Characterization and genomic analysis of Stutzerimonas stutzeri phage vB_PstS_ZQG1, representing a novel viral genus

•A novel Stutzerimonas stutzeri phage vB_PstS_ZQG1 was isolated from the surface seawater of Qingdao, China.•Two AMGs are encoded by phage vB_PstS_ZQG1, including TolA protein and nucleotide pyrophosphohydrolase.•Phage vB_PstS_ZQG1 represents a new viral genus, named Fuevirus, within the caudovirice...

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Published inVirus research Vol. 336; p. 199226
Main Authors Ge, Fuyue, Guo, Ruizhe, Liang, Yantao, Chen, Ying, Shao, Hongbing, Sung, Yeong Yik, Mok, Wen Jye, Wong, Li Lian, McMinn, Andrew, Wang, Min
Format Journal Article
LanguageEnglish
Published Elsevier B.V 15.10.2023
Elsevier
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Abstract •A novel Stutzerimonas stutzeri phage vB_PstS_ZQG1 was isolated from the surface seawater of Qingdao, China.•Two AMGs are encoded by phage vB_PstS_ZQG1, including TolA protein and nucleotide pyrophosphohydrolase.•Phage vB_PstS_ZQG1 represents a new viral genus, named Fuevirus, within the caudoviricetes.•Phage vB_PstS_ZQG1 is predominantly found in the epipelagic and mesopelagic zones with low abundance. Stutzerimonas stutzeri is an opportunistic pathogenic bacterium belonging to the Gammaproteobacteria, exhibiting wide distribution in the environment and playing significant ecological roles such as nitrogen fixation or pollutant degradation. Despite its ecological importance, only two S. stutzeri phages have been isolated to date. Here, a novel S. stutzeri phage, vB_PstS_ZQG1, was isolated from the surface seawater of Qingdao, China. Transmission electron microscopy analysis indicates that vB_PstS_ZQG1 has a morphology characterized by a long non-contractile tail. The genomic sequence of vB_PstS_ZQG1 contains a linear, double-strand 61,790-bp with the G+C content of 53.24% and encodes 90 putative open reading frames. Two auxiliary metabolic genes encoding TolA protein and nucleotide pyrophosphohydrolase were identified, which are likely involved in host adaptation and phage reproduction. Phylogenetic and comparative genomic analyses demonstrated that vB_PstS_ZQG1 exhibits low similarity with previously isolated phages or uncultured viruses (average nucleotide identity values range from 21.7 to 29.4), suggesting that it represents a novel viral genus by itself, here named as Fuevirus. Biogeographic analysis showed that vB_PstS_ZQG1 was only detected in epipelagic and mesopelagic zone with low abundance. In summary, our findings of the phage vB_PstS_ZQG1 will provide helpful insights for further research on the interactions between S. stutzeri phages and their hosts, and contribute to discovering unknown viral sequences in the metagenomic database.
AbstractList • A novel Stutzerimonas stutzeri phage vB_PstS_ZQG1 was isolated from the surface seawater of Qingdao, China. • Two AMGs are encoded by phage vB_PstS_ZQG1, including TolA protein and nucleotide pyrophosphohydrolase. • Phage vB_PstS_ZQG1 represents a new viral genus, named Fuevirus, within the caudoviricetes . • Phage vB_PstS_ZQG1 is predominantly found in the epipelagic and mesopelagic zones with low abundance. Stutzerimonas stutzeri is an opportunistic pathogenic bacterium belonging to the Gammaproteobacteria , exhibiting wide distribution in the environment and playing significant ecological roles such as nitrogen fixation or pollutant degradation. Despite its ecological importance, only two S. stutzeri phages have been isolated to date. Here, a novel S. stutzeri phage, vB_PstS_ZQG1, was isolated from the surface seawater of Qingdao, China. Transmission electron microscopy analysis indicates that vB_PstS_ZQG1 has a morphology characterized by a long non-contractile tail. The genomic sequence of vB_PstS_ZQG1 contains a linear, double-strand 61,790-bp with the G+C content of 53.24% and encodes 90 putative open reading frames. Two auxiliary metabolic genes encoding TolA protein and nucleotide pyrophosphohydrolase were identified, which are likely involved in host adaptation and phage reproduction. Phylogenetic and comparative genomic analyses demonstrated that vB_PstS_ZQG1 exhibits low similarity with previously isolated phages or uncultured viruses (average nucleotide identity values range from 21.7 to 29.4), suggesting that it represents a novel viral genus by itself, here named as Fuevirus . Biogeographic analysis showed that vB_PstS_ZQG1 was only detected in epipelagic and mesopelagic zone with low abundance. In summary, our findings of the phage vB_PstS_ZQG1 will provide helpful insights for further research on the interactions between S. stutzeri phages and their hosts, and contribute to discovering unknown viral sequences in the metagenomic database.
