Development of a Rapid Test Method for Salmonella enterica Detection Based on Fluorescence Probe-Based Recombinase Polymerase Amplification

被引:0
作者
Jiaping Chen
Xiaoqing Liu
Jing Chen
Zhengyang Guo
Yuanyang Wang
Guopei Chen
Xuejian Chen
Qongying Yan
Ping Yang
Risheng Li
Guowu Yang
Qanxue Lan
Jianlong Wang
机构
[1] Northwest A&F University,College of Food Science and Engineering
[2] Shenzhen Academy of Metrology & Quality Inspection,undefined
[3] National Nutrition Food Testing Center (Guangdong),undefined
来源
Food Analytical Methods | 2019年 / 12卷
关键词
Rapid detection; Fluorescence probe; Recombinase polymerase amplification;
D O I
暂无
中图分类号
学科分类号
摘要
Salmonella is a type of serious foodborne pathogenic bacterium that threatens the food safety worldwide. In this study, a fluorescence probe-based recombinase polymerase amplification analytical method (exo RPA) was developed for the sensitive and specific detection of Salmonella enterica (S. enterica). The primers and probe for this method were designed based on the iroB gene of the bacterium. The exo RPA reaction could detect as low as 102 copies of template DNA per reaction or 2.2 × 103 CFU/mL of S. enterica, and SPSS probit regression analysis indicated the limit of detection (LOD) at 95% probability of the exo RPA assay was 2.0 × 103 CFU/mL. Moreover, the exo RPA assay could successfully differentiate S. enterica from all the tested non-Salmonella strains. Importantly, this method is highly reliable; the DNA from other bacteria or food complex matrices has no obvious effect on the S. enterica exo RPA. Besides, positive signal could be obtained from the chicken or egg sample inoculated with 2.2 × 101 CFU/mL of S. enterica after 4- to 6-h enrichment at 36 °C. Therefore, this study describes a rapid test method for S. enterica, which is expected to be beneficial for monitoring trace S. enterica in real food products.
引用
收藏
页码:1791 / 1798
页数:7
相关论文
共 104 条
[1]  
Ahmed SA(2015)Application of isothermal amplification techniques for identification of Madurella mycetomatis, the prevalent agent of human mycetoma J Clin Microbiol 53 3280-3285
[2]  
van de Sande WW(1996)Identification of a new iron regulated locus of Salmonella typhi Gene 183 207-213
[3]  
Desnos-Ollivier M(1997)Rapid detection of salmonella enterica with primers specific for iroB J Clin Microbiol 35 1224-1230
[4]  
Fahal AH(2006)Current concepts in the diagnosis and treatment of typhoid fever Br Med J 333 78-82
[5]  
Mhmoud NA(2014)Inhibition controls for qualitative real-time PCR assays: are they necessary for all specimen matrices? J Clin Microbiol 52 2139-2143
[6]  
de Hoog GS(2016)Development and performance evaluation of a recombinase polymerase amplification assay for the rapid detection of group B streptococcus BMC Microbiol 16 221-532
[7]  
Baumler AJ(2016)Development of a loop mediated isothermal amplification (LAMP) - surface enhanced Raman SPECTROSCOPY (SERS) assay for the detection of Salmonella Enterica Serotype Enteritidis Theranostics 6 522-3505
[8]  
Tsolis RM(2002)Persistent endemicity of Salmonella bongori 48:z35: in Southern Italy: molecular characterization of human, animal, and environmental isolates J Clin Microbiol 40 3502-602
[9]  
van der Velden AWM(2005)Molecular characterization of a new serovar of Salmonella bongori 13,22:z39:- isolated from a lizard Res Microbiol 156 597-73
[10]  
Baumler AJ(2018)A comprehensive review of non-enterica subspecies of Salmonella enterica Microbiol Res 206 60-7025