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一种用于蜂蜜经济高效昆虫学鉴定的创新分子方法。

An innovative molecular approach towards the cost-effective entomological authentication of honey.

作者信息

Zhang Guozhi, Zhang Yanzheng, Yuan Bin, Tiang En Ruth, Li Shanshan, Zheng Huoqing, Hu Fuliang

机构信息

Key laboratory of silkworm and bee resource utilization and innovation of Zhejiang Province, College of Animal Sciences, Zhejiang University, Hangzhou, 310058, China.

出版信息

NPJ Sci Food. 2024 May 2;8(1):24. doi: 10.1038/s41538-024-00268-9.

Abstract

Honey authentication and traceability are crucial not only for economic purposes but also for ensuring safety. However, the widespread adoption of cutting-edge technologies in practical applications has been hampered by complex, time-consuming sample pre-treatment processes, the need for skilled personnel, and substantial associated expenses. This study aimed to develop a simple and cost-effective molecular technique to verify the entomological source of honey. By utilizing newly designed primers, we successfully amplified the mitochondrial 16S ribosomal RNA gene of honey bees from honey, confirming the high quality of the extracted DNA. Employing RFLP analysis with AseI endonuclease, species-specific restriction patterns were generated for honey derived from six closely related honey bees of the Apis genus. Remarkably, this method was proven equally effective in identifying heat-treated and aged honey by presenting the same RFLP profiles as raw honey. As far as we know, this is the initial research of the simultaneous differentiation of honey from closely related honey bee species using the restriction endonuclease AseI and mitochondrial 16S rRNA gene fragments. As a result, it holds tremendous potential as a standardized guideline for regulatory agencies to ascertain the insect origins of honey and achieve comprehensive traceability.

摘要

蜂蜜的鉴定和可追溯性不仅对经济目的至关重要,而且对于确保安全也很关键。然而,前沿技术在实际应用中的广泛采用受到复杂、耗时的样品预处理过程、对技术人员的需求以及大量相关费用的阻碍。本研究旨在开发一种简单且经济高效的分子技术,以验证蜂蜜的昆虫来源。通过使用新设计的引物,我们成功地从蜂蜜中扩增出蜜蜂的线粒体16S核糖体RNA基因,证实了提取的DNA的高质量。采用AseI内切酶进行RFLP分析,为源自蜜蜂属六个密切相关蜜蜂的蜂蜜生成了物种特异性的限制性图谱。值得注意的是,通过呈现与生蜂蜜相同的RFLP图谱,该方法在鉴定热处理蜂蜜和陈化蜂蜜方面同样有效。据我们所知,这是首次使用限制性内切酶AseI和线粒体16S rRNA基因片段同时区分密切相关蜜蜂物种蜂蜜的研究。因此,它作为监管机构确定蜂蜜昆虫来源并实现全面可追溯性的标准化指南具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c67e/11063038/3c8749a7653a/41538_2024_268_Fig1_HTML.jpg

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