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Evaluation of a multiplex PCR assay for concurrent detection of four major mycotoxigenic fungi from foods.

机译:评价用于同时检测食品中四种主要产毒真菌的多重PCR分析方法。

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摘要

Aim. To develop and evaluate a multiplex polymerase chain reaction assay (mPCR) for the concurrent detection of four major mycotoxin metabolic pathway genes, viz. nor1 (aflatoxin), Tri6 (trichothecene), FUM13 (fumonisin) and otanps (ochratoxin A). Methods and Results. A mPCR assay with competitive internal amplification control, employing specific primers for each of the aforementioned four genes, was optimized and validated using 10 reference strains and 60 pure culture isolates. The standardized mPCR assay detected all four mycotoxin metabolic genes in artificially contaminated maize samples with a sensitivity of 2 x 103 CFU g-1 for nor1-positive Aspergillus strains, Tri6 and FUM13-positive Fusarium strains and 2 x 104 CFU g-1 for otanps-positive Penicillium strains. When the developed mPCR assay was applied to 40 natural foods, 35% (14 of 40) of the samples were contaminated with either one or more mycotoxins. The mPCR results were further evaluated with high-performance liquid chromatography (HPLC), and in general, both the methods provided unequivocal results. Conclusion. The current mPCR assay is a rapid and reliable tool for simultaneous specific and sensitive detection of aflatoxigenic Aspergillus strains, trichothecene- and fumonisin-producing Fusarium strains, and ochratoxigenic Penicillium species from naturally contaminated foods. Significance and Impact of the Study. This mPCR assay could be a supplementary strategy to current conventional mycotoxin analytical techniques such as thin-layer chromatography (TLC), high performance thin layer chromatography, HPLC, etc., and a reliable tool for high-throughput monitoring of major mycotoxin-producing fungi during the processing steps of food and feed commodities
机译:目标。开发和评估用于同时检测四个主要霉菌毒素代谢途径基因的多重聚合酶链反应测定法(mPCR)。 nor1(黄曲霉毒素),Tri6(三茂金属),FUM13(伏马毒素)和otanps(och曲霉毒素A)。方法和结果。使用针对上述四个基因中的每个基因的特异性引物,对具有竞争性内部扩增控制的mPCR分析进行了优化,并使用10个参考菌株和60个纯培养物分离株进行了验证。标准化的mPCR测定法检测了人工污染的玉米样品中的全部四个真菌毒素代谢基因,对正型曲霉属菌株Tri6和N1阳性的敏感性为2 x 10 3 CFU g -1 。 FUM13阳性镰刀菌菌株和2 x 10 4 CFU g -1 用于otanps阳性青霉菌株。当将开发的mPCR分析应用于40种天然食品时,其中35%(40个样品中的14个)被一种或多种霉菌毒素污染。使用高效液相色谱(HPLC)进一步评估了mPCR结果,总的来说,两种方法均提供了明确的结果。结论。当前的mPCR测定法是一种快速而可靠的工具,用于同时特异性和灵敏地检测天然污染食品中的黄曲霉毒素曲霉菌菌株,生产曲霉烯和伏马毒素的镰刀菌菌株以及产毒毒素的青霉菌。研究的意义和影响。该mPCR测定法可以作为当前常规霉菌毒素分析技术(例如薄层色谱法(TLC),高效薄层色谱法,HPLC等)的补充策略,并且是用于高通量监测主要产霉菌毒素真菌的可靠工具在食品和饲料商品的加工步骤中

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