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Role of rpoS in Acid Resistance and Fecal Shedding of Escherichia coli O157:H7

机译:rpoS在大肠杆菌O157:H7的耐酸和排泄物中的作用

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Acid resistance (AR) is important to survival of Escherichia coli O157:H7 in acidic foods and may play a role during passage through the bovine host. In this study, we examined the role in AR of the rpoS-encoded global stress response regulator ?S and its effect on shedding of E. coliO157:H7 in mice and calves. When assayed for each of the three AR systems identified in E. coli, an rpoS mutant (rpoS::pRR10) of E. coli O157:H7 lacked the glucose-repressed system and possessed reduced levels of both the arginine- and glutamate-dependent AR systems. After administration of the rpoS mutant and the wild-type strain (ATCC 43895) to ICR mice at doses ranging from 101 to 104 CFU, we found the wild-type strain in feces of mice given lower doses (102 versus 103 CFU) and at a greater frequency (80% versus 13%) than the mutant strain. The reduction in passage of the rpoS mutant was due to decreased AR, as administration of the mutant in 0.05 M phosphate buffer facilitated passage and increased the frequency of recovery in feces from 27 to 67% at a dose of 104 CFU. Enumeration ofE. coli O157:H7 in feces from calves inoculated with an equal mixture of the wild-type strain and the rpoS mutant demonstrated shedding of the mutant to be 10- to 100-fold lower than wild-type numbers. This difference in shedding between the wild-type strain and the rpoS mutant was statistically significant (P ≤ 0.05). Thus, ?S appears to play a role in E. coli O157:H7 passage in mice and shedding from calves, possibly by inducing expression of the glucose-repressed RpoS-dependent AR determinant and thus increasing resistance to gastrointestinal stress. These findings may provide clues for future efforts aimed at reducing or eliminating this pathogen from cattle herds.
机译:耐酸性(AR)对于酸性食品中的大肠杆菌O157:H7的存活很重要,并且可能在通过牛宿主过程中发挥作用。在这项研究中,我们研究了 rpoS 编码的全球应激反应调节因子? S 在AR中的作用及其对 E脱落的影响。小鼠和牛犊中的大肠杆菌 O157:H7。对在 E中确定的三个AR系统分别进行分析时。大肠杆菌,它是 E的 rpoS 突变体( rpoS :: pRR10)。 O157:H7缺乏葡萄糖抑制系统,精氨酸和谷氨酸依赖的AR系统水平降低。以10 1 至10 4 CFU的剂量向ICR小鼠施用 rpoS 突变体和野生株(ATCC 43895) ,我们发现小鼠粪便中的野生型菌株给予的剂量更低(10 2 相对于10 3 CFU),且频率更高(80%比13%),突变株。 rpoS 突变体传代的减少归因于AR的降低,因为在0.05M磷酸盐缓冲液中施用该突变体可促进传代,并且剂量为50毫克时粪便恢复的频率从27%增至67%。 10 4 CFU。 E的枚举。接种野生型菌株和 rpoS 突变体等量混合物的犊牛粪便中的大肠杆菌O157:H7表明,该突变体的脱落量比野生型低10至100倍类型的数字。野生型菌株和 rpoS 突变体之间的脱落差异具有统计学意义( P ≤0.05)。因此,? S 似乎在 E中起作用。 O157:H7在小鼠体内的传代并从牛犊脱落,可能是通过诱导葡萄糖抑制的RpoS依赖性AR决定簇的表达,从而增加了对胃肠道压力的抵抗力。这些发现可能为今后旨在减少或消除牛群病原体的努力提供线索。

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