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高分辨率熔解分析在(UAA)内含子中的应用实现了对苹果汁掺假的定性鉴定。

The Application of High-Resolution Melting Analysis to (UAA) Intron Allowed a Qualitative Identification of Apple Juice Adulterations.

作者信息

Monterisi Sonia, Zuluaga Monica Yorlady Alzate, Porceddu Andrea, Cesco Stefano, Pii Youry

机构信息

Faculty of Agricultural, Environmental and Food Sciences, Free University of Bozen-Bolzano, 39100 Bolzano, Italy.

Department of Agriculture, University of Sassari, 07100 Sassari, Italy.

出版信息

Foods. 2023 Mar 28;12(7):1437. doi: 10.3390/foods12071437.

Abstract

Food authenticity plays a pivotal role in the modern age since an increased consumers awareness has led them to pay more attention to food commodities. For this reason, it is important to have reliable and fast techniques able to detect possible adulterations in food, which affect qualitative and economic value. Therefore, the aim of this study was to detect possible adulterations in apple juice from others fruit species (i.e., pear, peach, and kiwi) combining DNA barcoding approach, using (UAA) intron, with high resolution melting analysis (HRMA). A preliminary phylogenetic analysis, using sequences retrieved by the GenBank, confirmed the discriminatory power of (UAA) intron among the four fruit species examined. Moreover, the sequencing of the (UAA) fragments obtained from apple, pear, peach, and kiwi, demonstrated the suitability of an inner shorter sequence, P6 loop, to differentiate the considered species. The HRMA coupled with (UAA) intron allowed discrimination among the four fruits but provided incomplete results for juices. Whereas the HRMA targeting the P6 loop amplicons confirmed the suitability of the technique to qualitatively distinguish fruit juices composed by the combination of apple/pear and apple/peach. However, the impossibility of discriminating apple/kiwi juices from the pure kiwi sample highlighted limitations, most likely related to the DNA extraction process. This hypothesis was further confirmed by analyzing DNA blends obtained by combining nucleic acids extracted from pure matrixes (i.e., apple and kiwi fruits). In this specific case, the application of HRMA allowed both qualitative and quantitative assessment of the samples.

摘要

在现代社会,食品真实性起着关键作用,因为消费者意识的提高使他们更加关注食品商品。因此,拥有可靠且快速的技术来检测食品中可能存在的掺假至关重要,这些掺假会影响食品的质量和经济价值。因此,本研究的目的是结合DNA条形码方法,使用(UAA)内含子和高分辨率熔解分析(HRMA)来检测苹果汁中是否存在来自其他水果品种(即梨、桃和猕猴桃)的掺假情况。使用从GenBank检索到的序列进行的初步系统发育分析证实了(UAA)内含子在所检测的四种水果品种中的鉴别能力。此外,对从苹果、梨、桃和猕猴桃获得的(UAA)片段进行测序,表明内部较短序列P6环适合区分所考虑的品种。HRMA与(UAA)内含子相结合能够区分这四种水果,但对果汁的检测结果并不完整。而针对P6环扩增子的HRMA证实了该技术在定性区分由苹果/梨和苹果/桃混合而成的果汁方面的适用性。然而,无法将苹果/猕猴桃混合果汁与纯猕猴桃样品区分开来,这突出了局限性,很可能与DNA提取过程有关。通过分析由从纯基质(即苹果和猕猴桃果实)中提取的核酸混合而成的DNA混合物,进一步证实了这一假设。在这种特定情况下,HRMA的应用允许对样品进行定性和定量评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55e7/10093500/1b74bf4f0ea4/foods-12-01437-g001.jpg

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