首页> 外文期刊>Clinical and diagnostic laboratory immunology >Oligonucleotide primers designed to differentiate pathogenic pseudomonads on the basis of the sequencing of genes coding for 16S-23S rRNA internal transcribed spacers.
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Oligonucleotide primers designed to differentiate pathogenic pseudomonads on the basis of the sequencing of genes coding for 16S-23S rRNA internal transcribed spacers.

机译:寡核苷酸引物设计用于在编码16S-23S rRNA内部转录间隔区的基因测序的基础上区分致病性假单胞菌。

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Universal primers targeting conserved sequences flanking the 3' end of the 16S and the 5' end of the 23S rRNA genes (rDNAs) were used to amplify the 16S-23S rDNA internal transcribed spacers (ITS) from eight species of pseudomonads which have been associated with human infections. Amplicons from reference strains of Pseudomonas aeruginosa, Pseudomonas cepacia, Pseudomonas gladioli, Pseudomonas mallei, Pseudomonas mendocina, Pseudomonas pickettii, Pseudomonas pseudomallei, and Xanthomonas maltophilia were cloned from each species, and sequence analysis revealed a total of 19 distinct ITS regions, each defining a unique sequevar with ITS sizes ranging from 394 (P. cepacia) to 641 (P. pseudomallei) bp. Five distinct ITS sequevars in P. cepacia, four in P. mendocina, three in P. aeruginosa, two each in P. gladioli and P. pseudomallei, and one each in P. mallei, P. pickettii, and X. maltophilia were identified. With the exception of one P. cepacia ITS, all ITS regions contained potential tRNA sequences for isoleucine and/or alanine. On the basis of these ITS sequence data, species-specific oligonucleotide primers were designed to differentiate P. aeruginosa, P. cepacia, and P. pickettii. The specificities of these primers were investigated by testing 220 clinical isolates, including 101 strains of P. aeruginosa, 103 strains of P. cepacia, and 16 strains of P. pickettii, in addition to 24 American Type Culture Collection (ATCC) Pseudomonas strains. The results showed that single primer pairs directed at particular ITSs were capable of specifically identifying the ATCC reference strains and all of the clinical isolates of P. aeruginosa and P. pickettii, but this was not the case with several ITS-based primer pairs tested for P. cepacia. This pathogen, on the other hand, could be specifically identified by primer pairs directed against the 23S rDNA.
机译:使用针对16S 3S末端和23S rRNA基因(rDNA)5'末端侧翼的保守序列的通用引物从8种假单胞菌中扩增出16S-23S rDNA内部转录间隔区(ITS)人类感染。从每种物种中克隆了来自每个物种的19个不同区域的铜绿假单胞菌,洋葱假单胞菌,glaseoli假单胞菌,Malletoli假单胞菌,mendosina假单胞菌,pakeudomonas pickettii,Pseudomonas pseudomallei和Xanthomonas嗜麦芽胞杆菌的参考菌株的扩增子。 ITS序列大小从394(P. cepacia)到641(P. pseudomallei)bp的独特序列。鉴定出在洋葱伯氏假单胞菌中有五个不同的ITS后代,在薄荷果假单胞菌中有四个,铜绿假单胞菌中有三个,在剑兰假单胞菌和假苹果假单胞菌中分别有两个,在玛氏假单胞菌,p。pickettii和X. Maltophilia中各一个。 。除了一种洋葱伯克霍尔德菌ITS,所有ITS区域均含有异亮氨酸和/或丙氨酸的潜在tRNA序列。根据这些ITS序列数据,设计了物种特异性寡核苷酸引物来区分铜绿假单胞菌,洋葱状假单胞菌和p。pickettii。通过测试220种临床分离株,包括24种美国典型培养物保藏中心(ATCC)假单胞菌菌株,对220种临床分离株进行了研究,这些分离株包括101株铜绿假单胞菌,103株洋葱假单胞菌和16株皮氏假单胞菌。结果表明,针对特定ITS的单个引物对能够特异性鉴定ATCC参考菌株以及铜绿假单胞菌和Pickettii的所有临床分离株,但是对于测试的几个基于ITS的引物对却并非如此。洋葱另一方面,可以通过针对23S rDNA的引物对特异性鉴定该病原体。

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