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用于蜱中细菌病原体DNA一线检测的广谱聚合酶链反应-温度梯度凝胶电泳技术

Broad-range PCR-TTGE for the first-line detection of bacterial pathogen DNA in ticks.

作者信息

Halos Lénaïg, Mavris Maria, Vourc'h Gwenaël, Maillard Renaud, Barnouin Jacques, Boulouis Henri-Jean, Vayssier-Taussat Muriel

机构信息

UMR 956 INRA/AFSSA/ENVA/UPVM, Microbiologie, Ecole Nationale Vétérinaire d'Alfort, 7 avenue du Général de Gaulle, 94700 Maisons-Alfort, France.

出版信息

Vet Res. 2006 Mar-Apr;37(2):245-53. doi: 10.1051/vetres:2005055.

Abstract

Ticks are known or suspected vectors for a wide range of bacterial pathogens. One of the first steps for tick-borne risk assessment is the detection of these pathogens in their vectors. In the present study, a broad-range PCR amplification of the eubacterial gene encoding the 16S rRNA gene combined with Temporal Temperature Gradient gel Electrophoresis (TTGE) was evaluated as a method allowing the one-step detection of bacterial pathogen DNA in ticks. Firstly, DNA extracts from bacteria known to be tick-borne pathogens, i.e., Borrelia burgdorferi lato sensu, Anaplasma phagocytophilum, Spotted Fever Group (SFG) Rickettsia spp., were used to establish a TTGE pathogen DNA reference marker. Secondly, we used broad-range PCR-TTGE to detect the presence of DNA from these three pathogens in 55 DNA extracts from pools of 10 nymphal Ixodes ricinus ticks, which have been previously shown to carry DNA from at least one of those bacteria by specific PCR. Among the 20 B. burgdorferi specific-PCR samples, 15 (75%) were also found to be positive using PCR-TTGE. Sixteen of the seventeen (94%) Rickettsia spp. PCR-specific samples were positive using PCR-TTGE detection and all PCR-specific positive extracts (11/11, 100%) for A. phagocytophilum were also positive using PCR-TTGE. Moreover, we identified unexpected bacterial sequences that were not related to any of the three pathogens such as a sequence related to Spiroplasma sp. Thus, broad-range PCR-TTGE allowed the single step detection of DNA from up to 3 pathogens in the same co-infected samples as well as detection of DNA from unexpected bacteria.

摘要

蜱虫是多种细菌病原体已知或疑似的传播媒介。蜱传风险评估的首要步骤之一是在其传播媒介中检测这些病原体。在本研究中,对编码16S rRNA基因的真细菌基因进行广谱PCR扩增并结合时间温度梯度凝胶电泳(TTGE),作为一种可一步检测蜱虫中细菌病原体DNA的方法进行了评估。首先,从已知为蜱传病原体的细菌(即伯氏疏螺旋体广义种、嗜吞噬无形体、斑点热群立克次体属)中提取DNA,用于建立TTGE病原体DNA参考标记。其次,我们使用广谱PCR-TTGE检测来自10只蓖麻硬蜱若虫池的55份DNA提取物中这三种病原体的DNA,这些提取物先前已通过特异性PCR显示携带至少一种上述细菌的DNA。在20份伯氏疏螺旋体特异性PCR样本中,使用PCR-TTGE也发现其中15份(75%)呈阳性。在17份立克次体属PCR特异性样本中,有16份(94%)使用PCR-TTGE检测呈阳性,而所有嗜吞噬无形体的PCR特异性阳性提取物(11/11,100%)使用PCR-TTGE也呈阳性。此外,我们还鉴定出与这三种病原体均无关的意外细菌序列,例如与螺原体属相关的序列。因此,广谱PCR-TTGE能够在同一共感染样本中一步检测多达3种病原体的DNA,以及检测意外细菌的DNA。

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