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宏基因组分析能否有效地应用于安全食品生产?

Can Metagenomic Analyses Be Used Effectively in Safe Food Production?

作者信息

Delikanli-Kiyak Berrak, Yilmaz Ilkay, Guldas Metın

机构信息

Food Processing Program, Vocational School of Iznik Bursa Uludag University Ni̇lüfer/Bursa Turkey.

Department of Gastronomy and Culinary Arts, Faculty of Fine Arts, Design and Architecture Baskent University Etimesgut/Ankara Turkey.

出版信息

Food Sci Nutr. 2025 Aug 7;13(8):e70772. doi: 10.1002/fsn3.70772. eCollection 2025 Aug.


DOI:10.1002/fsn3.70772
PMID:40786823
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC12331879/
Abstract

This review aims to bring together current research on the importance, recent applications, and possible impacts of metagenomic analysis and emphasize that metagenomic analyses, which provide direct analysis of the genomes of the food itself and all the microbiota in its environment, are revolutionary approach for effective management of food safety requirements. The increasing health problems in recent years and the related developments regarding nutritional awareness have led people to seek safe food consumption. In order to ensure the quality and safety of food products and protect the health consumers worldwide, necessary preventive measure should be taken by conducting innovative control methods. Numerous microbial hazards threaten food safety worldwide. In this respect, rapid and accurate detection of pathogens is critical. Although traditional culture-based methods continue to be widely used, they often fail to detect organisms that are viable but cannot be cultured. This limitation has led to the increasing adoption of metagenomic analyses, which allow direct genome-level detection and provide a more comprehensive view of microbial communities in food systems. In this context, metagenomic analyses within new-generation technology has been inspired, as it can be a powerful tool to ensure food safety. In this study, for this purpose, the keywords 'metagenomics and food' and the studies on metagenomics published in English, peer-reviewed journals, and available in the Web of Science and Scopus databases were investigated. The years 2020-2024 were taken as a basis for the studies with the keywords identified and studies on antibiotic resistance and unrelated foods were excluded from the review's scope. This review brings together current research on the significance of metagenomics analysis in food safety, its latest applications, and possible effects. The study is a reference source for potential studies to be carried out in this context.

摘要

本综述旨在汇集当前关于宏基因组分析的重要性、近期应用及可能影响的研究,并强调宏基因组分析为食品安全要求的有效管理提供了对食品本身及其环境中所有微生物群落基因组的直接分析,是一种革命性的方法。近年来健康问题的增加以及营养意识方面的相关发展促使人们寻求安全的食品消费。为确保食品质量和安全并保护全球消费者健康,应通过采用创新控制方法采取必要的预防措施。全球范围内众多微生物危害威胁着食品安全。在这方面,快速准确地检测病原体至关重要。尽管基于传统培养的方法仍被广泛使用,但它们往往无法检测到有活力但无法培养的微生物。这一局限性导致宏基因组分析的应用日益增多,宏基因组分析能够进行直接的基因组水平检测,并提供食品系统中微生物群落更全面的视图。在这种背景下,新一代技术中的宏基因组分析受到了启发,因为它可以成为确保食品安全的有力工具。为此,在本研究中,对关键词“宏基因组学与食品”以及在科学引文索引(Web of Science)和Scopus数据库中可获取的、发表于英文同行评审期刊上的宏基因组学研究进行了调查。以2020 - 2024年作为所确定关键词研究的时间范围,并将抗生素抗性研究及不相关食品的研究排除在综述范围之外。本综述汇集了当前关于宏基因组学分析在食品安全方面的意义、其最新应用及可能影响的研究。该研究是在此背景下开展潜在研究的参考资料来源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae7b/12331879/09c57201dc0d/FSN3-13-e70772-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae7b/12331879/08ed2a6caa8e/FSN3-13-e70772-g006.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae7b/12331879/e722abc4e89e/FSN3-13-e70772-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae7b/12331879/14a509e25053/FSN3-13-e70772-g004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae7b/12331879/b429d23057f5/FSN3-13-e70772-g005.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae7b/12331879/09c57201dc0d/FSN3-13-e70772-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae7b/12331879/08ed2a6caa8e/FSN3-13-e70772-g006.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae7b/12331879/e722abc4e89e/FSN3-13-e70772-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae7b/12331879/14a509e25053/FSN3-13-e70772-g004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae7b/12331879/b429d23057f5/FSN3-13-e70772-g005.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae7b/12331879/09c57201dc0d/FSN3-13-e70772-g001.jpg

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本文引用的文献

[1]
New Methodologies as Opportunities in the Study of Bacterial Biofilms, Including Food-Related Applications.

Microorganisms. 2025-5-2

[2]
Shotgun metagenomic composition, microbial interactions and functional insights into the uterine microbiome of postpartum dairy cows with clinical and subclinical endometritis.

Sci Rep. 2025-5-25

[3]
Impact of microbiological molecular methodologies on adaptive sampling using nanopore sequencing in metagenomic studies.

Environ Microbiome. 2025-5-5

[4]
Current Progress and Future Trends of Genomics-Based Techniques for Food Adulteration Identification.

Foods. 2025-3-24

[5]
Integrating Metagenomic and Culture-Based Techniques to Detect Foodborne Pathogens and Antimicrobial Resistance Genes in Malaysian Produce.

Foods. 2025-1-22

[6]
The role of Micro-biome engineering in enhancing Food safety and quality.

Biotechnol Notes. 2025-1-13

[7]
Advancing sustainable agriculture through multi-omics profiling of biosolids for safe application: A review.

J Environ Manage. 2025-2

[8]
Ecological insights into the microbiology of food using metagenomics and its potential surveillance applications.

Microb Genom. 2025-1

[9]
Step-by-Step Metagenomics for Food Microbiome Analysis: A Detailed Review.

Foods. 2024-7-14

[10]
Microbiological characterization of kombucha and biocellulose film produced with black tea and cocoa bean shell infusion.

Food Res Int. 2024-8

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