Isolation, Characterization and Whole Genome Analysis of an Avian Pathogenic Escherichia coli Phage vB_EcoS_GN06

Author:

Wang LepingORCID,Tan Yizhou,Liao Yuying,Li Lei,Han Kaiou,Bai Huili,Cao Yajie,Li Jun,Gong Yu,Wang XiaoyeORCID,Peng Hao

Abstract

Escherichia coli (O78) is an avian pathogenic Escherichia coli (APEC). It can cause perihepatitis, pericarditis, septicemia and even systemic infections in the poultry industry. With the incidence of antibiotic resistance reaching a crisis point, it is important to find alternative treatments for multidrug-resistant infections. The use of phages to control pathogens is a promising therapeutic option for antibiotic replacement. In this study, we isolated a lytic phage called vB_EcoS_GN06 from sewage. It lysed APEC GXEC-N22. Transmission electron microscopy showed that the phage belongs to family Siphoviridae. Phage GN06 has a 107,237 bp linear double-stranded DNA genome with 39.2% GC content and 155 coding sequences. It belongs to the genus Tequintavirus, subfamily Markadamsvirinae. The multiplicity of infection of 0.01 and the one-step growth showed that the latent time is 60 min and the burst size is 434 PFU/cell. Temperature and pH stability tests showed that phage GN06 was stable in the range of 4 °C–60 °C and pH 5–9. GN06 showed significant inhibition of APEC both within the liquid medium and in biofilm formation. These results suggest that phage GN06 has the potential to control bacterial pathogens. Thus, GN06 has the potential to be a new potential candidate for phage therapy.

Funder

Guangxi Key R&D Program

National Technical System Construction Project for Waterfowl Industry

Guangxi Broiler Industry Innovation Team Construction Project

Major Science and Technology Project of Liangqing District

Key R&D Program of Nanning City

Key R&D Program of Fangchenggang City

Key R&D Program of Wuming District

Key R&D Program of Jiangnan District

Microbial flora and soil remediation

The study of the mechanism of decreased resistance to mucilage sulfate in Escherichia coli due to phage resistance

Construction and improvement of veterinary epidemic prevention system for breeding pig farms of the Fuxile company

Publisher

MDPI AG

Subject

General Veterinary

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