Kreitlow Antonia, Becker André, Ahmed Marwa F E, Kittler Sophie, Schotte Ulrich, Plötz Madeleine, Abdulmawjood Amir
Institute for Food Quality and Food Safety, University of Veterinary Medicine Hannover, Hanover, Germany.
Institute for Animal Hygiene, Animal Welfare and Farm Animal Behavior, University of Veterinary Medicine Hannover, Hanover, Germany.
Front Microbiol. 2021 Jun 9;12:668824. doi: 10.3389/fmicb.2021.668824. eCollection 2021.
A loop-mediated isothermal amplification (LAMP) assay system was established, allowing gene-based simultaneous detection of and in enriched meat products. Additionally, one-step differentiation of target species on agar plates was enabled by gene- and gene-based duplex LAMP. Both the and - LAMP assays amplified the target sequences in all 62 and 27 strains used for determining inclusivity and revealed 100% exclusivity toward 85 tested non-target species. Throughout the entire experiments, and strains were 100% distinguishable by melting curves of and LAMP products. After 24-h enrichment, the LAMP assay reliably detected initial inoculation levels of 10-100 CFU/g in artificially contaminated minced meat. Investigation of naturally contaminated meat samples revealed a diagnostic accuracy of 95% toward real-time PCR and 94.1% toward the standard culture method applying the 24-h incubation period. Diagnostic sensitivity and specificity, and positive and negative predictive values were 89.8, 100, 100, and 91.2%, respectively, when measured against real-time PCR, and 89.6, 98.1, 97.7, and 91.2%, respectively, when measured against the standard culture method. After 48-h enrichment, the detection limit of the LAMP assay improved to initial inoculation levels of 1-10 CFU/g in artificially contaminated minced meat. Applying the 48-h incubation period on naturally contaminated meat samples resulted in 100% concordant results between LAMP, real-time PCR, and the standard culture method. The established LAMP assay system was proved to be suitable for rapid meat sample screening. Furthermore, it constitutes a promising tool for investigating other sources and could therefore make a valuable contribution to protect consumers from foodborne illness.
建立了一种环介导等温扩增(LAMP)检测系统,可对富集肉制品中的[具体基因1]和[具体基因2]进行基于基因的同时检测。此外,基于[具体基因3]和[具体基因4]的双重LAMP能够在琼脂平板上对目标物种进行一步鉴别。用于确定包容性的所有62株[目标物种1]和27株[目标物种2]菌株中的目标序列,均能被[具体基因1] - LAMP和[具体基因2] - LAMP检测法扩增,并且对85种测试非目标物种显示出100%的排他性。在整个实验过程中,[目标物种1]和[目标物种2]菌株可通过[具体基因1] - LAMP和[具体基因2] - LAMP产物的熔解曲线实现100%区分。经过24小时富集后,[具体基因1] - LAMP检测法能够可靠地检测出人工污染碎肉中10 - 100 CFU/g的初始接种水平。对天然污染肉样的调查显示,与实时PCR相比诊断准确率为95%,与应用24小时培养期的标准培养方法相比诊断准确率为94.1%。与实时PCR相比时,诊断敏感性和特异性以及阳性和阴性预测值分别为89.8%、100%、100%和91.2%,与标准培养方法相比时分别为89.6%、98.1%、97.7%和91.2%。经过48小时富集后,[具体基因1] - LAMP检测法在人工污染碎肉中的检测限提高到1 - 10 CFU/g的初始接种水平。对天然污染肉样应用48小时培养期后,[具体基因1] - LAMP、实时PCR和标准培养方法之间的结果100%一致。所建立的LAMP检测系统被证明适用于快速筛选肉样。此外,它是调查其他[相关源]的一种有前景的工具,因此可为保护消费者免受食源性疾病侵害做出重要贡献。