Isolation and Characterization of a Novel Phage against Vibrio alginolyticus Belonging to a New Genus

Author:

Gao Jie12,Zhu Yuang1,Zhang Rui3ORCID,Xu Juntian1,Zhou Runjie45,Di Meiqi1,Zhang Di16,Liang Wenxin1,Zhou Xing1,Ren Xing6ORCID,Li Huifang12ORCID,Yang Yunlan3

Affiliation:

1. Jiangsu Institute of Marine Resources Development, Jiangsu Ocean University, Lianyungang 222005, China

2. State Key Laboratory of Marine Environmental Science, College of Ocean and Earth Sciences, Xiamen University (Xiang’an), Xiamen 361005, China

3. Institute for Advanced Study, Shenzhen University, Shenzhen 518061, China

4. State Key Laboratory of Trophic Oceanography, South China Sea Institute of Oceanology, Chinese Academy of Sciences, Guangzhou 510301, China

5. Centre for Regional Oceans, Department of Ocean Science and Technology, Faculty of Science and Technology, University of Macau, Macau 999078, China

6. Guangxi Key Laboratory of Beibu Gulf Marine Resources, Environment and Sustainable Development/Ministry of Natural Resources, Beihai 536000, China

Abstract

Vibrio alginolyticus causes substantial economic losses in the aquaculture industry. With the rise of multidrug-resistant Vibrio strains, phages present a promising solution. Here, a novel lytic Vibrio phage, vB_ValC_RH2G (RH2G), that efficiently infects the pathogenic strain V. alginolyticus ATCC 17749T, was isolated from mixed wastewater from an aquatic market in Xiamen, China. Transmission electron microscopy revealed that RH2G has the morphology of Siphoviruses, featuring an icosahedral head (73 ± 2 nm diameter) and long noncontractile tail (142 ± 4 nm). A one-step growth experiment showed that RH2G had a short latent period (10 min) and a burst size of 48 phage particles per infected cell. Additionally, RH2G was highly species-specific and was relatively stable at 4–55 °C and pH 4–10. A genomic analysis showed that RH2G has a 116,749 bp double-stranded DNA genome with 43.76% GC content. The intergenomic similarity between the genome sequence of RH2G and other phages recorded in the GenBank database was below 38.8%, suggesting that RH2G represents a new genus. RH2G did not exhibit any virulence or resistance genes. Its rapid lysis capacity, lytic activity, environmental resilience, and genetic safety suggested that RH2G may be a safe candidate for phage therapy in combatting vibriosis in aquaculture settings.

Funder

National Natural Science Foundation of China

Lianyungang Postdoctoral Research Funding Program

Guangxi Key Laboratory of Beibu Gulf Marine Resources, Environment and Sustainable Development

Postgraduate Research & Practice Innovation Program of Jiangsu Ocean University

Guangxi Science and Technology Base and Talent Special Projects

Science and Technology Development Fund, Macau SAR

Scientific Research Foundation of Jiangsu Ocean University

Publisher

MDPI AG

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