首页> 美国卫生研究院文献>Applied and Environmental Microbiology >The Streptomycin-Sulfadiazine-Tetracycline Antimicrobial Resistance Element of Calf-Adapted Escherichia coli Is Widely Distributed among Isolates from Washington State Cattle
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The Streptomycin-Sulfadiazine-Tetracycline Antimicrobial Resistance Element of Calf-Adapted Escherichia coli Is Widely Distributed among Isolates from Washington State Cattle

机译:小牛适应性大肠杆菌的链霉素-磺胺嘧啶-四环素抗药性元素广泛分布于华盛顿州牛的分离株中

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摘要

Association of specific antimicrobial resistance patterns with unrelated selective traits has long been implicated in the maintenance of antimicrobial resistance in a population. Previously we demonstrated that Escherichia coli strains with a specific resistance pattern (resistant to streptomycin, sulfadiazine, and tetracycline [SSuT]) have a selective advantage in dairy calf intestinal environments and in the presence of a milk supplement commonly fed to the calves. In the present study we identified the sequence of the genetic element that confers the SSuT phenotype and show that this element is present in a genetically diverse group of E. coli isolates, as assessed by macrorestriction digestion and pulsed-field gel electrophoresis. This element was also found in E. coli isolates from 18 different cattle farms in Washington State. Using in vitro competition experiments we further demonstrated that SSuT strains from 17 of 18 farms were able to outcompete pansusceptible strains. In a separate set of experiments, we were able to transfer the antimicrobial resistance phenotype by electroporation to a laboratory strain of E. coli (DH10B), making that new strain more competitive during in vitro competition with the parental DH10B strain. These data indicate that a relatively large genetic element conferring the SSuT phenotype is widely distributed in E. coli from cattle in Washington State. Furthermore, our results indicate that this element is responsible for maintenance of these traits owing to linkage to genetic traits that confer a selective advantage in the intestinal lumens of dairy calves.
机译:长期以来,特定的抗菌素耐药性模式与无关的选择性性状的关联一直与维持人群的抗菌素耐药性有关。以前,我们证明了具有特定抗性模式(对链霉素,磺胺嘧啶和四环素[SSuT]具有抗性)的大肠杆菌菌株在乳牛小肠肠道环境中和存在通常饲喂犊牛的牛奶补充剂的情况下具有选择优势。在本研究中,我们确定了赋予SSuT表型的遗传元件的序列,并表明该元件存在于大肠埃希菌的遗传多样性组中,如通过宏观限制性消化和脉冲场凝胶电泳所评估的那样。在华盛顿州18个不同养牛场的大肠杆菌分离物中也发现了这种元素。通过体外竞争实验,我们进一步证明了来自18个农场中的17个农场的SSuT菌株能够胜过易感菌株。在另一组实验中,我们能够通过电穿孔将抗药性表型转移至大肠杆菌(DH10B)的实验室菌株中,从而使该新菌株在与亲代DH10B菌株的体外竞争中更具竞争力。这些数据表明,赋予SSuT表型的相对较大的遗传元件广泛分布在华盛顿州牛的大肠杆菌中。此外,我们的结果表明,由于与奶牛小肠肠道内腔具有选择性优势的遗传性状相关,该元素负责维持这些性状。

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