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新分离的属于康奈尔病毒属的裂解性噬菌体SLAM_phiST1N3对猪产业链中耐多药鼠伤寒沙门氏菌进行生物防治的分子特征及环境影响

Molecular characterization and environmental impact of newly isolated lytic phage SLAM_phiST1N3 in the Cornellvirus genus for biocontrol of a multidrug-resistant Salmonella Typhimurium in the swine industry chain.

作者信息

Choi Youbin, Kwak Min-Jin, Kang Min-Geun, Kang An Na, Lee Woogji, Mun Daye, Choi Hyejin, Park Jeongkuk, Eor Ju Young, Song Minho, Kim Jong Nam, Oh Sangnam, Kim Younghoon

机构信息

Department of Agricultural Biotechnology and Research Institute of Agriculture and Life Science, Seoul National University, Seoul 08826, Republic of Korea.

Department of Animal Science and Biotechnology, Chungnam National University, Daejeon 34134, Republic of Korea.

出版信息

Sci Total Environ. 2024 Apr 20;922:171208. doi: 10.1016/j.scitotenv.2024.171208. Epub 2024 Feb 24.

Abstract

Salmonella Typhimurium is a highly lethal pathogenic bacterium in weaned piglets, causing significant treatment costs and economic losses in the swine industry. Additionally, due to its ability to induce zoonotic diseases, resulting in harm to humans through the transmission of the pathogen from pork, it presents a serious public health issue. Bacteriophages (phages), viruses that infect specific bacterial strains, have been proposed as an alternative to antibiotics for controlling pathogenic bacteria. In this study, we isolated SLAM_phiST1N3, a phage infecting a multidrug-resistant (MDR) S. Typhimurium wild-type strain isolated from diseased pigs. First, comparative genomics and phylogenetic analysis revealed that SLAM_phiST1N3 belongs to the Cornellvirus genus. Moreover, utilizing a novel classification approach introduced in this study, SLAM_phiST1N3 was classified at the species level. Host range experiments demonstrated that SLAM_phiST1N3 did not infect other pathogenic bacteria or probiotics derived from pigs or other livestock. While complete eradication of Salmonella was not achievable in the liquid inhibition assay, surprisingly, we succeeded in largely eliminating Salmonella in the FIMM analysis, a gut simulation system using weaned piglet feces. Furthermore, using the C. elegans model, we showcased the potential of SLAM_phiST1N3 to prevent S. Typhimurium infection in living organisms. In addition, it was confirmed that bacterial control could be achieved when phage was applied to Salmonella-contaminated pork. pH and temperature stability experiments demonstrated that SLAM_phiST1N3 can endure swine industry processes and digestive conditions. In conclusion, SLAM_phiST1N3 demonstrates potential environmental impact as a substance for Salmonella prevention across various aspects of the swine industry chain.

摘要

鼠伤寒沙门氏菌是断奶仔猪中一种极具致死性的病原菌,给养猪业带来了高昂的治疗成本和经济损失。此外,由于其能够引发人畜共患病,通过猪肉传播病原体对人类造成危害,因此它构成了一个严重的公共卫生问题。噬菌体是一种感染特定细菌菌株的病毒,已被提议作为控制病原菌的抗生素替代品。在本研究中,我们分离出了SLAM_phiST1N3,这是一种感染从患病猪中分离出的多重耐药(MDR)鼠伤寒沙门氏菌野生型菌株的噬菌体。首先,比较基因组学和系统发育分析表明SLAM_phiST1N3属于康奈尔病毒属。此外,利用本研究中引入的一种新的分类方法,SLAM_phiST1N3在物种水平上进行了分类。宿主范围实验表明,SLAM_phiST1N3不会感染其他病原菌或源自猪或其他家畜的益生菌。虽然在液体抑制试验中无法完全根除沙门氏菌,但令人惊讶的是,我们在FIMM分析(一种使用断奶仔猪粪便的肠道模拟系统)中成功地在很大程度上消除了沙门氏菌。此外,使用秀丽隐杆线虫模型,我们展示了SLAM_phiST1N3在预防活体生物中鼠伤寒沙门氏菌感染方面的潜力。另外,已证实将噬菌体应用于受沙门氏菌污染的猪肉时可以实现细菌控制。pH和温度稳定性实验表明,SLAM_phiST1N3能够耐受养猪业的加工过程和消化条件。总之,SLAM_phiST1N3作为一种在养猪产业链各个环节预防沙门氏菌的物质,显示出潜在的环境影响。

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