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◆ Poultry science2026-08-22

Isolation, characterization, and antibacterial activity of a novel Pasteurella multocida bacteriophage.

Jialing Zeng, Yayu Deng, Xiu Yang, Jianlong Lao, Hanyuan Liu, Xuanyi Lu, Lixuan Li, Jv Liu, Zeyu Li, Yijing Huang, Xun Li, Yixian Wei, Xiaoye Wang

原始摘要(英文原文)· Original abstract
Pasteurella multocida is the main pathogen causing fowl cholera and poses a serious threat to the poultry industry. Current clinical control relies on antibiotics, but the prevalence of drug-resistant strains makes it urgent to develop new antibacterial strategies. In this study, a P. multocida-specific bacteriophage vB_PmuS_ZP41 was isolated and identified as a member of the family Siphoviridae by transmission electron microscopy. This phage showed lytic activity against 13 out of 19 clinical isolates of P. multocida (68.4%) and remained stable at 4-50°C and pH 3-9. The optimal multiplicity of infection was 0.01, with a latent period of 10 min and a burst size of approximately 56 PFU/cell. Whole-genome sequencing revealed that the phage genome is a double-stranded DNA of 38,592 bp, containing no virulence genes or antibiotic resistance genes, indicating good safety. In a chick infection model, phage treatment significantly improved the survival rate of infected chicks from 40% to 80%, significantly reduced bacterial loads in blood, lung, liver, and spleen, and decreased serum levels of TNF-α and IL-1β while alleviating histopathological damage. This study systematically characterized the biological properties of phage vB_PmuS_ZP41 and its antibacterial efficacy both in vitro and in vivo, providing an experimental basis and a candidate strain for the future development of phage therapy against avian pasteurellosis.
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Isolation, characterization, and antibacterial activity of a novel Pasteurella multocida bacteriophage. — 科研速览 Science Skim