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Escherichia coli O157:H7 bacteriophage Φ241 isolated from an industrial cucumber fermentation at high acidity and salinity

机译:从高酸度和高盐度工业黄瓜发酵中分离出的大肠杆菌O157:H7噬菌体Φ241

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摘要

A novel phage, Φ241, specific for Escherichia coli O157:H7 was isolated from an industrial cucumber fermentation where both acidity (pH ≤ 3.7) and salinity (≥5% NaCl) were high. The phage belongs to the Myoviridae family. Its latent period was 15 min and average burst size was 53 phage particles per infected cell. The phage was able to lyse 48 E. coli O157:H7 strains, but none of the 18 non-O157 strains (including E. coli O104:H7) or the 2 O antigen-negative mutants of O157:H7 strain, 43895Δper (also lacking H7 antigen) and F12 (still expressing H7 antigen). However, the phage was able to lyse a per-complemented strain (43895ΔperComp) which expresses O157 antigen. These results indicated that phage Φ241 is specific for O157 antigen, and E. coli strains lacking O157 antigen were resistant to the phage infection, regardless of the presence or absence of H7 antigen. SDS-PAGE profile revealed at least 13 structural proteins of the phage. The phage DNA was resistant to many commonly used restriction endonucleases, suggesting the presence of modified nucleotides in the phage genome. At the multiplicity of infection of 10, 3, or 0.3, the phage caused a rapid cell lysis within 1 or 2 h, resulting in 3.5- or 4.5-log-unit reduction in cell concentration. The high lytic activity, specificity and tolerance to low pH and high salinity make phage Φ241 a potentially ideal biocontrol agent of E. coli O157:H7 in various foods. To our knowledge, this is the first report on E. coli O157:H7 phage isolated from high acidity and salinity environment.
机译:从工业黄瓜发酵中分离出一种针对大肠杆菌O157:H7的新型噬菌体Φ241,该发酵中酸度(pH≤3.7)和盐度(≥5%NaCl)都很高。噬菌体属于肌病毒科。它的潜伏期为15分钟,每个被感染细胞的平均爆发大小为53个噬菌体颗粒。噬菌体能够裂解48个大肠杆菌O157:H7菌株,但18个非O157菌株(包括大肠杆菌O104:H7)或O157:H7菌株的2 O抗原阴性突变体均不能裂解43895Δper(也缺少H7抗原)和F12(仍在表达H7抗原)。然而,噬菌体能够裂解表达O157抗原的每个互补的菌株(43895ΔperComp)。这些结果表明噬菌体Φ241对O157抗原具有特异性,并且缺乏O157抗原的大肠杆菌菌株对噬菌体感染具有抗性,而与H7抗原的存在与否无关。 SDS-PAGE图谱揭示了噬菌体的至少13种结构蛋白。噬菌体DNA对许多常用的限制性核酸内切酶有抗性,表明噬菌体基因组中存在修饰的核苷酸。在感染的倍数为10、3或0.3时,噬菌体在1或2 h内引起细胞快速裂解,导致细胞浓度降低3.5或4.5对数单位。噬菌体Φ241的高裂解活性,特异性和对低pH和高盐度的耐受性使其成为各种食品中大肠杆菌O157:H7的潜在理想生物防治剂。据我们所知,这是关于从高酸度和盐度环境中分离出的大肠杆菌O157:H7噬菌体的首次报道。

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