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来自意大利两个圈养繁殖场所的雪貂(Mustela putorius furo)的粪便微生物群和抗生素耐药性。

Fecal microbiota and antibiotic resistance in ferrets (Mustela putorius furo) from two captive breeding facilities in Italy.

作者信息

Nizza Sandra, Rando Francesca, Fiorito Filomena, Pagnini Ugo, Iovane Giuseppe, De Martino Luisa

机构信息

Department of Veterinary Medicine and Animal Production, University of Naples 'Federico II', Via F. Delpino 1, 80137 Naples, Italy.

Department of Veterinary Medicine and Animal Production, University of Naples 'Federico II', Via F. Delpino 1, 80137 Naples, Italy.

出版信息

Res Vet Sci. 2014 Jun;96(3):426-8. doi: 10.1016/j.rvsc.2014.03.015. Epub 2014 Mar 28.

Abstract

The microbiota of the intestinal tract plays important roles in the overall health, productivity and well-being of the animals. We have characterized the intestinal microbiota of the ferret because its human cohabitation may increase the possibility of new zoonosis. The presence of anaerobic and microaerophilic bacteria has been evaluated in fresh fecal specimens of 40 ferrets in apparently good health. The bacteria most frequently isolated were Clostridium acetobutylicum (25/40 samples, 62.5%; 95% confidence interval [CI]: 45.81-76.83%) and Helicobacter spp. (16/40 samples, 40.0%; 95% CI: 25.28-56.61%), as anaerobic and microaerophilic bacteria, respectively. The Kirby-Bauer disc-diffusion method showed penicillin, streptomycin and vancomycin resistances in high percentages (>80%) of the bacterial isolates, both in anaerobic and microaerophilic groups. Furthermore, the microaerophilic-bacteria group exhibited a significantly higher antibiotic-resistance profile compared to that of anaerobic-bacteria group. The presence of antibiotic-resistant microorganisms in the microbiota of the ferret gastrointestinal tract is a great concern for public health.

摘要

肠道微生物群对动物的整体健康、生产力和福祉起着重要作用。我们对雪貂的肠道微生物群进行了特征分析,因为它与人类同居可能会增加新的人畜共患病的可能性。我们评估了40只看起来健康状况良好的雪貂新鲜粪便样本中厌氧和微需氧细菌的存在情况。最常分离出的细菌分别是作为厌氧菌的丙酮丁醇梭菌(25/40个样本,62.5%;95%置信区间[CI]:45.81 - 76.83%)和作为微需氧菌的螺杆菌属(16/40个样本,40.0%;95%CI:25.28 - 56.61%)。Kirby - Bauer纸片扩散法显示,在厌氧和微需氧菌组中,高比例(>80%)的细菌分离株对青霉素、链霉素和万古霉素耐药。此外,微需氧菌组的抗生素耐药性特征明显高于厌氧菌组。雪貂胃肠道微生物群中存在抗生素耐药微生物是公共卫生的一大担忧。

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