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Core Lipopolysaccharide-Specific Phage SSU5 as an Auxiliary Component of a Phage Cocktail for Salmonella Biocontrol

机译:核心脂多糖特异性噬菌体SSU5作为沙门氏菌生物防治的噬菌体鸡尾酒的辅助成分。

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摘要

Salmonella spp. are among the major food-borne pathogens that cause mild diarrhea to severe bacteremia. The use of bacteriophages to control various food-borne pathogens, including Salmonella, has emerged as a promising alternative to traditional chemotherapy. We isolated the Siphoviridae family phage SSU5, which can infect only rough strains of Salmonella. The blocking of SSU5 adsorption by periodate treatment of host Salmonella cells and spotting and adsorption assays with mutants that contain various truncations in their lipopolysaccharide (LPS) cores revealed that the outer core region of the LPS is a receptor of SSU5. SSU5 could infect O-antigen (O-Ag)-deficient Salmonella mutants that developed by challenging of O-Ag-specific phages, and consequently, it delayed the emergence of the phage-resistant Salmonella population in broth culture when treated together with phages using O-Ag as a receptor. Therefore, these results suggested that phage SSU5 would be a promising auxiliary component of a phage cocktail to control rough strains of Salmonella enterica serovar Typhimurium, which might emerge as resistant mutants upon infection by phages using O-Ag as a receptor.
机译:沙门氏菌是引起轻度腹泻至严重菌血症的主要食源性病原体之一。使用噬菌体来控制包括沙门氏菌在内的各种食源性病原体已成为传统化学疗法的有前途的替代方法。我们分离了Siphoviridae家族噬菌体SSU5,它只能感染沙门氏菌的粗糙菌株。通过周期性地处理宿主沙门氏菌细胞和用在其脂多糖(LPS)核心中包含各种截短的突变体进行斑点和吸附测定来阻断SSU5的吸附,结果表明LPS的核心区域是SSU5的受体。 SSU5可以感染通过挑战O-Ag特异性噬菌体而产生的O抗原(O-Ag)缺陷型沙门氏菌突变体,因此,当与噬菌体一起使用时,它会延缓肉汤培养中抗噬菌体沙门氏菌种群的出现。 O-Ag作为受体。因此,这些结果表明,噬菌体SSU5将是噬菌体混合物的有希望的辅助成分,以控制肠炎沙门氏菌鼠伤寒沙门氏菌的粗菌株,当使用O-Ag作为受体被噬菌体感染时,它们可能会作为抗性突变体出现。

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