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Characterization and genomic analysis of phage vB_ValR_NF, representing a new viral family prevalent in the Ulva prolifera blooms

INTRODUCTION: Vibrio is an important bacterial genus containing many pathogenic species. Although more and more Vibrio phages were isolated, the genome, ecology and evolution of Vibrio phages and their roles in bacteriophage therapy, have not been fully revealed. METHODS: Novel Vibrio phage vB_ValR_...

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Autores principales: Zhang, Xinran, Liang, Yantao, Zheng, Kaiyang, Wang, Ziyue, Dong, Yue, Liu, Yundan, Ren, Linyi, Wang, Hongmin, Han, Ying, McMinn, Andrew, Sung, Yeong Yik, Mok, Wen Jye, Wong, Li Lian, He, Jianfeng, Wang, Min
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10196503/
https://www.ncbi.nlm.nih.gov/pubmed/37213492
http://dx.doi.org/10.3389/fmicb.2023.1161265
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author Zhang, Xinran
Liang, Yantao
Zheng, Kaiyang
Wang, Ziyue
Dong, Yue
Liu, Yundan
Ren, Linyi
Wang, Hongmin
Han, Ying
McMinn, Andrew
Sung, Yeong Yik
Mok, Wen Jye
Wong, Li Lian
He, Jianfeng
Wang, Min
author_facet Zhang, Xinran
Liang, Yantao
Zheng, Kaiyang
Wang, Ziyue
Dong, Yue
Liu, Yundan
Ren, Linyi
Wang, Hongmin
Han, Ying
McMinn, Andrew
Sung, Yeong Yik
Mok, Wen Jye
Wong, Li Lian
He, Jianfeng
Wang, Min
author_sort Zhang, Xinran
collection PubMed
description INTRODUCTION: Vibrio is an important bacterial genus containing many pathogenic species. Although more and more Vibrio phages were isolated, the genome, ecology and evolution of Vibrio phages and their roles in bacteriophage therapy, have not been fully revealed. METHODS: Novel Vibrio phage vB_ValR_NF infecting Vibrio alginolyticus was isolated from the coastal waters of Qingdao during the Ulva prolifera blooms, Characterization and genomic feature of phage vB_ValR_NF has been analysed using phage isolation, sequencing and metagenome method. RESULTS AND DISCUSSION: Phage vB_ValR_NF has a siphoviral morphology (icosahedral head 114±1 nm in diameter; a tail length of 231±1 nm), a short latent period (30 minutes) and a large burst size (113 virions per cell), and the thermal/pH stability study showed that phage vB_ValR_NF was highly tolerant to a range of pHs (4-12) and temperatures (-20 - 45 °C), respectively. Host range analysis suggests that phage vB_ValR_NF not only has a high inhibitory ability against the host strain V. alginolyticus, but also can infect 7 other Vibrio strains. In addition, the phage vB_ValR_NF has a double-stranded 44, 507 bp DNA genome, with 43.10 % GC content and 75 open reading frames. Three auxiliary metabolic genes associated with aldehyde dehydrogenase, serine/threonine protein phosphatase and calcineurin-like phosphoesterase were predicted, might help the host V. alginolyticus occupy the survival advantage, thus improving the survival chance of phage vB_ValR_NF under harsh conditions. This point can be supported by the higher abundance of phage vB_ValR_NF during the U. prolifera blooms than in other marine environments. Further phylogenetic and genomic analysis shows that the viral group represented by Vibrio phage vB_ValR_NF is different from other well-defined reference viruses, and can be classified into a new family, named Ruirongviridae. In general, as a new marine phage infecting V. alginolyticus, phage vB_ValR_NF provides basic information for further molecular research on phage–host interactions and evolution, and may unravel a novel insight into changes in the community structure of organisms during the U. prolifera blooms. At the same time, its high tolerance to extreme conditions and excellent bactericidal ability will become important reference factors when evaluating the potential of phage vB_ValR_NF in bacteriophage therapy in the future.
