Laurentiu Benga, Peter M Benten, Eva Engelhardt, Karl Köhrer, Barbara Hueber, Werner Nicklas, Henrik Christensen, Martin Sager
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In all species tested, sequence analysis of the ITS fragments revealed a larger ITS<i><sup>ile+ala</sup></i>, which contained the genes for tRNA<i><sup>Ile(GAU)</sup></i> and tRNA <i><sup>Ala(UGC)</sup></i>, and a smaller ITS<i><sup>glu</sup></i> with the tRNA<i><sup>Glu(UUC)</sup></i> gene. The ITS sequences varied among the 6 species evaluated, displaying identity levels ranging from 62% to 86% for ITS<i><sup>ile+ala</sup></i> and 68% to 90% for ITS<i><sup>glu</sup></i>. Overall, ITS amplification proved to be a reliable method to differentiate among these important <i>Pasteurellaceae</i> species of laboratory rodents. Moreover, the ITS sequence variations recorded here might facilitate the design of probes for specific identification of these species. 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引用次数: 3
摘要
研究了肺肺鼠、黑氏鼠、稀有鼠、ratti鼠和海德堡鼠以及一种与啮齿动物相关的β溶血性巴氏杆菌分类群的内部转录间隔区(ITS),以确定其在实验室啮齿动物中区分的可行性。所分析的6个种显示出种特异性ITS模式,该模式与类型菌株和临床分离株共享,从而可以进行鉴定。然而,在视觉上区分肺肺棘球蚴和鼠棘球蚴的ITS波段是有挑战性的。在所有测试的物种中,ITS片段的序列分析显示,itsil +ala较大,包含tRNAIle(GAU)和tRNA ala (UGC)基因,itsil +ala较小,包含tRNAGlu(UUC)基因。ITS序列在6个物种间存在差异,itsilelala和ITSglu的同源性分别为62% ~ 86%和68% ~ 90%。总的来说,ITS扩增被证明是一种可靠的方法来区分这些重要的实验室啮齿动物巴氏杆菌种。此外,这里记录的ITS序列变化可能有助于设计特异性鉴定这些物种的探针。诊断这些生物到物种水平的能力可以增加我们对其临床意义的理解。
Differentiation Among Rodentibacter Species Based on 16S-23S rRNA Internal Transcribed Spacer Analysis.
The internal transcribed spacer (ITS) regions of Rodentibacter pneumotropicus, R. heylii, R. rarus, R. ratti, and R. heidelbergensis and of a Rodentibacter- related β-hemolytic Pasteurellaceae taxon isolated from laboratory rodents were studied for their feasibility to discriminate among these species. The 6 species analyzed showed species-specific ITS patterns that were shared by the type strains and clinical isolates and that allowed their identification. Nevertheless, differentiating between the ITS band patterns of R. pneumotropicus and R. ratti is visually challenging. In all species tested, sequence analysis of the ITS fragments revealed a larger ITSile+ala, which contained the genes for tRNAIle(GAU) and tRNA Ala(UGC), and a smaller ITSglu with the tRNAGlu(UUC) gene. The ITS sequences varied among the 6 species evaluated, displaying identity levels ranging from 62% to 86% for ITSile+ala and 68% to 90% for ITSglu. Overall, ITS amplification proved to be a reliable method to differentiate among these important Pasteurellaceae species of laboratory rodents. Moreover, the ITS sequence variations recorded here might facilitate the design of probes for specific identification of these species. The ability to diagnose these organisms to the species level could increase our understanding of their clinical significance.
期刊介绍:
Comparative Medicine (CM), an international journal of comparative and experimental medicine, is the leading English-language publication in the field and is ranked by the Science Citation Index in the upper third of all scientific journals. The mission of CM is to disseminate high-quality, peer-reviewed information that expands biomedical knowledge and promotes human and animal health through the study of laboratory animal disease, animal models of disease, and basic biologic mechanisms related to disease in people and animals.