reduced cell shape and size. UvrA and UvrB proteins from UvrABC repair system were over-expressed in the treated cells. So, detailed investigations on such adaptations might help to understand the origin and evolution of extremophilic organisms.
format Article in Journal/Newspaper
author Halder, U
Biswas, R
Shaw, R
Chitikineni, A
Varshney, R K
Bandopadhyay, R
author_facet Halder, U
Biswas, R
Shaw, R
Chitikineni, A
Varshney, R K
Bandopadhyay, R
author_sort Halder, U
title Genome-based characterization of the deep-sea psychrotolerant bacterium Bacillus altitudinis SORB11 isolated from the Indian Sector of the Southern Ocean
title_short Genome-based characterization of the deep-sea psychrotolerant bacterium Bacillus altitudinis SORB11 isolated from the Indian Sector of the Southern Ocean
title_full Genome-based characterization of the deep-sea psychrotolerant bacterium Bacillus altitudinis SORB11 isolated from the Indian Sector of the Southern Ocean
title_fullStr Genome-based characterization of the deep-sea psychrotolerant bacterium Bacillus altitudinis SORB11 isolated from the Indian Sector of the Southern Ocean
title_full_unstemmed Genome-based characterization of the deep-sea psychrotolerant bacterium Bacillus altitudinis SORB11 isolated from the Indian Sector of the Southern Ocean
title_sort genome-based characterization of the deep-sea psychrotolerant bacterium bacillus altitudinis sorb11 isolated from the indian sector of the southern ocean
publisher Springer Link
publishDate 2023
url http://oar.icrisat.org/12696/
https://link.springer.com/article/10.1007/s00300-023-03212-x
https://doi.org/10.1007/s00300-023-03212-x
geographic Indian
Southern Ocean
geographic_facet Indian
Southern Ocean
genre Polar Biology
Southern Ocean
genre_facet Polar Biology
Southern Ocean
op_relation Halder, U and Biswas, R and Shaw, R and Chitikineni, A and Varshney, R K and Bandopadhyay, R (2023) Genome-based characterization of the deep-sea psychrotolerant bacterium Bacillus altitudinis SORB11 isolated from the Indian Sector of the Southern Ocean. Polar Biology, 47. pp. 115-133. ISSN 0722-4060
op_doi https://doi.org/10.1007/s00300-023-03212-x
container_title Polar Biology
container_volume 47
container_issue 2
container_start_page 115
op_container_end_page 133
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