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首页> 外文期刊>BMC Microbiology >Antibiotic resistance, virulence determinants and production of biogenic amines among enterococci from ovine, feline, canine, porcine and human milk
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Antibiotic resistance, virulence determinants and production of biogenic amines among enterococci from ovine, feline, canine, porcine and human milk

机译:来自绵羊,猫科动物,猪,猪和人乳的肠球菌中肠球菌中生物胺的抗生素抗性,毒力决定因素和生物胺的生产

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Background Recent studies have shown that mammalian milk represents a continuous supply of commensal bacteria, including enterococci. The objectives of this study were to evaluate the presence of enterococci in milk of different species and to screen them for several genetic and phenotypic traits of clinical significance among enterococci. Results Samples were obtained from, at least, nine porcine, canine, ovine, feline and human healthy hosts. Enterococci could be isolated, at a concentration of 1.00?×?102 -1.16?×?103?CFU/ml, from all the porcine samples and, also from 85, 50, 25 and 25% of the human, canine, feline and ovine ones, respectively. They were identified as Enterococcus faecalis, Enterococcus faecium, Enterococcus hirae, Enterococcus casseliflavus and Enterococcus durans. Among the 120 initial enterococcal isolates, 36 were selected on the basis of their different PFGE profiles and further characterized. MLST analysis revealed a wide diversity of STs among the E. faecalis and E. faecium strains, including some frequently associated to hospital infections and novel STs. All the E. faecalis strains possessed some of the potential virulence determinants (cad, ccf, cob, cpd, efaAfs, agg2, gelE, cylA, espfs) assayed while the E. faecium ones only harboured the efaAfm gene. All the tested strains were susceptible to tigecycline, linezolid and vancomycin, and produced tyramine. Their susceptibility to the rest of the antimicrobials and their ability to produce other biogenic amines varied depending on the strain. Enterococci strains isolated from porcine samples showed the widest spectrum of antibiotic resistance. Conclusions Enterococci isolated from milk of different mammals showed a great genetic diversity. The wide distribution of virulence genes and/or antibiotic resistance among the E. faecalis and E. faecium isolates indicates that they can constitute a reservoir of such traits and a risk to animal and human health.
机译:背景技术最近的研究表明,哺乳动物牛奶代表了连续的共生细菌供应,包括肠球菌。本研究的目的是评估肠道内牛奶的存在,并筛选肠球菌之间的几种遗传和表型特性。结果是从至少九猪,犬,卵巢,猫和人健康宿主获得的样品。肠球菌可以被隔离,浓度为1.00?×10 2 -1.16?×10 3 ?cfu / ml,来自所有猪样本,也来自85,50,25%和25%的人,犬,猫和绵羊1。它们被鉴定为肠球菌粪便,肠球菌粪便,肠球菌Hirae,肠球菌Casseliflavus和肠球菌杜兰斯。在120个初始肠球菌分离物中,基于其不同的PFGE型材选择36个并进一步表征。 MLST分析揭示了E.粪群和粪便菌株中的广泛多样性,包括与医院感染和新型STS经常相关。所有E.粪便菌株都具有一些潜在的毒力决定因素(CAD,CCF,COB,CPD,EFAA FS ,AGG2,GELE,CYLA,ESP FS )同时测定E. FAECIUM INER仅覆盖EFAA FM 基因。所有测试的菌株均易于替霉素,线红外和万古霉素,并产生酪胺。它们对其余抗微生物的易感性及其产生根据菌株而变化的其他生物胺的能力。从猪样品中分离的肠球菌菌株显示出最宽的抗生素抗性。结论来自不同哺乳动物牛奶中分离的肠球菌表现出了良好的遗传多样性。毒力基因和/或抗生素抗性的广泛分布和/或E.粪便分离株中的抗生素抗性表明它们可以构成这种特征的储层和动物和人类健康的风险。

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