Research Progress of Molecular Biological Technology in Rapid Detection of Foodborne Pathogens

被引:0
|
作者
Zhang D. [1 ,2 ]
Gao L. [1 ,2 ]
Zhang M. [1 ,2 ]
Du Z. [1 ,2 ]
Lü X. [1 ,2 ]
Bai X. [1 ,2 ]
Zhang G. [3 ]
Li X. [1 ,2 ]
Li J. [1 ,2 ]
机构
[1] College of Food Science and Engineering, Institute of Ocean, Bohai University, Jinzhou
[2] National and Local Joint Engineering Research Center of Storage, Processing and Safety Control Technology for Fresh Agricultural and Aquatic Products, Jinzhou
[3] Jinzhou Agricultural and Rural Comprehensive Service Center Aquatic Technology Promotion Station, Jinzhou
关键词
food safety; foodborne pathogens; molecular biology technology; rapid detection;
D O I
10.13386/j.issn1002-0306.2023080029
中图分类号
学科分类号
摘要
Foodborne pathogens are one of the important factors affecting food safety. Efficient and rapid detection technology of foodborne pathogens is particularly important to ensure food safety. Among the rapid detection methods of foodborne pathogens, molecular biology technology has been widely used because of its advantages of strong specificity, high accuracy, and fast detection speed. This paper introduces the application of various molecular biological techniques in the rapid detection of foodborne pathogens, including polymerase chain reaction (PCR), loop-mediated isothermal amplification (LAMP), nuclear acid sequence-based amplification (NAS-BA), recombinase polymerase amplification (PRA), recombinase-aided isothermal amplification (RAA), and gene chip (GC). The application status, application scope and existing problems of these technologies are also analyzed and summarized to provide theoretical reference for the rapid detection of foodborne pathogens in the future. © The Author(s) 2024.
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页码:368 / 377
页数:9
相关论文
共 98 条
  • [41] ZHANG Shasha, Real-time fluorescent quantitative PCR for the detection of common-food-borne pathogenic bacteria[J], Food and Fermentation Sciences and Technology, 52, 4, (2016)
  • [42] SUO Yuanjie, Developent of multiplex real-time PCR for pathogen detection and its application in milk, (2018)
  • [43] HUANG Jin, LIANG Taobo, XU Hengyi, Et al., Research progress of application of digital PCR in biological detection[J], Chinese Bulletin of Life Sciences, 33, 2, (2021)
  • [44] LIU Ke, LI Mengxia, ZHANG Liang, Et al., Research progress of digital PCR technology and its application in food detection[J], Science and Technology of Food Industry, 42, 4, (2021)
  • [45] NYARUABA R, MWALIKO C, KERING K K, Et al., Droplet digital PCR applications in the tuberculosis world[J], Tuberculosis, 117, (2019)
  • [46] BIAN X, JING F, LI G, Et al., A microfluidic droplet digital PCR for simultaneous detection of pathogenic Escherichia coli O157 and Listeria monocytogenes[J], Biosensors and Bioelectronics, 74, pp. 770-777, (2015)
  • [47] LI H, BAI R, ZHAO Z, Et al., Application of droplet digital PCR to detect the pathogens of infectious diseases[J], Bioscience Reports, 38, 6, (2018)
  • [48] SUO Y, YIN W, ZHU Q, Et al., A specific and sensitive aptamer-based digital PCR chip for Salmonella typhimurium detection[J], Biosensors, 12, 7, (2022)
  • [49] CHENG Yiyu, FENG Qiushi, WU Haijing, Et al., Quantitative detection of Listeria monocytogenes in dairy productsby droplet digital PCR[J], China Dairy Industry, 47, 12, (2019)
  • [50] WENG Wenchuan, GUAN Jinxiu, XIE Hui, Et al., Study on PMA-ddPCR method for quantitative detection of live Vibrio parahaemolyticus in aquatic products[J], Modern Food Science and Technology, 35, 6, (2019)