Doyle C Kuyler, Labruna Marcelo B, Breitschwerdt Edward B, Tang Yi-Wei, Corstvet Richard E, Hegarty Barbara C, Bloch Karen C, Li Ping, Walker David H, McBride Jere W
Department of Pathology, University of Texas Medical Branch, Galveston, TX 77555-0609, USA.
J Mol Diagn. 2005 Oct;7(4):504-10. doi: 10.1016/S1525-1578(10)60581-8.
Ehrlichia species are the etiological agents of emerging and life-threatening tick-borne human zoonoses, in addition to causing serious and fatal infections in companion animals and livestock. We developed the first tricolor TaqMan real-time polymerase chain reaction assay capable of simultaneously detecting and discriminating medically important ehrlichiae in a single reaction. Analytical sensitivity of 50 copies per reaction was attained with templates from Ehrlichia chaffeensis, Ehrlichia ewingii, and Ehrlichia canis by amplifying the genus-specific disulfide bond formation protein gene (dsb). Ehrlichia genus-specific dsb primers amplified DNA from all known Ehrlichia species but not from other rickettsial organisms including Anaplasma platys, Anaplasma phagocytophilum, Rickettsia conorii, or Rickettsia typhi. High species specificity was attained as each species-specific TaqMan probe (E. chaffeensis, E. ewingii, and E. canis) identified homologous templates but did not cross-hybridize with heterologous Ehrlichia templates at concentrations as high as 10(8) copies. Identification of E. chaffeensis, E. ewingii, and E. canis from natural and experimental infections, previously confirmed by polymerase chain reaction and serological or microscopic evidence, demonstrated the comparable specificity and sensitivity of the dsb real-time assay. This assay provides a powerful tool for prospective medical diagnosis for human and canine ehrlichioses and for ecologic and epidemiological studies involving arthropod and mammalian hosts.
埃立克体属细菌是新出现的、威胁生命的蜱传人类人畜共患病的病原体,此外还会在伴侣动物和家畜中引起严重和致命的感染。我们开发了首个三色TaqMan实时聚合酶链反应检测方法,能够在单一反应中同时检测和区分具有医学重要性的埃立克体。通过扩增属特异性二硫键形成蛋白基因(dsb),对来自恰菲埃立克体、尤因埃立克体和犬埃立克体的模板,每个反应的分析灵敏度达到了50个拷贝。埃立克体属特异性dsb引物能扩增所有已知埃立克体属物种的DNA,但不能扩增包括嗜吞噬细胞无形体、犬粒细胞无形体、康氏立克次体或伤寒立克次体在内的其他立克次体生物的DNA。由于每个物种特异性TaqMan探针(恰菲埃立克体、尤因埃立克体和犬埃立克体)都能识别同源模板,但在高达10⁸拷贝的浓度下不会与异源埃立克体模板交叉杂交,因此实现了高物种特异性。从自然感染和实验感染中鉴定恰菲埃立克体、尤因埃立克体和犬埃立克体,此前已通过聚合酶链反应以及血清学或显微镜证据得到证实,这证明了dsb实时检测方法具有相当的特异性和灵敏度。该检测方法为人类和犬类埃立克体病的前瞻性医学诊断以及涉及节肢动物和哺乳动物宿主的生态学和流行病学研究提供了一个强大的工具。