Cargando…
Identification and genomic analysis of temperate Halomonas bacteriophage vB_HmeY_H4907 from the surface sediment of the Mariana Trench at a depth of 8,900 m
Viruses play crucial roles in the ecosystem by modulating the host community structure, mediating biogeochemical cycles, and compensating for the metabolism of host cells. Mariana Trench, the world’s deepest hadal habitat, harbors a variety of unique microorganisms that have adapted to its extreme c...
Autores principales: | , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Society for Microbiology
2023
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10580944/ https://www.ncbi.nlm.nih.gov/pubmed/37728551 http://dx.doi.org/10.1128/spectrum.01912-23 |
_version_ | 1785122045136207872 |
---|---|
author | Su, Yue Zhang, Wenjing Liang, Yantao Wang, Hongmin Liu, Yundan Zheng, Kaiyang Liu, Ziqi Yu, Hao Ren, Linyi Shao, Hongbing Sung, Yeong Yik Mok, Wen Jye Wong, Li Lian Zhang, Yu-Zhong McMinn, Andrew Wang, Min |
author_facet | Su, Yue Zhang, Wenjing Liang, Yantao Wang, Hongmin Liu, Yundan Zheng, Kaiyang Liu, Ziqi Yu, Hao Ren, Linyi Shao, Hongbing Sung, Yeong Yik Mok, Wen Jye Wong, Li Lian Zhang, Yu-Zhong McMinn, Andrew Wang, Min |
author_sort | Su, Yue |
collection | PubMed |
description | Viruses play crucial roles in the ecosystem by modulating the host community structure, mediating biogeochemical cycles, and compensating for the metabolism of host cells. Mariana Trench, the world’s deepest hadal habitat, harbors a variety of unique microorganisms that have adapted to its extreme conditions of low temperatures, high pressure, and nutrient scarcity. However, our knowledge about isolated hadal phage strains in the hadal trench is still limited. This study reported the discovery of a temperate phage, vB_HmeY_H4907, infecting Halomonas meridiana H4907, isolated from surface sediment from the Mariana Trench at a depth of 8,900 m. To our best knowledge, it is the deepest isolated siphovirus from the ocean. Its 40,452 bp linear dsDNA genome has 57.64% GC content and 55 open reading frames, and it is highly homologous to its host. Phylogenetic analysis and average nucleotide sequence identification reveal that vB_HmeY_H4907 is separated from the isolated phages and represents a new family, Suviridae, with eight predicted proviruses and six uncultured viral genomes. They are widely distributed in the ocean, suggesting a prevalence of this viral family in the deep sea. These findings expand our understanding of the phylogenetic diversity and genomic features of hadal lysogenic phages, provide essential information for further studies of phage-host interactions and evolution, and may reveal new insights into the lysogenic lifestyles of viruses inhabiting the hadal ocean. IMPORTANCE: Halomonas phage vB_HmeY_H4907 is the deepest isolated siphovirus from the ocean, and it represents a novel abundant viral family in the ocean. This study provides insights into the genomic, phylogenetic, and ecological characteristics of the new viral family, namely, Suviridae. |
format | Online Article Text |
id | pubmed-10580944 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | American Society for Microbiology |
record_format | MEDLINE/PubMed |
spelling | pubmed-105809442023-10-18 Identification and genomic analysis of temperate Halomonas bacteriophage vB_HmeY_H4907 from the surface sediment of the Mariana Trench at a depth of 8,900 m Su, Yue Zhang, Wenjing Liang, Yantao Wang, Hongmin Liu, Yundan Zheng, Kaiyang Liu, Ziqi Yu, Hao Ren, Linyi Shao, Hongbing Sung, Yeong Yik Mok, Wen Jye Wong, Li Lian Zhang, Yu-Zhong McMinn, Andrew Wang, Min Microbiol Spectr Research Article Viruses play crucial roles in the ecosystem by modulating the host community structure, mediating biogeochemical cycles, and compensating for the metabolism of host cells. Mariana Trench, the world’s deepest hadal habitat, harbors a variety of unique microorganisms that have adapted to its extreme conditions of low temperatures, high pressure, and nutrient scarcity. However, our knowledge about isolated hadal phage strains in the hadal trench is still limited. This study reported the discovery of a temperate phage, vB_HmeY_H4907, infecting Halomonas meridiana H4907, isolated from surface sediment from the Mariana Trench at a depth of 8,900 m. To our best knowledge, it is the deepest isolated siphovirus from the ocean. Its 40,452 bp linear dsDNA genome has 57.64% GC content and 55 open reading frames, and it is highly homologous to its host. Phylogenetic analysis and average nucleotide sequence identification reveal that vB_HmeY_H4907 is separated from the isolated phages and represents a new family, Suviridae, with eight predicted proviruses and six uncultured viral genomes. They are widely distributed in the ocean, suggesting