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首页> 外文期刊>Journal of Clinical Microbiology >Polymorphic Internal Transcribed Spacer Region 1 DNA Sequences Identify Medically Important Yeasts
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Polymorphic Internal Transcribed Spacer Region 1 DNA Sequences Identify Medically Important Yeasts

机译:多态性内部转录间隔区1 DNA序列确定医学上重要的酵母。

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Species-specific polymorphisms in the noncoding internal transcribed spacer 2 (ITS2) region of the rRNA operon provide accurate identification of clinically significant yeasts. In this study, we tested the hypothesis that ITS1 noncoding regions contain diagnostically useful alleles. The length of ITS1 region PCR products amplified from 40 species (106 clinical strains, 5 reference strains, and 30 type strains) was rapidly determined with single-base precision by automated capillary electrophoresis. Polymorphisms in the PCR product length permitted 19 species to be distinguished by ITS1 alone, compared with 16 species distinguished by using only ITS2. However, combination of both ITS alleles permitted identification of 30 species (98% of clinical isolates). The remaining 10 species with PCR products of similar sizes contained unique ITS alleles distinguishable by restriction enzyme analysis. DNA sequence analysis of amplified ITS1 region DNA from 79 isolates revealed species-specific ITS1 alleles for each of the 40 pathogenic species examined. This provided identification of unusual clinical isolates, and 53 diagnostic ITS1 sequences were deposited in GenBank. Phylogenetic analyses based on ITS sequences showed a similar overall topology to 26S rRNA gene-based trees. However, different species with identical 26S sequences contained distinct ITS alleles that provided species identification with strong statistical support. Together, these data indicate that the analysis of ITS polymorphisms can reliably identify 40 species of clinically significant yeasts and that the capacity for identifying potentially new pathogenic species by using this database holds significant promise.
机译:rRNA操纵子的非编码内部转录间隔区2(ITS2)区域中的物种特异性多态性可提供对临床上重要酵母的准确鉴定。在这项研究中,我们测试了ITS1非编码区包含诊断有用的等位基因的假设。通过自动毛细管电泳以单碱基精度快速确定了从40种(106个临床菌株,5个参考菌株和30型菌株)扩增的ITS1区PCR产物的长度。 PCR产物长度的多态性使得仅通过ITS1可以区分19种,而仅通过ITS2可以区分16种。然而,两个ITS等位基因的组合允许鉴定30种(临床分离株的98%)。其余10个具有相似大小PCR产物的物种包含通过限制酶分析可区分的独特ITS等位基因。来自79个分离株的ITS1扩增区域DNA的DNA序列分析揭示了所检查的40种致病物种中每种物种的ITS1等位基因。这提供了对异常临床分离物的鉴定,并且53条诊断ITS1序列已保存在GenBank中。基于ITS序列的系统发育分析显示,其总体拓扑与基于26S rRNA基因的树相似。但是,具有相同26S序列的不同物种包含不同的ITS等位基因,为物种鉴定提供了有力的统计支持。这些数据加在一起表明ITS多态性分析可以可靠地鉴定出40种具有临床意义的酵母,并且利用该数据库鉴定潜在的新病原体的能力具有重大前景。

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