Stutzerimonas stutzeri is an opportunistic pathogenic bacterium belonging to the Gammaproteobacteria, exhibiting wide distribution in the environment and playing significant ecological roles such as nitrogen fixation or pollutant degradation. Despite its ecological importance, only two S. stutzeri phages have been isolated to date. Here, a novel S. stutzeri phage, vB_PstS_ZQG1, was isolated from the surface seawater of Qingdao, China. Transmission electron microscopy analysis indicates that vB_PstS_ZQG1 has a morphology characterized by a long non-contractile tail. The genomic sequence of vB_PstS_ZQG1 contains a linear, double-strand 61,790-bp with the G+C content of 53.24% and encodes 90 putative open reading frames. Two auxiliary metabolic genes encoding TolA protein and nucleotide pyrophosphohydrolase were identified, which are likely involved in host adaptation and phage reproduction. Phylogenetic and comparative genomic analyses demonstrated that vB_PstS_ZQG1 exhibits low similarity with previously isolated phages or uncultured viruses (average nucleotide identity values range from 21.7 to 29.4), suggesting that it represents a novel viral genus by itself, here named as Fuevirus. Biogeographic analysis showed that vB_PstS_ZQG1 was only detected in epipelagic and mesopelagic zone with low abundance. In summary, our findings of the phage vB_PstS_ZQG1 will provide helpful insights for further research on the interactions between S. stutzeri phages and their hosts, and contribute to discovering unknown viral sequences in the metagenomic database.
•A novel Stutzerimonas stutzeri phage vB_PstS_ZQG1 was isolated from the surface seawater of Qingdao, China.•Two AMGs are encoded by phage vB_PstS_ZQG1, including TolA protein and nucleotide pyrophosphohydrolase.•Phage vB_PstS_ZQG1 represents a new viral genus, named Fuevirus, within the caudoviricetes.•Phage vB_PstS_ZQG1 is predominantly found in the epipelagic and mesopelagic zones with low abundance. Stutzerimonas stutzeri is an opportunistic pathogenic bacterium belonging to the Gammaproteobacteria, exhibiting wide distribution in the environment and playing significant ecological roles such as nitrogen fixation or pollutant degradation. Despite its ecological importance, only two S. stutzeri phages have been isolated to date. Here, a novel S. stutzeri phage, vB_PstS_ZQG1, was isolated from the surface seawater of Qingdao, China. Transmission electron microscopy analysis indicates that vB_PstS_ZQG1 has a morphology characterized by a long non-contractile tail. The genomic sequence of vB_PstS_ZQG1 contains a linear, double-strand 61,790-bp with the G+C content of 53.24% and encodes 90 putative open reading frames. Two auxiliary metabolic genes encoding TolA protein and nucleotide pyrophosphohydrolase were identified, which are likely involved in host adaptation and phage reproduction. Phylogenetic and comparative genomic analyses demonstrated that vB_PstS_ZQG1 exhibits low similarity with previously isolated phages or uncultured viruses (average nucleotide identity values range from 21.7 to 29.4), suggesting that it represents a novel viral genus by itself, here named as Fuevirus. Biogeographic analysis showed that vB_PstS_ZQG1 was only detected in epipelagic and mesopelagic zone with low abundance. In summary, our findings of the phage vB_PstS_ZQG1 will provide helpful insights for further research on the interactions between S. stutzeri phages and their hosts, and contribute to discovering unknown viral sequences in the metagenomic database.