a prevalence of this viral family in the deep sea. These findings expand our understanding of the phylogenetic diversity and genomic features of hadal lysogenic phages, provide essential information for further studies of phage-host interactions and evolution, and may reveal new insights into the lysogenic lifestyles of viruses inhabiting the hadal ocean. IMPORTANCE: Halomonas phage vB_HmeY_H4907 is the deepest isolated siphovirus from the ocean, and it represents a novel abundant viral family in the ocean. This study provides insights into the genomic, phylogenetic, and ecological characteristics of the new viral family, namely, Suviridae. American Society for Microbiology 2023-09-20 /pmc/articles/PMC10580944/ /pubmed/37728551 http://dx.doi.org/10.1128/spectrum.01912-23 Text en Copyright © 2023 Su et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) . |
spellingShingle | Research Article Su, Yue Zhang, Wenjing Liang, Yantao Wang, Hongmin Liu, Yundan Zheng, Kaiyang Liu, Ziqi Yu, Hao Ren, Linyi Shao, Hongbing Sung, Yeong Yik Mok, Wen Jye Wong, Li Lian Zhang, Yu-Zhong McMinn, Andrew Wang, Min Identification and genomic analysis of temperate Halomonas bacteriophage vB_HmeY_H4907 from the surface sediment of the Mariana Trench at a depth of 8,900 m |
title | Identification and genomic analysis of temperate Halomonas bacteriophage vB_HmeY_H4907 from the surface sediment of the Mariana Trench at a depth of 8,900 m |
title_full | Identification and genomic analysis of temperate Halomonas bacteriophage vB_HmeY_H4907 from the surface sediment of the Mariana Trench at a depth of 8,900 m |
title_fullStr | Identification and genomic analysis of temperate Halomonas bacteriophage vB_HmeY_H4907 from the surface sediment of the Mariana Trench at a depth of 8,900 m |
title_full_unstemmed | Identification and genomic analysis of temperate Halomonas bacteriophage vB_HmeY_H4907 from the surface sediment of the Mariana Trench at a depth of 8,900 m |
title_short | Identification and genomic analysis of temperate Halomonas bacteriophage vB_HmeY_H4907 from the surface sediment of the Mariana Trench at a depth of 8,900 m |
title_sort | identification and genomic analysis of temperate halomonas bacteriophage vb_hmey_h4907 from the surface sediment of the mariana trench at a depth of 8,900 m |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10580944/ https://www.ncbi.nlm.nih.gov/pubmed/37728551 http://dx.doi.org/10.1128/spectrum.01912-23 |
work_keys_str_mv | AT suyue identificationandgenomicanalysisoftemperatehalomonasbacteriophagevbhmeyh4907fromthesurfacesedimentofthemarianatrenchatadepthof8900m AT zhangwenjing identificationandgenomicanalysisoftemperatehalomonasbacteriophagevbhmeyh4907fromthesurfacesedimentofthemarianatrenchatadepthof8900m AT liangyantao identificationandgenomicanalysisoftemperatehalomonasbacteriophagevbhmeyh4907fromthesurfacesedimentofthemarianatrenchatadepthof8900m AT wanghongmin identificationandgenomicanalysisoftemperatehalomonasbacteriophagevbhmeyh4907fromthesurfacesedimentofthemarianatrenchatadepthof8900m AT liuyundan identificationandgenomicanalysisoftemperatehalomonasbacteriophagevbhmeyh4907fromthesurfacesedimentofthemarianatrenchatadepthof8900m AT zhengkaiyang identificationandgenomicanalysisoftemperatehalomonasbacteriophagevbhmeyh4907fromthesurfacesedimentofthemarianatrenchatadepthof8900m AT liuziqi identificationandgenomicanalysisoftemperatehalomonasbacteriophagevbhmeyh4907fromthesurfacesedimentofthemarianatrenchatadepthof8900m AT yuhao identificationandgenomicanalysisoftemperatehalomonasbacteriophagevbhmeyh4907fromthesurfacesedimentofthemarianatrenchatadepthof8900m AT renlinyi identificationandgenomicanalysisoftemperatehalomonasbacteriophagevbhmeyh4907fromthesurfacesedimentofthemarianatrenchatadepthof8900m AT shaohongbing identificationandgenomicanalysisoftemperatehalomonasbacteriophagevbhmeyh4907fromthesurfacesedimentofthemarianatrenchatadepthof8900m AT sungyeongyik identificationandgenomicanalysisoftemperatehalomonasbacteriophagevbhmeyh4907fromthesurfacesedimentofthemarianatrenchatadepthof8900m AT mokwenjye identificationandgenomicanalysisoftemperatehalomonasbacteriophagevbhmeyh4907fromthesurfacesedimentofthemarianatrenchatadepthof8900m AT wonglilian identificationandgenomicanalysisoftemperatehalomonasbacteriophagevbhmeyh4907fromthesurfacesedimentofthemarianatrenchatadepthof8900m AT zhangyuzhong identificationandgenomicanalysisoftemperatehalomonasbacteriophagevbhmeyh4907fromthesurfacesedimentofthemarianatrenchatadepthof8900m AT mcminnandrew identificationandgenomicanalysisoftemperatehalomonasbacteriophagevbhmeyh4907fromthesurfacesedimentofthemarianatrenchatadepthof8900m AT wangmin identificationandgenomicanalysisoftemperatehalomonasbacteriophagevbhmeyh4907fromthesurfacesedimentofthemarianatrenchatadepthof8900m |