不同动物临床标本中化脓性真链球菌的药敏及毒力相关基因的测定。

O Gulaydin, C Kayikci, A Gulaydin
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引用次数: 0

摘要

本研究对从牛、绵羊和山羊不同疾病标本中分离的32株化脓性真佩菌进行了检测。采用E-test法测定菌株对10种抗菌素的药敏,并测定其MIC值。利用基因特异性引物,采用PCR方法确定了与化脓性芽孢杆菌耐药性或毒力相关的基因。本研究中所有分离株均对青霉素和头孢菌素敏感。菌株对链霉素(56.25%)和四环素(53.12%)的耐药率最高,MIC90值分别为100 ~ 256 μg/ml和12 μg/ml。在对大环内酯类抗菌素耐药的10株菌株中,有8株(80%)发现ermX基因阳性。在20株氨基糖苷耐药菌株中,aadA1、aadA9、strA-strB和aac(6′)-aph(2′)基因分别检测到5株(25%)、14株(70%)、7株(35%)和1株(5%)。检测菌株毒力相关基因时,大多数菌株检测到nanP(93.75%)、fimA(93.75%)和plo(90.62%)基因。cbpA基因在所有分离株中均为阴性,fimG基因在少数分离株中检测到(15.62%)。结论化脓性乳杆菌应考虑对链霉素和四环素的耐药。此外,nanP、fimA和plo基因可能在感染的发病机制中起重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Determination of antimicrobial susceptibility and virulence-related genes of Trueperella pyogenes strains isolated from various clinical specimens in animals.

In this study, a total of 32 Trueperella pyogenes strains isolated from different disease specimens in cattle, sheep and goats were examined. Antimicrobial susceptibility of the isolates to 10 antimicrobials were determined using the E-test method and MIC values of the antimicrobials were investigated. The genes that play a role in the antimicrobial resistance or virulence of T. pyogenes were determined by PCR using gene specific primers. In the study, all the isolates were susceptible to penicillin and cephalosporin. The highest resistance rate in the isolates was determined against streptomycin (56.25%) and tetracycline (53.12%) and MIC90 values for these antimicrobials were found to be >256 μg/ml and 12 μg/ml, respectively. The ermX gene was found to be positive in 8 (80%) of 10 isolates that were resistant to macrolide group antimicrobials. Among 20 aminoglycoside resistant isolates, aadA1, aadA9, strA-strB, and aac(6')-aph(2'') genes were determined in 5 (25%), 14 (70%), 7 (35%) and 1 (5%) of the isolates, respectively. When the presence of virulence-related genes in the isolates was examined, nanP (93.75%), fimA (93.75%) and plo (90.62%) genes were detected in the majority of the isolates. While the cbpA gene was negative in all isolates, the fimG gene was found in a limited number of the isolates (15.62%). It was concluded that streptomycin and tetracycline resistance should be considered in T. pyogenes isolates. Also, nanP, fimA and plo genes may have an important role in the pathogenesis of the infections.

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