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spelling pubmed-101965032023-05-20 Characterization and genomic analysis of phage vB_ValR_NF, representing a new viral family prevalent in the Ulva prolifera blooms Zhang, Xinran Liang, Yantao Zheng, Kaiyang Wang, Ziyue Dong, Yue Liu, Yundan Ren, Linyi Wang, Hongmin Han, Ying McMinn, Andrew Sung, Yeong Yik Mok, Wen Jye Wong, Li Lian He, Jianfeng Wang, Min Front Microbiol Microbiology INTRODUCTION: Vibrio is an important bacterial genus containing many pathogenic species. Although more and more Vibrio phages were isolated, the genome, ecology and evolution of Vibrio phages and their roles in bacteriophage therapy, have not been fully revealed. METHODS: Novel Vibrio phage vB_ValR_NF infecting Vibrio alginolyticus was isolated from the coastal waters of Qingdao during the Ulva prolifera blooms, Characterization and genomic feature of phage vB_ValR_NF has been analysed using phage isolation, sequencing and metagenome method. RESULTS AND DISCUSSION: Phage vB_ValR_NF has a siphoviral morphology (icosahedral head 114±1 nm in diameter; a tail length of 231±1 nm), a short latent period (30 minutes) and a large burst size (113 virions per cell), and the thermal/pH stability study showed that phage vB_ValR_NF was highly tolerant to a range of pHs (4-12) and temperatures (-20 - 45 °C), respectively. Host range analysis suggests that phage vB_ValR_NF not only has a high inhibitory ability against the host strain V. alginolyticus, but also can infect 7 other Vibrio strains. In addition, the phage vB_ValR_NF has a double-stranded 44, 507 bp DNA genome, with 43.10 % GC content and 75 open reading frames. Three auxiliary metabolic genes associated with aldehyde dehydrogenase, serine/threonine protein phosphatase and calcineurin-like phosphoesterase were predicted, might help the host V. alginolyticus occupy the survival advantage, thus improving the survival chance of phage vB_ValR_NF under harsh conditions. This point can be supported by the higher abundance of phage vB_ValR_NF during the U. prolifera blooms than in other marine environments. Further phylogenetic and genomic analysis shows that the viral group represented by Vibrio phage vB_ValR_NF is different from other well-defined reference viruses, and can be classified into a new family, named Ruirongviridae. In general, as a new marine phage infecting V. alginolyticus, phage vB_ValR_NF provides basic information for further molecular research on phage–host interactions and evolution, and may unravel a novel insight into changes in the community structure of organisms during the U. prolifera blooms. At the same time, its high tolerance to extreme conditions and excellent bactericidal ability will become important reference factors when evaluating the potential of phage vB_ValR_NF in bacteriophage therapy in the future. Frontiers Media S.A. 2023-05-05 /pmc/articles/PMC10196503/ /pubmed/37213492 http://dx.doi.org/10.3389/fmicb.2023.1161265 Text en Copyright © 2023 Zhang, Liang, Zheng, Wang, Dong, Liu, Ren, Wang, Han, McMinn, Sung, Mok, Wong, He and Wang. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Zhang, Xinran
Liang, Yantao
Zheng, Kaiyang
Wang, Ziyue
Dong, Yue
Liu, Yundan
Ren, Linyi
Wang, Hongmin
Han, Ying
McMinn, Andrew
Sung, Yeong Yik
Mok, Wen Jye
Wong, Li Lian
He, Jianfeng
Wang, Min
Characterization and genomic analysis of phage vB_ValR_NF, representing a new viral family prevalent in the Ulva prolifera blooms
title Characterization and genomic analysis of phage vB_ValR_NF, representing a new viral family prevalent in the Ulva prolifera blooms
title_full Characterization and genomic analysis of phage vB_ValR_NF, representing a new viral family prevalent in the Ulva prolifera blooms
title_fullStr Characterization and genomic analysis of phage vB_ValR_NF, representing a new viral family prevalent in the Ulva prolifera blooms
title_full_unstemmed Characterization and genomic analysis of phage vB_ValR_NF, representing a new viral family prevalent in the Ulva prolifera blooms
title_short Characterization and genomic analysis of phage vB_ValR_NF, representing a new viral family prevalent in the Ulva prolifera blooms
title_sort characterization and genomic analysis of phage vb_valr_nf, representing a new viral family prevalent in the ulva prolifera blooms
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10196503/
https://www.ncbi.nlm.nih.gov/pubmed/37213492
http://dx.doi.org/10.3389/fmicb.2023.1161265
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