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将MinION测序作为一种工具用于烟熏三文鱼中[具体物质,原文未明确]的快速检测和特性分析。

Application of MinION sequencing as a tool for the rapid detection and characterization of in smoked salmon.

作者信息

Azinheiro Sarah, Roumani Foteini, Costa-Ribeiro Ana, Prado Marta, Garrido-Maestu Alejandro

机构信息

Food Quality and Safety Research Group, International Iberian Nanotechnology Laboratory, Braga, Portugal.

Department of Analytical Chemistry, Nutrition and Food Science, Faculty of Veterinary Science, University of Santiago de Compostela, Lugo, Spain.

出版信息

Front Microbiol. 2022 Aug 10;13:931810. doi: 10.3389/fmicb.2022.931810. eCollection 2022.

Abstract

Microbial pathogens may be present in different types of foods, and hence the development of novel methods to assure consumers' safeness is of great interest. Molecular methods are known to provide sensitive and rapid results; however, they are typically targeted approaches. In recent years, the advent of non-targeted approaches based on next-generation sequencing (NGS) has emerged as a rational way to proceed. This technology allows for the detection of several pathogens simultaneously. Furthermore, with the same set of data, it is possible to characterize the microorganisms in terms of serotype, virulence, and/ or resistance genes, among other molecular features. In the current study, a novel method for the detection of based on the "quasimetagenomics" approach was developed. Different enrichment media and immunomagnetic separation (IMS) strategies were compared to determine the best approach in terms of sequences generated from smoked salmon samples. Finally, the data generated were analyzed with a user-friendly workflow that simultaneously provided the species identification, serotype, and antimicrobial resistance genes. The new method was thoroughly evaluated against a culture-based approach, using smoked salmon inoculated with as the matrix of choice. The sequencing method reached a very low limit of detection (LOD50, 1.2 CFU/ 25 g) along with high diagnostic sensitivity and specificity (100%), and a perfect correlation with the culture-based method (Cohen's = 1.00). Overall, the proposed method overcomes all the major limitations reported for the implementation of NGS as a routine food testing technology and paves the way for future developments taking its advantage into consideration.

摘要

微生物病原体可能存在于不同类型的食品中,因此开发新方法以确保消费者安全备受关注。已知分子方法能提供灵敏且快速的结果;然而,它们通常是靶向方法。近年来,基于下一代测序(NGS)的非靶向方法的出现成为一种合理的推进方式。这项技术能够同时检测多种病原体。此外,利用同一组数据,就血清型、毒力和/或耐药基因等分子特征而言,还能够对微生物进行特征描述。在当前研究中,开发了一种基于“准宏基因组学”方法检测[具体检测对象未给出]的新方法。比较了不同的富集培养基和免疫磁珠分离(IMS)策略,以根据烟熏三文鱼样本生成的[具体检测对象未给出]序列确定最佳方法。最后,使用一种用户友好的工作流程对生成的数据进行分析,该流程能同时提供物种鉴定、血清型和抗菌耐药基因信息。使用接种了[具体检测对象未给出]的烟熏三文鱼作为首选基质,针对基于培养的方法对新方法进行了全面评估。测序方法达到了非常低的检测限(LOD50,1.2 CFU/25 g),同时具有高诊断灵敏度和特异性(100%),并且与基于培养的方法具有完美的相关性(科恩kappa系数 = 1.00)。总体而言,所提出的方法克服了将NGS作为常规食品检测技术实施时所报道的所有主要限制,并为考虑到其优势的未来发展铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe32/9399719/792dcebe31b9/fmicb-13-931810-g0001.jpg

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