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首页> 外文期刊>Current Microbiology: An International Journal >Isolation, Characterization, and Bioinformatic Analyses of Lytic Salmonella Enteritidis Phages and Tests of Their Antibacterial Activity in Food
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Isolation, Characterization, and Bioinformatic Analyses of Lytic Salmonella Enteritidis Phages and Tests of Their Antibacterial Activity in Food

机译:裂解性沙门氏菌的分离,表征和生物信息分析肠炎虫噬菌体噬菌体及其在食品中抗菌活性的测试

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Salmonella Enteritidis remains a major threat for food safety. To take efforts to develop phage-based biocontrol for S. Enteritidis contamination in food, in this study, the phages against S. Enteritidis were isolated from sewage samples, characterized by host range assays, DNA restriction enzyme pattern analyses, and transmission electron microscope observations, and tested for antibacterial activity in food; some potent phages were further characterized by bioinformatic analyses. Results showed that based on the plaque quality and host range, seven lytic phages targeting S. Enteritidis were selected, considered as seven distinct phages through DNA physical maps, and classified as Myoviridae or Siphoviridae family by morphologic observations; the combined use of such seven strain phages as a "food additive" could succeed in controlling the artificial S. Enteritidis contamination in the different physical forms of food at a range of temperatures; by bioinformatic analyses, both selected phage BPS(11)Q(3) and BPS(15)Q(2) seemed to be newfound obligate lytic phage strains with no indications for any potentially harmful genes in their genomes. In conclusion, our results showed a potential of isolated phages as food additives for controlling S. Enteritidis contamination in some salmonellosis outbreak-associated food vehicles, and there could be minimized potential risk associated with using BPS(11)Q(3) and BPS(15)Q(2) in food.
机译:Salmonella Enteritidis仍然是食品安全的主要威胁。在本研究中,在食品中开发S.肠炎虫污染的基于噬菌体的生物管制的噬菌体毒素,从污水样品中分离出肠炎虫的噬菌体,其特征在于宿主范围测定,DNA限制酶图案分析和透射电子显微镜观察,并测试食物中的抗菌活性;通过生物信息分析进一步表征了一些有效噬菌体。结果表明,根据斑块质量和宿主范围,选择了7种含有S.肠炎的血清噬菌体,被认为是通过DNA物理图的七种不同的噬菌体,并通过形态学观察归类为Myoviridae或Siphoviridae家族;这种7个应变噬菌体的结合使用作为“食物添加剂”可以在各种温度下以不同的物理形式的食物中的人工S.肠炎毒污染控制;通过生物信息分析,均选定的噬菌体BPS(11)Q(3)和BPS(15)Q(2)似乎是NewFound含义裂解性裂解菌株,其基因组中没有任何可能有害基因的适应症。总之,我们的结果表明,用于控制某些沙明爆发相关食品载体中的肠炎虫污染的食品添加剂的潜在潜力,并且可以最小化与使用BPS(11)Q(3)和BPS相关的潜在风险( 15)Q(2)在食物中。

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