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首页> 外文期刊>Archives of Microbiology >Phenotypic and genotypic characterization of tetracycline and minocycline resistance in Clostridium perfringens
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Phenotypic and genotypic characterization of tetracycline and minocycline resistance in Clostridium perfringens

机译:产气荚膜梭菌四环素和米诺环素抗性的表型和基因型特征

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The aim of this study was to determine the incidence of tetracycline resistance and the prevalence of tetracycline-resistance genes in strains of Clostridium perfringens isolated from different sources between 1994 and 2005. Susceptibility to tetracycline and minocycline in strains from humans (35 isolates), chickens (15 isolates), food (21 isolates), soil (16 isolates) and veterinary sources (6 isolates) was determined, and tetracycline-resistance genes were detected. Resistance was most common in strains isolated from chickens, followed by those from soils, clinical samples and foods. The most highly resistant strains were found among clinical and food isolates. tetA(P) was the most common resistance gene, and along with tetB(P) was found in all resistant strains and some sensitive strains. One tetracycline-resistant food isolate had an intact tet(M) gene. However, PCR fragments of 0.4 or 0.8 kb with high degrees of identity to parts of the tet(M) sequences of other bacteria were found, mainly in clinical isolates, and often in isolates with tetB(P). No correlation between level of sensitivity to tetracycline or minocycline and the presence of tetA(P), tetB(P) or part of tet(M) was found. The presence of part of tet(M) in some strains of C. perfringens containing tetB(P) may have occurred by recent gene transfer.
机译:这项研究的目的是确定1994年至2005年间从不同来源分离的产气荚膜梭状芽胞杆菌菌株中四环素抗性的发生率和四环素抗性基因的发生率。人(35株),鸡的菌株对四环素和米诺环素的敏感性(15个分离株),食品(21个分离株),土壤(16个分离株)和兽医来源(6个分离株)被测定,并检测到四环素抗性基因。抵抗力在从鸡中分离出的菌株中最为常见,其次是从土壤,临床样品和食品中分离出的菌株。在临床和食品分离株中发现了耐药性最高的菌株。 tetA(P)是最常见的抗性基因,并且在所有抗性菌株和某些敏感菌株中都发现了tetB(P)。一种耐四环素的食品分离株具有完整的tet(M)基因。但是,发现0.4或0.8 kb的PCR片段与其他细菌的tet(M)序列的部分具有高度同一性,主要是在临床分离株中,并且经常是在带有tetB(P)的分离株中。在对四环素或米诺环素的敏感性水平与tetA(P),tetB(P)或部分tet(M)的存在之间没有相关性。最近的基因转移可能已经在某些含有tetB(P)的产气荚膜梭菌菌株中出现了tet(M)的一部分。

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