Department of Laboratory Medicine, Seoul National University College of Medicine, Seoul 110-799, Republic of Korea.
Department of Laboratory Medicine, Seoul National University Bundang Hospital, Seongnam 463-707, Republic of Korea.
J Med Microbiol. 2011 Apr;60(Pt 4):492-499. doi: 10.1099/jmm.0.020768-0. Epub 2011 Jan 6.
Raoultella spp. have recently been separated from the genus Klebsiella based on their molecular characteristics. It was discovered that Raoultella ornithinolytica can be misidentified as Klebsiella oxytoca by commonly used phenotypic identification systems. Therefore, this study evaluated the ability of three phenotypic systems to identify R. ornithinolytica compared with the genotypic methods sequence-specific primer PCR (SSP-PCR), 16S rRNA gene sequence analysis using the MicroSeq 500 system16S rDNA bacterial identification system or comparison with GenBank sequences using blast. The phenotypic systems examined in this study were the VITEK 2 GN ID card, the MicroScan Neg Combo 32 panel and API 20E. The SSP-PCR panel was able to distinguish the R. ornithinolytica reference strain from other Raoultella spp. and K. oxytoca. Of the 27 isolates identified as R. ornithinolytica by SSP-PCR, VITEK 2 identified all of them as R. ornithinolytica. MicroScan and API identified 25 isolates (92.6%) and 24 isolates (88.9%) as K. oxytoca, respectively. These isolates were ornithine decarboxylase (ODC) negative in all three phenotypic systems. MicroSeq 500 identified 24 isolates (88.9%) as R. ornithinolytica, whereas GenBank identification was heterogeneous. Of the 68 isolates identified as K. oxytoca by SSP-PCR, 66 isolates (97.1%) were identified as K. oxytoca by VITEK 2, MicroScan and API. MicroScan and API require additional biochemical tests to differentiate between ODC-negative R. ornithinolytica and K. oxytoca.
最近,根据分子特征,将罗尔氏菌属从克雷伯氏菌属中分离出来。研究发现,普遍使用的表型鉴定系统可能会将鸟氨酸罗尔氏菌误鉴定为产酸克雷伯氏菌。因此,本研究评估了三种表型系统与基因型方法(序列特异性引物 PCR(SSP-PCR)、使用 MicroSeq 500 系统的 16S rRNA 基因序列分析、16S rDNA 细菌鉴定系统或与 GenBank 序列的比较)相比鉴定 R. ornithinolytica 的能力。本研究中检查的表型系统是 VITEK 2 GN ID 卡、MicroScan Neg Combo 32 面板和 API 20E。SSP-PCR 板能够将 R. ornithinolytica 参考菌株与其他罗尔氏菌属和 K. oxytoca 区分开来。在 27 株通过 SSP-PCR 鉴定为 R. ornithinolytica 的分离株中,VITEK 2 鉴定所有分离株均为 R. ornithinolytica。MicroScan 和 API 分别鉴定出 25 株(92.6%)和 24 株(88.9%)为 K. oxytoca。这些分离株在三种表型系统中均为鸟氨酸脱羧酶(ODC)阴性。MicroSeq 500 鉴定出 24 株(88.9%)为 R. ornithinolytica,而 GenBank 鉴定结果则存在异质性。在通过 SSP-PCR 鉴定为 K. oxytoca 的 68 株分离株中,66 株(97.1%)通过 VITEK 2、MicroScan 和 API 鉴定为 K. oxytoca。MicroScan 和 API 需要进行额外的生化测试来区分 ODC 阴性的 R. ornithinolytica 和 K. oxytoca。