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Coevolution of Bacteriophage PP01 and Escherichia coli O157:H7 in Continuous Culture

机译:连续培养中噬菌体PP01和大肠杆菌O157:H7的共同进化

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摘要

The interaction between Escherichia coli O157:H7 and its specific bacteriophage PP01 was investigated in chemostat continuous culture. Following the addition of bacteriophage PP01, E. coli O157:H7 cell lysis was observed by over 4 orders of magnitude at a dilution rate of 0.876 h−1 and by 3 orders of magnitude at a lower dilution rate (0.327 h−1). However, the appearance of a series of phage-resistant E. coli isolates, which showed a low efficiency of plating against bacteriophage PP01, led to an increase in the cell concentration in the culture. The colony shape, outer membrane protein expression, and lipopolysaccharide production of each escape mutant were compared. Cessation of major outer membrane protein OmpC production and alteration of lipopolysaccharide composition enabled E. coli O157:H7 to escape PP01 infection. One of the escape mutants of E. coli O157:H7 which formed a mucoid colony (Mu) on Luria-Bertani agar appeared 56 h postincubation at a dilution rate of 0.867 h−1 and persisted until the end of the experiment (∼200 h). Mu mutant cells could coexist with bacteriophage PP01 in batch culture. Concentrations of the Mu cells and bacteriophage PP01 increased together. The appearance of mutant phage, which showed a different host range among the O157:H7 escape mutants than wild-type PP01, was also detected in the chemostat culture. Thus, coevolution of phage and E. coli O157:H7 proceeded as a mutual arms race in chemostat continuous culture.
机译:在恒化器连续培养中研究了大肠杆菌O157:H7与特定噬菌体PP01之间的相互作用。加入噬菌体PP01后,以0.876 h -1 的稀释率观察到大肠杆菌O157:H7细胞裂解超过4个数量级,而以较低的稀释率观察到3个数量级的裂解。 (0.327 h -1 )。然而,一系列抗噬菌体的大肠杆菌分离株的出现,表现出针对噬菌体PP01的低铺板效率,导致培养物中细胞浓度增加。比较每个逃避突变体的菌落形状,外膜蛋白表达和脂多糖产生。停止主要外膜蛋白OmpC的产生和脂多糖组成的改变使大肠杆菌O157:H7能够摆脱PP01感染。大肠杆菌O157:H7的一个逃逸突变体在Luria-Bertani琼脂上形成粘液菌落(Mu),在孵化后56 h出现,稀释率为0.867 h -1 并持续到结束实验的时间(约200小时)。在分批培养中,Mu突变细胞可以与噬菌体PP01共存。 Mu细胞和噬菌体PP01的浓度一起增加。在恒化培养物中也检测到突变噬菌体的出现,该噬菌体在O157:H7逃避突变体中显示出与野生型PP01不同的宿主范围。因此,噬菌体和大肠杆菌O157:H7的共同进化是在恒化器连续培养中的相互军备竞赛。

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