首页> 美国卫生研究院文献>Journal of Medical Entomology >Decapitation Improves Detection of Wolbachia pipientis (Rickettsiales: Anaplasmataceae) in Culex pipiens (Diptera: Culicidae) Mosquitoes by the Polymerase Chain Reaction
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Decapitation Improves Detection of Wolbachia pipientis (Rickettsiales: Anaplasmataceae) in Culex pipiens (Diptera: Culicidae) Mosquitoes by the Polymerase Chain Reaction

机译:斩首可通过聚合酶链反应提高对淡色库蚊(Dilexera:Culicidae)蚊中的Wolbachia pipientis(Rickettsiales:Anaplasmataceae)的检测。

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摘要

Polymerase chain reaction (PCR) is often used to detect microorganisms, pathogens, or both, including the reproductive parasite Wolbachia pipientis (Rickettsiales: Anaplasmataceae), in mosquitoes. Natural populations of Culex pipiens L. (Diptera: Culicidae) mosquitoes are infected with one or more strains of W. pipientis, and crosses between mosquitoes harboring different Wolbachia strains provide one of the best-known examples of cytoplasmic incompatibililty (CI). When we used PCR to monitor Wolbachia in the Buckeye strain of Culex pipiens, and in a Wolbachia-cured sister colony obtained by tetracycline treatment, we noted false negative PCR reactions with DNA samples from infected mosquitoes; these results were inconsistent with direct microscopic observation of Wolbachia-like particles in gonads dissected from mosquitoes in the same population. Assays with diluted template often improved detection of positive samples, suggesting that DNA prepared from whole mosquitoes contained an inhibitor of the PCR reaction. We reconciled discrepancies between PCR and microscopy by systematic measurement of the PCR reaction in the presence of an internal standard. Mosquito decapitation before DNA extraction restored the reliability of the PCR reaction, allowing accurate determination of Wolbachia infection status in infected and tetracycline-cured mosquito populations, consistent with microscopic examination. Using PCR primers based on the Tr1 gene, we confirmed that the Wolbachia infection in the Buckeye strain of Culex pipiens belongs to the genotype designated wPip1. Finally, to explore more widely the distribution of PCR inhibitors, we demonstrated that DNA isolated from the cricket, Acheta domesticus (L.); the beetle, Tenebrio molitor L.; the honey bee, Apis mellifera L.; and the mosquito, Anopheles punctipennis Say also contained PCR inhibitors. These results underscore the importance of measuring the presence of inhibitors in PCR templates by using a known positive standard, and provide an approach that will facilitate use of PCR to monitor environmental samples of mosquitoes that harbor endosymbionts or pathogenic organisms.
机译:聚合酶链反应(PCR)通常用于检测蚊子中的微生物,病原体或两者,包括生殖寄生虫Wolbachia pipientis(Rickettsiales:Anaplasmataceae)。淡色库蚊(蚊属)的自然种群感染了一株或多株W. pipientis菌株,而携带不同Wolbachia菌株的蚊子之间的杂交提供了最著名的细胞质不相容(CI)实例之一。当我们使用PCR监测淡色库蚊(Clexus pipiens)的七叶树菌株以及通过四环素处理获得的沃尔巴克氏菌治疗的姐妹菌落中的Wolbachia时,我们注意到来自被感染蚊子的DNA样品的PCR反应是假阴性。这些结果与直接显微镜观察在同一人群中从蚊子中解剖的性腺中的沃尔巴氏菌样颗粒不一致。用稀释的模板进行分析通常可以提高阳性样品的检测率,这表明从整个蚊子制备的DNA都含有PCR反应抑制剂。我们通过在有内标物存在的情况下对PCR反应进行系统的测量来调和PCR和显微镜检查之间的差异。 DNA提取之前进行的灭绝蚊子可以恢复PCR反应的可靠性,从而可以通过显微镜检查准确确定感染和四环素治疗的蚊子种群中的Wolbachia感染状况。使用基于Tr1基因的PCR引物,我们证实了淡色库蚊的七叶树菌株中的Wolbachia感染属于指定为wPip1的基因型。最后,为了更广泛地探索PCR抑制剂的分布,我们证明了从,Acheta domesticus(L.)甲虫黄粉虫。蜜蜂Apis mellifera L .;蚊子 punctipennis 说也含有PCR抑制剂。这些结果强调了通过使用已知的阳性标准来测量抑制剂在PCR模板中的存在的重要性,并提供了一种有助于利用PCR监测带有内共生菌或病原性生物的蚊子环境样品的方法。

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