ArticleNumber 199226
Author Sung, Yeong Yik
Mok, Wen Jye
Guo, Ruizhe
McMinn, Andrew
Chen, Ying
Shao, Hongbing
Ge, Fuyue
Liang, Yantao
Wang, Min
Wong, Li Lian
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  surname: Ge
  fullname: Ge, Fuyue
  organization: College of Marine Life Sciences, Institute of Evolution and Marine Biodiversity, MoE Laboratory of Evolution and Marine Biodiversity, Frontiers Science Center for Deep Ocean Multispheres and Earth System, Center for Ocean Carbon Neutrality, Ocean University of China, Qingdao, China
– sequence: 2
  givenname: Ruizhe
  surname: Guo
  fullname: Guo, Ruizhe
  organization: College of Marine Life Sciences, Institute of Evolution and Marine Biodiversity, MoE Laboratory of Evolution and Marine Biodiversity, Frontiers Science Center for Deep Ocean Multispheres and Earth System, Center for Ocean Carbon Neutrality, Ocean University of China, Qingdao, China
– sequence: 3
  givenname: Yantao
  surname: Liang
  fullname: Liang, Yantao
  email: liangyantao@ouc.edu.cn
  organization: College of Marine Life Sciences, Institute of Evolution and Marine Biodiversity, MoE Laboratory of Evolution and Marine Biodiversity, Frontiers Science Center for Deep Ocean Multispheres and Earth System, Center for Ocean Carbon Neutrality, Ocean University of China, Qingdao, China
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  givenname: Ying
  surname: Chen
  fullname: Chen, Ying
  organization: College of Marine Life Sciences, Institute of Evolution and Marine Biodiversity, MoE Laboratory of Evolution and Marine Biodiversity, Frontiers Science Center for Deep Ocean Multispheres and Earth System, Center for Ocean Carbon Neutrality, Ocean University of China, Qingdao, China
– sequence: 5
  givenname: Hongbing
  surname: Shao
  fullname: Shao, Hongbing
  organization: College of Marine Life Sciences, Institute of Evolution and Marine Biodiversity, MoE Laboratory of Evolution and Marine Biodiversity, Frontiers Science Center for Deep Ocean Multispheres and Earth System, Center for Ocean Carbon Neutrality, Ocean University of China, Qingdao, China
– sequence: 6
  givenname: Yeong Yik
  surname: Sung
  fullname: Sung, Yeong Yik
  organization: UMT-OUC Joint Centre for Marine Studies, Qingdao, China
– sequence: 7
  givenname: Wen Jye
  surname: Mok
  fullname: Mok, Wen Jye
  organization: UMT-OUC Joint Centre for Marine Studies, Qingdao, China
– sequence: 8
  givenname: Li Lian
  surname: Wong
  fullname: Wong, Li Lian
  organization: UMT-OUC Joint Centre for Marine Studies, Qingdao, China
– sequence: 9
  givenname: Andrew
  surname: McMinn
  fullname: McMinn, Andrew
  organization: College of Marine Life Sciences, Institute of Evolution and Marine Biodiversity, MoE Laboratory of Evolution and Marine Biodiversity, Frontiers Science Center for Deep Ocean Multispheres and Earth System, Center for Ocean Carbon Neutrality, Ocean University of China, Qingdao, China
– sequence: 10
  givenname: Min
  surname: Wang
  fullname: Wang, Min
  email: mingwang@ouc.edu.cn
  organization: College of Marine Life Sciences, Institute of Evolution and Marine Biodiversity, MoE Laboratory of Evolution and Marine Biodiversity, Frontiers Science Center for Deep Ocean Multispheres and Earth System, Center for Ocean Carbon Neutrality, Ocean University of China, Qingdao, China
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Keywords Stutzerimonas stutzeri
Biogeographic analysis
Fuevirus
Genomic and phylogenetic analysis
Vb_psts_zqg1
Language English
License This is an open access article under the CC BY-NC-ND license.
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These authors have contributed equally to this work.
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Snippet •A novel Stutzerimonas stutzeri phage vB_PstS_ZQG1 was isolated from the surface seawater of Qingdao, China.•Two AMGs are encoded by phage vB_PstS_ZQG1,...
• A novel Stutzerimonas stutzeri phage vB_PstS_ZQG1 was isolated from the surface seawater of Qingdao, China. • Two AMGs are encoded by phage vB_PstS_ZQG1,...
Stutzerimonas stutzeri is an opportunistic pathogenic bacterium belonging to the Gammaproteobacteria, exhibiting wide distribution in the environment and...
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StartPage 199226
SubjectTerms Biogeographic analysis
Fuevirus
Genomic and phylogenetic analysis
Stutzerimonas stutzeri
Vb_psts_zqg1
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Title Characterization and genomic analysis of Stutzerimonas stutzeri phage vB_PstS_ZQG1, representing a novel viral genus
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