Max Planck Institute for Molecular Genetics, Ihnestrasse 73, 14195 Berlin, Germany.
J Microbiol Methods. 2010 Nov;83(2):217-23. doi: 10.1016/j.mimet.2010.09.005. Epub 2010 Sep 24.
Salmonella enterica subsp. enterica serovar identification is of great importance with respect to outbreak monitoring and case verification. Therefore rapid, sensitive and cost efficient detection of Salmonella spp. is indispensable within microbiology labs. To amalgamate single tube isolate identification with Salmonella typing, we developed the high-throughput Universal Probe Salmonella Serotyping (UPSS) technique based on nano liter PCR. In comparison to the classical approach, where O- and H-antisera are applied, the UPSS relies on specific gene content amplification of Salmonella spp. by a universal TaqMan assay for all markers and identification of the specific amplicon pattern. To enable high-throughput technology we employed a chip format containing 1024 wells loaded by an automated liquid-handling system which allowed us to perform TaqMan PCR reactions in volumes of 100nL per well. Herein we present proof of principle of the UPSS method by the use of a test panel of 100 previously serotyped Salmonella isolates to successfully verify the usability, accuracy and feasibility of the newly developed UPSS approach. We found that the methodology of the UPSS technology is capable of unequivocally identifying 30 Salmonella serotypes on a single chip within 3 hours but can be highly parallelized by the use of multiple PCR machines. Therefore the UPSS method offers a robust and straightforward molecular alternative for Salmonella detection and typing that saves expensive chemistry and can be easily automated.
肠沙门氏菌亚种肠亚种的鉴定对于暴发监测和病例验证非常重要。因此,在微生物学实验室中,快速、敏感和具有成本效益的沙门氏菌检测是必不可少的。为了将单管分离物鉴定与沙门氏菌分型相结合,我们开发了基于纳升 PCR 的高通量通用探针沙门氏菌血清分型 (UPSS) 技术。与经典方法相比,该方法应用 O-和 H-抗血清,UPSS 依赖于沙门氏菌 spp. 的特定基因含量扩增通过通用 TaqMan 测定法进行所有标记物的鉴定和特定扩增子模式的鉴定。为了实现高通量技术,我们采用了一种包含 1024 个孔的芯片格式,通过自动化液体处理系统加载,允许我们在每个孔中进行 100nL 的 TaqMan PCR 反应。在此,我们通过使用 100 个先前血清分型的沙门氏菌分离株的测试面板来证明 UPSS 方法的原理,成功验证了新开发的 UPSS 方法的可用性、准确性和可行性。我们发现,UPSS 技术的方法能够在单个芯片上在 3 小时内明确鉴定 30 种沙门氏菌血清型,但通过使用多台 PCR 机器可以高度并行化。因此,UPSS 方法为沙门氏菌检测和分型提供了一种强大而直接的分子替代方法,节省了昂贵的化学物质,并且易于自动化。