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一种用于同时检测羊奶粉中牛源和大豆源掺假物的双重快速RPA-CRISPR/Cas12a方法

A Dual and Rapid RPA-CRISPR/Cas12a Method for Simultaneous Detection of Cattle and Soybean-Derived Adulteration in Goat Milk Powder.

作者信息

Wen Yuanjun, Huang Shuqin, Lei Hongtao, Li Xiangmei, Shen Xing

机构信息

Guangdong Provincial Key Laboratory of Food Quality and Safety, College of Food Science, South China Agricultural University, Guangzhou 510642, China.

出版信息

Foods. 2024 May 24;13(11):1637. doi: 10.3390/foods13111637.

Abstract

The adulteration of goat milk powder occurs frequently; cattle-derived and soybean-derived ingredients are common adulterants in goat milk powder. However, simultaneously and rapidly detecting cattle-derived and soybean-derived components is still a challenge. An efficient, high-throughput screening method for adulteration detection is needed. In this study, a rapid method was developed to detect the adulteration of common cattle-derived and soybean-derived components simultaneously in goat milk powder by combining the CRISPR/Cas12a system with recombinant polymerase amplification (RPA). A dual DNA extraction method was employed. Primers and crRNA for dual detection were designed and screened, and a series of condition optimizations were carried out in this experiment. The optimized assay rapidly detected cattle-derived and soybean-derived components in 40 min. The detection limits of both cattle-derived and soybean-derived components were 1% (/) for the mixed adulteration models. The established method was applied to a blind survey of 55 commercially available goat milk powder products. The results revealed that 36.36% of the samples contained cattle-derived or soybean-derived ingredients, which revealed the noticeable adulteration situation in the goat milk powder market. This study realized a fast flow of dual extraction, dual amplification, and dual detection of cattle-derived and soybean-derived components in goat milk powder for the first time. The method developed can be used for high-throughput and high-efficiency on-site primary screening of goat milk powder adulterants, and provides a technical reference for combating food adulteration.

摘要

山羊奶粉掺假现象屡见不鲜;牛乳源成分和大豆源成分是山羊奶粉中常见的掺假物。然而,同时快速检测牛乳源成分和大豆源成分仍然是一项挑战。需要一种高效、高通量的掺假检测筛选方法。在本研究中,通过将CRISPR/Cas12a系统与重组聚合酶扩增(RPA)相结合,开发了一种快速检测山羊奶粉中常见牛乳源成分和大豆源成分掺假的方法。采用了双重DNA提取方法。设计并筛选了用于双重检测的引物和crRNA,并在本实验中进行了一系列条件优化。优化后的检测方法在40分钟内即可快速检测出牛乳源成分和大豆源成分。对于混合掺假模型,牛乳源成分和大豆源成分的检测限均为1%(/)。将所建立的方法应用于对55种市售山羊奶粉产品的盲测。结果显示,36.36%的样品含有牛乳源或大豆源成分,这揭示了山羊奶粉市场中明显的掺假情况。本研究首次实现了山羊奶粉中牛乳源成分和大豆源成分的双重提取、双重扩增和双重检测的快速流程。所开发的方法可用于山羊奶粉掺假物的高通量、高效现场初筛,并为打击食品掺假提供技术参考。

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