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本文引用的文献

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Identification of Mycobacterium species by PCR-restriction fragment length polymorphism analyses using fluorescence capillary electrophoresis.利用荧光毛细管电泳通过聚合酶链反应-限制性片段长度多态性分析鉴定分枝杆菌菌种。
J Clin Microbiol. 1999 Nov;37(11):3688-92. doi: 10.1128/JCM.37.11.3688-3692.1999.
2
Identification of medically relevant Trichosporon species based on sequences of internal transcribed spacer regions and construction of a database for Trichosporon identification.基于内转录间隔区序列鉴定医学相关的毛孢子菌属物种并构建毛孢子菌鉴定数据库。
J Clin Microbiol. 1999 Jun;37(6):1985-93. doi: 10.1128/JCM.37.6.1985-1993.1999.
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Rapid identification of fungi by using the ITS2 genetic region and an automated fluorescent capillary electrophoresis system.利用ITS2基因区域和自动荧光毛细管电泳系统快速鉴定真菌。
J Clin Microbiol. 1999 Jun;37(6):1846-51. doi: 10.1128/JCM.37.6.1846-1851.1999.
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Molecular diagnosis and epidemiology of fungal infections.真菌感染的分子诊断与流行病学
Med Mycol. 1998;36 Suppl 1:249-57.
5
Identification and phylogeny of ascomycetous yeasts from analysis of nuclear large subunit (26S) ribosomal DNA partial sequences.通过分析核大亚基(26S)核糖体DNA部分序列对子囊菌酵母进行鉴定和系统发育分析。
Antonie Van Leeuwenhoek. 1998 May;73(4):331-71. doi: 10.1023/a:1001761008817.
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Efficacy of API 20C and ID 32C systems for identification of common and rare clinical yeast isolates.API 20C和ID 32C系统用于鉴定常见和罕见临床酵母分离株的效能。
J Clin Microbiol. 1998 Nov;36(11):3396-8. doi: 10.1128/JCM.36.11.3396-3398.1998.
7
Rapid identification of Candida species with species-specific DNA probes.利用种特异性DNA探针快速鉴定念珠菌种类。
J Clin Microbiol. 1998 Nov;36(11):3260-5. doi: 10.1128/JCM.36.11.3260-3265.1998.
8
Detection of Candida dubliniensis in oropharyngeal samples from human immunodeficiency virus-infected patients in North America by primary CHROMagar candida screening and susceptibility testing of isolates.通过初筛CHROMagar念珠菌培养基及对分离株进行药敏试验检测北美人类免疫缺陷病毒感染患者口咽样本中的都柏林念珠菌。
J Clin Microbiol. 1998 Oct;36(10):3007-12. doi: 10.1128/JCM.36.10.3007-3012.1998.
9
Prevalence of Candida dubliniensis isolates in a yeast stock collection.酵母菌种保藏库中都柏林念珠菌分离株的流行情况。
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10
Rapid identification of Candida dubliniensis by indirect immunofluorescence based on differential localization of antigens on C. dubliniensis blastospores and Candida albicans germ tubes.基于都柏林念珠菌芽生孢子和白色念珠菌芽管上抗原的差异定位,通过间接免疫荧光快速鉴定都柏林念珠菌。
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利用基于PCR的rRNA基因内部转录间隔区2区域DNA序列多态性检测来鉴定医学上重要的酵母。

Identification of medically important yeasts using PCR-based detection of DNA sequence polymorphisms in the internal transcribed spacer 2 region of the rRNA genes.

作者信息

Chen Y C, Eisner J D, Kattar M M, Rassoulian-Barrett S L, LaFe K, Yarfitz S L, Limaye A P, Cookson B T

机构信息

Departments of Laboratory Medicine, Division of Bioinformatics, University of Washington, Seattle, Washington, USA.

出版信息

J Clin Microbiol. 2000 Jun;38(6):2302-10. doi: 10.1128/JCM.38.6.2302-2310.2000.

DOI:10.1128/JCM.38.6.2302-2310.2000
PMID:10834993
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC86787/
Abstract

Identification of medically relevant yeasts can be time-consuming and inaccurate with current methods. We evaluated PCR-based detection of sequence polymorphisms in the internal transcribed spacer 2 (ITS2) region of the rRNA genes as a means of fungal identification. Clinical isolates (401), reference strains (6), and type strains (27), representing 34 species of yeasts were examined. The length of PCR-amplified ITS2 region DNA was determined with single-base precision in less than 30 min by using automated capillary electrophoresis. Unique, species-specific PCR products ranging from 237 to 429 bp were obtained from 92% of the clinical isolates. The remaining 8%, divided into groups with ITS2 regions which differed by </=2 bp in mean length, all contained species-specific DNA sequences easily distinguishable by restriction enzyme analysis. These data, and the specificity of length polymorphisms for identifying yeasts, were confirmed by DNA sequence analysis of the ITS2 region from 93 isolates. Phenotypic and ITS2-based identification was concordant for 427 of 434 yeast isolates examined using sequence identity of >/=99%. Seven clinical isolates contained ITS2 sequences that did not agree with their phenotypic identification, and ITS2-based phylogenetic analyses indicate the possibility of new or clinically unusual species in the Rhodotorula and Candida genera. This work establishes an initial database, validated with over 400 clinical isolates, of ITS2 length and sequence polymorphisms for 34 species of yeasts. We conclude that size and restriction analysis of PCR-amplified ITS2 region DNA is a rapid and reliable method to identify clinically significant yeasts, including potentially new or emerging pathogenic species.

摘要

采用目前的方法鉴定与医学相关的酵母既耗时又不准确。我们评估了基于聚合酶链反应(PCR)检测核糖体RNA基因内部转录间隔区2(ITS2)区域的序列多态性,以此作为真菌鉴定的一种方法。我们检测了代表34种酵母的401株临床分离株、6株参考菌株和27株模式菌株。通过自动毛细管电泳,在不到30分钟的时间内以单碱基精度确定了PCR扩增的ITS2区域DNA的长度。92%的临床分离株获得了长度在237至429 bp之间的独特的、物种特异性的PCR产物。其余8%分为平均长度相差≤2 bp的ITS2区域组,所有这些组均包含通过限制性酶切分析易于区分的物种特异性DNA序列。对93株分离株的ITS2区域进行DNA序列分析,证实了这些数据以及长度多态性用于鉴定酵母的特异性。使用≥99%的序列同一性对434株酵母分离株中的427株进行检测,基于表型和ITS2的鉴定结果一致。7株临床分离株的ITS2序列与其表型鉴定结果不一致,基于ITS2的系统发育分析表明在红酵母属和念珠菌属中可能存在新的或临床上不常见的物种。这项工作建立了一个初始数据库,该数据库通过400多株临床分离株验证了34种酵母的ITS2长度和序列多态性。我们得出结论,PCR扩增的ITS2区域DNA的大小和限制性分析是一种快速可靠的方法,可用于鉴定具有临床意义的酵母,包括潜在的新的或正在出现的致病物种。