首页> 外文期刊>Journal of Clinical Microbiology >DNA amplification and restriction endonuclease analysis for differentiation of 12 species and taxa of Nocardia, including recognition of four new taxa within the Nocardia asteroides complex.
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DNA amplification and restriction endonuclease analysis for differentiation of 12 species and taxa of Nocardia, including recognition of four new taxa within the Nocardia asteroides complex.

机译:DNA扩增和限制性内切核酸酶分析,用于区分诺卡氏菌的12种和分类单元,包括识别诺卡氏体小行星复合体中的四个新分类单元。

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Nineteen reference and 156 clinical strains of the genus Nocardia belonging to 12 taxonomic groups were studied for restriction fragment length polymorphism (RFLP) by using an amplified 439-bp segment of the 65-kDa heat shock protein gene. Of 30 restriction endonucleases, digestion with MspI and then digestion with BsaHI produced RFLP band patterns which separated all 12 groups except N. asteroides type IV from 6 of 12 N. transvalensis isolates and N. carnea from the N. asteroides type VI isolates. Commonly encountered species such as N. nova, N. farcinica, N. brasiliensis sensu stricto, and N. otitidiscaviarum were easily separated. Each taxon resulted in a single RFLP band pattern that included > or = 96% of all biochemically grouped isolates for 9 of 12 taxa with MspI and for 8 of 12 taxa with BsaHI. With the use of both patterns, only 6 of 175 (3.4%) isolates failed to fit the biochemically defined group patterns. These studies provide the first evidence for the separate identities of four antibiogram-defined (but currently unnamed) groups within the N. asteroides complex (types I, II, IV, and VI) and the presence of two subgroups within N. transvalensis. They also provide genotypic evidence for the separate identities of N. nova and N. farcinica. The lack of BstEII recognition sites in amplicons obtained from nocardiae provides a simple and rapid method for the differentiation of nocardiae from mycobacteria. DNA amplification with RFLP analysis is the first rapid method that distinguishes all clinically significant taxa and recognized species within the genus Nocardia.
机译:通过使用65 kDa热休克蛋白基因的439 bp扩增片段,研究了属于12个分类学组的19个参考诺卡氏菌和156个临床菌株的限制性片段长度多态性(RFLP)。在30种限制性核酸内切酶中,先用MspI消化,然后再用BsaHI消化,即可产生RFLP条带图谱,该谱带将12种跨谷氨酸N.小球藻分离株中的IV型小球藻和VI型小球藻分离出来的所有12组分离出来。常见的物种如新星猪笼草,法西猪笼草,巴西柔毛猪笼草和耳鼻吸虫猪笼草很容易分离。每个分类单元产生单个RFLP谱带模式,包括MspI的12个分类单元中的9个和BsaHI的12个分类单元中的8个的所有生化分组分离株的> 96%。使用这两种模式,只有175种中的6种(3.4%)未能符合生物化学定义的组模式。这些研究为小行星猪笼草复合体(I,II,IV和VI型)中四个抗菌素定义的(但目前未命名)组的独立身份以及跨猪笼草中的两个亚组的存在提供了第一个证据。他们还为新星猪笼草和法氏猪笼草的独立身份提供了基因型证据。从诺卡氏菌获得的扩增子中缺乏BstEII识别位点,为区分诺卡氏菌与分枝杆菌提供了一种简单而快速的方法。用RFLP分析进行DNA扩增是第一个快速的方法,可以区分所有具有临床意义的分类群和诺卡氏菌属中公认的物种。

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