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环介导等温扩增法在直接鉴定黄曲霉、棒曲霉和棒曲霉纯培养物及其在带壳巴西坚果中快速检测中的应用。

Application of loop-mediated isothermal amplification assays for direct identification of pure cultures of Aspergillus flavus, A. nomius, and A. caelatus and for their rapid detection in shelled Brazil nuts.

机构信息

Technische Universität München, Lehrstuhl für Technische Mikrobiologie, Gregor-Mendel-Straße 4, 85354 Freising, Germany.

Instituto de Tecnologia de Alimentos, C.P. 139, CEP 13070-178, Campinas, SP, Brazil.

出版信息

Int J Food Microbiol. 2014 Feb 17;172:5-12. doi: 10.1016/j.ijfoodmicro.2013.12.001. Epub 2013 Dec 7.

Abstract

Brazil nuts have a high nutritional content and are a very important trade commodity for some Latin American countries. Aflatoxins are carcinogenic fungal secondary metabolites. In Brazil nuts they are produced predominantly by Aspergillus (A.) nomius and A. flavus. In the present study we applied and evaluated two sets of primers previously published for the specific detection of the two species using loop-mediated isothermal amplification (LAMP) technology. Moreover, a primer set specific for A. caelatus as a frequently occurring non-aflatoxigenic member of Aspergillus section Flavi in Brazil nuts was newly developed. LAMP assays were combined with a simplified DNA release method and used for rapid identification of pure cultures and rapid detection of A. nomius and A. flavus from samples of shelled Brazil nuts. An analysis of pure cultures of 68 isolates representing the major Aspergillus species occurring on Brazil nuts showed that the three LAMP assays had individual accuracies of 61.5%, 84.4%, and 93.3% for A. flavus, A. nomius, and A. caelatus, respectively when morphological identification was used as a reference. The detection limits for conidia added directly to the individual LAMP reactions were found to be 10⁵ conidia per reaction with the primer set ID9 for A. nomius and 10⁴ conidia per reaction with the primer set ID58 for A. flavus. Sensitivity was increased to 10¹ and 10² conidia per reaction for A. nomius and A. flavus, respectively, when sample preparation included a spore disruption step. The results of LAMP assays obtained during the analysis of 32 Brazil nut samples from different regions of Brazil and from different steps in the production process of the commodity were compared with results obtained from mycological analysis and aflatoxin analysis of corresponding samples. Compared with mycological analysis of the samples, the Negative Predictive Values of LAMP assays were 42.1% and 12.5% while the Positive Predictive Values were 61.5% and 66.7% for A. nomius and A. flavus, respectively. When LAMP results were compared with the presence of aflatoxins in corresponding samples, the Negative Predictive Values were 22.2% and 44.4% and the Positive Predictive Values were 52.2% and 78.3% for aflatoxins produced by A. nomius and A. flavus, respectively. The LAMP assays described in this study have been demonstrated to be a specific, sensitive and easy to use tool for the survey of Brazil nuts for contaminations with potential aflatoxin-producing A. nomius and A. flavus in low tech environments where resources may be limited.

摘要

巴西坚果营养丰富,是一些拉丁美洲国家非常重要的贸易商品。黄曲霉毒素是致癌真菌次级代谢物。在巴西坚果中,它们主要由曲霉(A.)nomius 和 A. flavus 产生。在本研究中,我们应用并评估了先前为使用环介导等温扩增(LAMP)技术对这两个物种进行特异性检测而发表的两组引物。此外,还新开发了一组针对巴西坚果中曲霉属 Flavi 节中经常出现的非产黄曲霉毒素成员 A. caelatus 的引物。LAMP 检测与简化的 DNA 释放方法相结合,用于快速鉴定纯培养物,并快速检测去壳巴西坚果中的 A. nomius 和 A. flavus。对代表巴西坚果上主要曲霉属的 68 个分离株的纯培养物进行分析表明,当形态鉴定作为参考时,三组 LAMP 检测对 A. flavus、A. nomius 和 A. caelatus 的准确率分别为 61.5%、84.4%和 93.3%。发现将 ID9 引物组直接添加到各个 LAMP 反应中的分生孢子检测限为每个反应 10⁵ 个分生孢子,而将 ID58 引物组添加到每个反应中的分生孢子检测限为每个反应 10⁴ 个分生孢子。当样品制备包括孢子破坏步骤时,A. nomius 和 A. flavus 的检测限分别提高到每个反应 10¹ 和 10² 个分生孢子。对来自巴西不同地区和商品生产过程不同阶段的 32 个巴西坚果样本进行 LAMP 检测的结果与相应样本的真菌分析和黄曲霉毒素分析的结果进行了比较。与样品的真菌分析相比,LAMP 检测对 A. nomius 和 A. flavus 的阴性预测值分别为 42.1%和 12.5%,阳性预测值分别为 61.5%和 66.7%。当将 LAMP 结果与相应样本中黄曲霉毒素的存在进行比较时,A. nomius 和 A. flavus 产生的黄曲霉毒素的阴性预测值分别为 22.2%和 44.4%,阳性预测值分别为 52.2%和 78.3%。本研究中描述的 LAMP 检测已被证明是一种特异性、敏感性和易于使用的工具,可用于在资源可能有限的低技术环境中调查巴西坚果中潜在的产黄曲霉毒素 A. nomius 和 A. flavus 的污染情况。

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