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首页> 外文期刊>Veterinary Microbiology >Identification of macrolide- and rifampicin-resistant Rhodococcus equi in environmental samples from equine breeding farms in central Kentucky during 2018
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Identification of macrolide- and rifampicin-resistant Rhodococcus equi in environmental samples from equine breeding farms in central Kentucky during 2018

机译:2018年中央肯塔基州马养殖场的环境样品中大茂酒和利福平抗性rhodococcus equi的鉴定

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Rhodococcus equi causes severe pneumonia in foals and is most often recognized in people as an opportunistic pathogen. Longitudinal studies examining antimicrobial-resistant R. equi from environmental samples are lacking. We hypothesized that antimicrobial-resistant R. equi would be detectable in the ground (pasture soil or stall bedding) and air at breeding farms with previous documentation of foals infected with resistant isolates, and that concentrations of resistant isolates would increase over time during the foaling season. In this prospective cohort study, ground and air samples were collected from stalls and paddocks in January, March, May and July of 2018 at 10 horse-breeding farms with history of foal pneumonia attributed to macrolide- or Rifampicin-resistant R. equi. Environmental samples were cultured in the presence and absence of macrolides and Rifampicin to select for resistant organisms. Data were analyzed with linear mixed-effects and Hurdle models. Concentrations of total R. equi in bedding or air of stalls were significantly (P 0.05) higher in January than other months. The proportion of resistant R. equi in soil samples from paddocks was significantly (P 0.05) higher than stall bedding during all months. For each month, air samples from paddocks had a significantly (P 0.05) higher proportion of resistant isolates than those from stalls. Fifty-five percent of resistant soil isolates and 34% of resistant air isolates were considered virulent by identification of the vapA gene. Concentrations of resistant R. equi isolates did not increase over time during the foaling season. Antimicrobial-resistant R. equi can persist in the environment at farms with a history of pneumonia caused by resistant R. equi infections, and exposure to resistant isolates in paddocks and stalls appears stable during the foaling season. Resistant isolates in the environment not only pose a risk for disease but also can serve as a repository for dissemination of resistance genes.
机译:rhodococcus equi导致粪便中的严重肺炎,通常是人们作为机会理性病原体的认可。纵向研究缺乏从环境样品中检查抗菌抗菌抗菌抗体。我们假设抗菌抗菌抗菌抗菌抗菌抗菌抗菌抗菌剂抗菌抗菌抗菌剂抗菌剂抗菌抗菌剂耐药性抗菌耐药性。在养殖和抗性分离物中感染的新鲜农场的空气中,并且耐药隔离浓度在发泡过程中会随着时间的推移而增加季节。在这项未来的队列研究中,2018年1月,5月,5月,5月,5月,5月,5月,5月,7月和牧场,在2018年5月和牧场,归因于大溴化虫或利福平抗性R. Equi的历史,从摊位和围场收集了地面和空气样本。在存在和不存在大溴化硼和利福平的存在下培养环境样品,以选择抗性生物。用线性混合效应和障碍模型分析数据。在床上用品中的浓度R. Equi的浓度显着(P& 0.05)比其他几个月更高。在所有月内,来自围堆的土壤样品中的抗性R的比例在围草中的土壤样品中的土壤样品显着高(P <0.05)。对于每个月,来自围桨的空气样品显着(p& 0.05)的抗性分离物比例比来自摊位的显着比例的抗性分离物。通过鉴定VAPA基因,55%的抗性土壤分离物和34%的抗性空气分离物被认为是毒力。抗性R. Equi分离物的浓度在发泡季节期间不会随着时间的推移而增加。抗菌抗性R. Equi可以在患有肺炎历史的农场持续存在抗性R.抗性R. Equi感染,并且在发泡季节期间暴露在围杆和摊位中的抗性隔离物看起来稳定。环境中的抗性分离物不仅对疾病的风险构成了疾病的风险,而且可以用作用于传播抗性基因的储存库。

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