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首页> 外文期刊>Food additives & contaminants: analysis, surveillance, evaluation, control >Simultaneous detection of the main black aspergilli responsible for ochratoxin A (OTA) contamination in grapes by multiplex real-time polymerase chain reaction.
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Simultaneous detection of the main black aspergilli responsible for ochratoxin A (OTA) contamination in grapes by multiplex real-time polymerase chain reaction.

机译:通过多重实时聚合酶链反应同时检测葡萄中造成och曲毒素A(OTA)污染的主要黑曲霉。

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This paper reports a duplex real-time polymerase chain reaction (PCR) assay for the simultaneous detection of members of the Aspergillus niger aggregate and A. carbonarius, which are the main responsible species for ochratoxin A (OTA) contamination in grapes. This single tube reaction targets the beta -ketosynthase and the acyl transferase domains of the poliketide synthase of A. carbonarius and the A. niger aggregate, respectively. Melting curve analysis using a SYBR Green I real-time PCR approach showed characteristic Tm-values demonstrating the specific, efficient and balanced amplification of the two PCR fragments. Subsequently, a TaqMan real-time PCR approach was settled, using 6-carboxy-fluorescein group (FAM) and VICReg.-labelled specific probes for automated detection. Results indicated no differences in sensitivity when using either the two sets of primers and probes in separate or in the same reaction. However, when both targets are in very different amounts, there is a preferential amplification of the target which is in more concentration. CT-values obtained in the presence of grape DNA were very similar to those observed when only fungal purified DNA was present, indicating that the grape DNA does not interfere in the real-time PCR reaction. This procedure provides a fast and accurate tool to monitor, in a single reaction, the presence of OTA-producing species in grapes which, to some extent, will facilitate OTA contamination surveys to guarantee food safety in the wine industry.
机译:本文报告了一种双工实时聚合酶链反应(PCR)分析方法,用于同时检测黑曲霉聚集体和iA成员。 carbonarius ,这是葡萄中曲毒素A(OTA)污染的主要原因。该单管反应的目标是A的poliketide合酶的β-酮基合酶和酰基转移酶结构域。 Carbonarius 和 A。 niger 分别进行汇总。使用SYBR Green I实时PCR方法进行的熔解曲线分析显示了特征 T m 值,表明了两个PCR片段的特异性,高效和平衡扩增。随后,使用6-羧基荧光素基团(FAM)和VICReg。标记的特异性探针建立TaqMan实时PCR方法,以进行自动检测。结果表明,分别在同一反应中使用两组引物和探针时,灵敏度没有差异。然而,当两个靶标的量相差很大时,靶标的优先扩增浓度更高。在葡萄DNA存在下获得的CT值与仅存在真菌纯化的DNA时观察到的CT值非常相似,这表明葡萄DNA不会干扰实时PCR反应。该程序提供了一种快速准确的工具,可在单个反应中监测葡萄中产生OTA的物种的存在,从某种程度上讲,这将有助于OTA污染调查,以确保葡萄酒行业的食品安全。

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