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Development of a Taqman real-time PCR assay for rapid detection and quantification of Vibrio tapetis in extrapallial fluids of clams

机译:Taqman实时PCR检测试剂盒的开发用于快速检测和定量蛤extra腔外液体中的帕氏弧菌

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摘要

The Gram-negative bacterium Vibrio tapetis is known as the causative agent of Brown Ring Disease (BRD) in the Manila clam Venerupis (=Ruditapes) philippinarum. This bivalve is the second most important species produced in aquaculture and has a high commercial value. In spite of the development of several molecular methods, no survey has been yet achieved to rapidly quantify the bacterium in the clam. In this study, we developed a Taqman real-time PCR assay targeting virB4 gene for accurate and quantitative identification of V. tapetis strains pathogenic to clams. Sensitivity and reproducibility of the method were assessed using either filtered sea water or extrapallial fluids of clam injected with the CECT4600T V. tapetis strain. Quantification curves of V. tapetis strain seeded in filtered seawater (FSW) or extrapallial fluids (EF) samples were equivalent showing reliable qPCR efficacies. With this protocol, we were able to specifically detect V. tapetis strains down to 1.125 101 bacteria per mL of EF or FSW, taking into account the dilution factor used for appropriate template DNA preparation. This qPCR assay allowed us to monitor V. tapetis load both experimentally or naturally infected Manila clams. This technique will be particularly useful for monitoring the kinetics of massive infections by V. tapetis and for designing appropriate control measures for aquaculture purposes.
机译:在菲律宾马尼拉蛤仔Venerupis(= Ruditapes)中,革兰氏阴性菌巴斯德弧菌是褐环病(BRD)的病原体。该双壳类是水产养殖中第二重要的物种,具有很高的商业价值。尽管开发了几种分子方法,但尚未进行快速定量定量蛤中细菌的调查。在这项研究中,我们开发了针对virB4基因的Taqman实时PCR测定法,用于准确定量地鉴定对蛤致病的V. tapetis菌株。使用注入CECT4600 T V。tapetis菌株的过滤海水或蛤lam腔外液评估该方法的灵敏度和可重复性。播种在过滤海水(FSW)或腹腔积液(EF)样品中的V. tapetis菌株的定量曲线相当,显示了可靠的qPCR效果。通过此方案,我们考虑到用于适当模板DNA制备的稀释因子,能够特异性检测出每毫升EF或FSW低至1.125 10 1 细菌的V. tapetis菌株。该qPCR分析使我们能够通过实验或自然感染的马尼拉蛤来监测带状疱疹病毒的负荷。这项技术对于监测V. tapetis大规模感染的动力学以及为水产养殖目的设计适当的控制措施特别有用。

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