首页> 外文期刊>International Journal of Food Microbiology >LAMP-based group specific detection of aflatoxin producers within Aspergillus section Flavi in food raw materials, spices, and dried fruit using neutral red for visible-light signal detection
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LAMP-based group specific detection of aflatoxin producers within Aspergillus section Flavi in food raw materials, spices, and dried fruit using neutral red for visible-light signal detection

机译:基于灯的群体特异性检测在食品原料,香料和干果中使用中性红色的食品原料,香料和干果中的黄曲霉毒素生产者对可见光信号检测

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摘要

Aflatoxins can be produced by 21 species within sections Flavi (16 species), Ochraceorosei (2), and Nidulantes (3) of the fungal genus Aspergillus. They pose risks to human and animal health due to high toxicity and carcinogenicity. Detecting aflatoxin producers can help to assess toxicological risks associated with contaminated commodities. Species specific molecular assays (PCR and LAMP) are available for detection of major producers, but fail to detect species of minor importance. To enable rapid and sensitive detection of several aflatoxin producing species in a single analysis, a nor1 gene-specific LAMP assay was developed. Specificity testing showed that among 128 fungal species from 28 genera, 15 aflatoxigenic species in section Flavi were detected, including synonyms of A. flavus and A. parasiticus. No cross reactions were found with other tested species. The detection limit of the assay was 9.03 pg of A. parasiticus genomic DNA per reaction. Visual detection of positive LAMP reactions under daylight conditions was facilitated using neutral red to allow unambiguous distinction between positive and negative assay results. Application of the assay to the detection of A. parasiticus conidia revealed a detection limit of 211 conidia per reaction after minimal sample preparation. The usefulness of the assay was demonstrated in the analysis of aflatoxinogenic species in samples of rice, nuts, raisins, dried figs, as well as powdered spices. Comparison of LAMP results with presence/absence of aflatoxins and aflatoxin producing fungi in 50 rice samples showed good correlation between these parameters. Our study suggests that the developed LAMP assay is a rapid, sensitive and user-friendly tool for surveillance and quality control in our food industry.
机译:在Flavi(16种),Ochraceorosei(2)中,Nulgal Genus曲霉属的萜烯类(16种),ochraceorosei(2)和萜醛(3)中可以在21种。由于高毒性和致癌性,它们对人类和动物健康构成风险。检测黄曲霉毒素生产商可以帮助评估与受污染商品相关的毒理学风险。物种特异性分子测定(PCR和灯)可用于检测主要生产商,但不能检测到较小的重要性。为了在单一分析中能够在单一分析中能够快速和敏感地检测几种黄曲霉毒素产生物种,开发了NOR1基因特异性灯测定。特异性测试表明,在来自28个属的128种真菌物种中,检测到Flavi部分的15种,包括A.Flavus和A.寄生虫的同义词。没有发现其他测试物种的交叉反应。测定的检测限为每次反应的9.03 pg A.寄生虫基因组DNA。使用中性红促进在日光条件下进行正灯反应的视觉检测,以允许在阳性和阴性测定结果之间进行明确区分。测定在寄生菌的检测中的应用在最小的样品制备后显示出每次反应211分享的检出限。在水稻,螺母,葡萄干,干燥无花果样品以及粉末状香料的情况下,证明了测定的有用性。灯的比较结果与50种水稻样品中的黄曲霉毒素和黄曲霉毒素产生真菌的存在/不存在的比较显示出这些参数之间的良好相关性。我们的研究表明,发达的灯泡测定是我们食品工业中的监控和质量控制的快速,灵敏和用户友好的工具。

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