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首页> 外文期刊>Journal of Clinical Microbiology >Recognition of a Nocardia transvalensis complex by resistance to aminoglycosides, including amikacin, and PCR-restriction fragment length polymorphism analysis.
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Recognition of a Nocardia transvalensis complex by resistance to aminoglycosides, including amikacin, and PCR-restriction fragment length polymorphism analysis.

机译:通过对氨基糖苷类药物(包括丁胺卡那霉素)的耐药性识别跨水诺卡氏菌复合物,并进行PCR限制性片段长度多态性分析。

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Amikacin resistance, rare among nocardiae, was observed in 58 clinical isolates of nocardiae. All of these isolates hydrolyzed hypoxanthine, and 75 to 100% utilized citrate, D-galactose, and D-trehalose as sole carbon sources. Based on utilization of I-erythritol, D-glucitol, i-myo-inositol, D-mannitol, and ribitol and susceptibility to amoxicillin-clavulanic acid, the 58 isolates were separable into four groups. One group was negative for I-erythritol and ribitol and included all the isolates belonging to Nocardia asteroides complex antibiogram type IV. The remaining three groups were positive for I-erythritol and ribitol and were grouped within Nocardia transvalensis. The group that included the type strain was designated N. transvalensis sensu stricto, and the other two groups were designated new taxons 1 and 2. PCR-restriction fragment length polymorphism (RFLP) analysis of a 439-bp segment of the 65-kDa heat shock protein gene with XhoI and HinfI produced identical patterns for 53 (91%) and 58 (100%) isolates, respectively, and differentiated them from all other Nocardia taxa. NarI- and HaeIII-derived RFLP patterns clearly differentiated each of the four biochemically defined taxa. These four groups were also distinguishable by using the chromogenic substrates in Dade MicroScan test panels. By high-performance liquid chromatography, these isolates exhibited the same unique mycolic acid-ester elution patterns that differed from those of all other clinically significant nocardiae. Gas-liquid chromatographic analysis of fatty acids also produced similar patterns for all isolates that distinguished them from all other Nocardia taxa, but did not differentiate the four taxa within the complex. We propose the designation N. transvalensis complex for these four groups of nocardiae, pending further genetic evaluation.
机译:在58种诺卡氏菌临床分离株中观察到阿米卡星耐药,在诺卡氏菌中罕见。所有这些分离物都水解了次黄嘌呤,其中75%至100%利用柠檬酸盐,D-半乳糖和D-海藻糖作为唯一的碳源。根据I-赤藓糖醇,D-葡萄糖醇,I-肌醇,D-甘露糖醇和核糖醇的利用以及对阿莫西林-克拉维酸的敏感性,将58个分离株分为4组。一组对I-赤藓糖醇和核糖醇呈阴性,并包括所有属于诺卡氏小行星复合体IV谱的分离株。其余三组对I-赤藓糖醇和核糖醇呈阳性,并被归入跨谷诺卡氏菌内。包括该类型毒株的组被命名为transvalensis sensu stricto,其他两组被命名为新的分类单元1和2。PCR限制性片段长度多态性(RFLP)分析对65 kDa热的439 bp片段XhoI和HinfI的休克蛋白基因分别产生了53个(91%)和58个(100%)分离株相同的模式,并将它们与所有其他诺卡氏菌分类区分开。 NarI和HaeIII衍生的RFLP模式清楚地区分了四种生物化学定义的类群。通过使用Dade MicroScan测试面板中的生色底物也可以区分这四个组。通过高效液相色谱法,这些分离物表现出与所有其他临床上重要的诺卡氏菌相同的独特的霉菌酸-酯洗脱模式。脂肪酸的气液色谱分析还对所有分离物产生了相似的模式,从而将它们与所有其他诺卡氏菌分类区分开,但没有区分复合物中的四个分类群。我们提议将这四类诺卡氏菌命名为N. transvalensis复合物,有待进一步的遗传评估。

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