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基于内转录间隔区(ITS)通过实时定量PCR对葡萄和生咖啡豆中赭曲霉和韦斯特迪克曲霉进行检测和定量分析

ITS-based detection and quantification of Aspergillus ochraceus and Aspergillus westerdijkiae in grapes and green coffee beans by real-time quantitative PCR.

作者信息

Gil-Serna Jéssica, González-Salgado Amaia, González-Jaén M A Teresa, Vázquez Covadonga, Patiño Belén

机构信息

Department of Microbiology III, Faculty of Biology, University Complutense of Madrid, José Antonio Novais 2, E 28040 Madrid, Spain.

出版信息

Int J Food Microbiol. 2009 May 31;131(2-3):162-7. doi: 10.1016/j.ijfoodmicro.2009.02.008. Epub 2009 Feb 14.

Abstract

Aspergillus ochraceus and A. westerdijkiae are considered the most important Ochratoxin A (OTA) producing species included in Aspergillus section Circumdati which contaminate foodstuffs and beverages for human consumption. In this work a real-time quantitative PCR protocol was developed to detect both species using SYBR Green and primers designed on the basis of the multicopy ITS1 region of the rDNA. The assay had high efficiency (94%) and showed no inhibition by host or fungal DNA other than the target species. The lower detection limit of the target DNA was 2.5 pg/reaction. Accuracy of detection and quantification by qPCR were tested with genomic DNA obtained from green coffee beans and grapes artificially contaminated with spore suspensions of known concentrations. Spore concentrations equal or higher than 10(6) spore/ml could be detected by the assay directly without prior incubation of the samples and a positive relationship was observed between incubation time and qPCR values. The assay developed would allow rapid, specific, accurate and sensitive detection and quantification of A. ochraceus and A. westerdijkiae to be directly used in a critical point of the food chain, before harvesting green coffee and grape berries, to predict and control fungal growth and OTA production.

摘要

赭曲霉和韦斯特迪克曲霉被认为是曲霉属围缘曲霉组中产生赭曲霉毒素A(OTA)的最重要的菌种,它们会污染供人类食用的食品和饮料。在这项研究中,开发了一种实时定量PCR方法,使用SYBR Green和基于rDNA多拷贝ITS1区域设计的引物来检测这两种菌种。该检测方法具有较高的效率(94%),并且除目标菌种外,未显示受到宿主或真菌DNA的抑制。目标DNA的最低检测限为2.5 pg/反应。使用从人工接种已知浓度孢子悬浮液的生咖啡豆和葡萄中获得的基因组DNA,测试了qPCR检测和定量的准确性。该检测方法可以直接检测出浓度等于或高于10(6) 个孢子/毫升的孢子浓度,无需对样品进行预先培养,并且观察到培养时间与qPCR值之间存在正相关关系。所开发的检测方法能够快速、特异性、准确且灵敏地检测和定量赭曲霉和韦斯特迪克曲霉,可直接用于食物链的关键环节,即在收获生咖啡豆和葡萄浆果之前,预测和控制真菌生长及OTA的产生。

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