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A simplified multiplex PCR-based typing method for common Salmonella enterica serovars supported by online server-based detection system

机译:在线服务器检测系统支持的简化的基于多重PCR的常见沙门氏菌血清型分型方法

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Background & objectives: A rapid and simple alternative method is needed to replace the laborious, time-consuming Salmonella serotyping. The objective of the present study was to improve and simplify a previously reported multiplex polymerase chain reaction (PCR)-based method and to create an online server to enable rapid determination of serovars. Methods: A method of multiplex PCR-based genome typing (MPGT) was standardized using 59 Salmonella isolates of 31 serovars. Several previously reported primers were modified to obtain a more accurate performance. The screen was separated into four different multiplex reactions distinguishable on standard electrophoresis. A blind study was subsequently performed with 81 isolates of 10 serovars most prevalent in India. Whole genome information from 440 Salmonella isolates was used to confirm the usefulness of this method and concurrence of in silico predictions and PCR results were investigated. A public server ( http://www.mpgt-salmonella.res.in ) was established for data storage and determination of closest previously observed Salmonella isolates based on obtained MPGT patterns. Results: The 16 target genes amplified showed variability in their presence in strains from different serotypes. Hence, identical amplification patterns suggested genetic relatedness of strains and usually identical serological behaviour. The observed absence/presence patterns of genes were converted to an MPGT code. Altogether, 83 different codes were predicted in silico based on the whole genome information of 440 strains. Results confirmed that major serovars usually displayed unique MPGT codes. Interpretation & conclusions: The multiplex PCR assay resulted in specific binary codes for isolates from each of the 31 Salmonella serovars tested. The online server allowed the user to compare obtained PCR results with stored previous patterns. Simplicity, speed and cost-effectiveness make this tool useful for quick outbreak management.
机译:背景与目标:需要一种快速,简单的替代方法来代替费力,费时的沙门氏菌血清分型。本研究的目的是改进和简化以前报道的基于多重聚合酶链反应(PCR)的方法,并创建一个在线服务器以快速确定血清型。方法:使用59个31个血清型沙门氏菌分离株对基于多重PCR的基因组分型(MPGT)的方法进行了标准化。修改了几种先前报道的引物以获得更准确的性能。将屏幕分成在标准电泳上可区分的四个不同的多重反应。随后对印度最流行的10种血清型的81种分离株进行了盲法研究。使用来自440个沙门氏菌分离株的全基因组信息来确认该方法的有效性,并在计算机模拟预测和PCR结果的同时进行了研究。建立了一个公共服务器(http://www.mpgt-salmonella.res.in),用于基于获得的MPGT模式进行数据存储和确定最近观察到的沙门氏菌分离株。结果:扩增的16个靶基因在不同血清型菌株中的存在存在变异性。因此,相同的扩增模式表明菌株的遗传相关性,并且通常具有相同的血清学行为。观察到的基因缺失/存在模式被转换为MPGT代码。根据440个菌株的全基因组信息,在计算机上总共预测了83个不同的密码。结果证实,主要血清病毒通常显示独特的MPGT代码。解释与结论:多重PCR分析产生了来自所测试的31种沙门氏菌血清分离物中每种分离物的特定二进制代码。在线服务器允许用户将获得的PCR结果与存储的先前模式进行比较。简单性,速度和成本效益使该工具可用于快速爆发管理。

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