Bruant Guillaume, Watt Stephane, Quentin Roland, Rosenau Agnes
Département de Microbiologie Médicale et Moléculaire, Unité de Bactériologie, Centre Hospitalo-Universitaire Bretonneau, 37044 Tours Cedex, France.
J Clin Microbiol. 2003 Aug;41(8):3473-80. doi: 10.1128/JCM.41.8.3473-3480.2003.
Intergenic dyad sequences (IDS) are short repeated elements that have been described for several Haemophilus genomes and for only two other bacterial genera. We developed a repetitive-element sequence-based PCR using an IDS-specific primer as a typing method (IDS-PCR) for nonencapsulated Haemophilus strains and compared this technique with pulsed-field gel electrophoresis (PFGE) of DNA restricted with SmaI. IDS-PCR was rapid, easy to perform, and reproducible, with a high discriminatory capacity for nontypeable Haemophilus influenzae (NTHI) strains. The 69 NTHI strains tested generated 65 different banding patterns. Epidemiologically related strains gave similar or identical fingerprints, and all of the unrelated strains except two showed different patterns. These results were in agreement with those obtained by PFGE. For 20 genital strains usually identified as being biotype IV NTHI and belonging to a cryptic genospecies of Haemophilus with remarkable genetic homogeneity, four bands were significantly present and six bands were significantly absent from the fingerprints. The 20 strains were gathered in 11 closely related profiles, whereas PFGE provided no band when DNA was treated with SmaI. IDS-PCR improved the differentiation previously obtained within this species by ribotyping and multilocus enzyme electrophoresis. Our findings suggest that IDS-PCR is a rapid, reliable, and discriminatory method for typing NTHI strains and is currently the most efficient method for distinguishing strains within the cryptic genospecies of HAEMOPHILUS:
基因间二元序列(IDS)是一种短重复元件,已在几种嗜血杆菌基因组以及仅其他两个细菌属中被描述。我们开发了一种基于重复元件序列的聚合酶链反应(PCR),使用IDS特异性引物作为非包膜嗜血杆菌菌株的分型方法(IDS-PCR),并将该技术与用SmaI酶切的DNA脉冲场凝胶电泳(PFGE)进行比较。IDS-PCR快速、易于操作且可重复,对不可分型流感嗜血杆菌(NTHI)菌株具有高鉴别能力。所测试的69株NTHI菌株产生了65种不同的条带模式。流行病学相关菌株给出相似或相同的指纹图谱,除两株外所有不相关菌株均显示不同模式。这些结果与PFGE获得的结果一致。对于通常被鉴定为生物型IV NTHI且属于具有显著遗传同质性的嗜血杆菌隐性基因种的20株生殖道菌株,指纹图谱中四条带显著存在,六条带显著缺失。这20株菌株聚为11个密切相关的图谱,而当用SmaI处理DNA时PFGE未显示条带。IDS-PCR改进了先前通过核糖体分型和多位点酶电泳在该物种内获得的区分能力。我们的研究结果表明,IDS-PCR是一种快速、可靠且具有鉴别能力的NTHI菌株分型方法,目前是区分嗜血杆菌隐性基因种内菌株的最有效方法。