Multiplex enrichment quantitative PCR (ME-qPCR): a high-throughput, highly sensitive detection method for GMO identification

被引:8
|
作者
Fu, Wei [1 ]
Zhu, Pengyu [1 ]
Wei, Shuang [2 ]
Du Zhixin [3 ]
Wang, Chenguang [1 ]
Wu, Xiyang [4 ]
Li, Feiwu [5 ]
Zhu, Shuifang [1 ]
机构
[1] Chinese Acad Inspect & Quarantine, Inst Plant Quarantine, Beijing Econ Technol Dev Area, Ronghuananlu 11, Beijing 100176, Peoples R China
[2] Shantou Entry Exit Inspect & Quarantine Bur, 126 Jinsha Rd, Shantou 515041, Guangdong, Peoples R China
[3] Guangxi Entry Exit Inspect & Quarantine Bur, 38 Binhu Rd, Nanning 530028, Guangxi, Peoples R China
[4] Jinan Univ, Dept Food Sci & Engn, Guangzhou 510632, Guangdong, Peoples R China
[5] Jilin Acad Agr Sci, Inst Agr Stand & Testing Technol, 1363 Shengtai St, Changchun 130033, Jilin, Peoples R China
关键词
ME-qPCR; GMO; Multiplex; High-throughput detection; Highly sensitive; REAL-TIME PCR; SNP DISCOVERY; ARRAY CHIP; TANDEM PCR; EXPRESSION; DNA;
D O I
10.1007/s00216-017-0209-x
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Among all of the high-throughput detection methods, PCR-based methodologies are regarded as the most cost-efficient and feasible methodologies compared with the next-generation sequencing or ChIP-based methods. However, the PCR-based methods can only achieve multiplex detection up to 15-plex due to limitations imposed by the multiplex primer interactions. The detection throughput cannot meet the demands of high-throughput detection, such as SNP or gene expression analysis. Therefore, in our study, we have developed a new high-throughput PCR-based detection method, multiplex enrichment quantitative PCR (ME-qPCR), which is a combination of qPCR and nested PCR. The GMO content detection results in our study showed that ME-qPCR could achieve high-throughput detection up to 26-plex. Compared to the original qPCR, the Ct values of ME-qPCR were lower for the same group, which showed that ME-qPCR sensitivity is higher than the original qPCR. The absolute limit of detection for ME-qPCR could achieve levels as low as a single copy of the plant genome. Moreover, the specificity results showed that no cross-amplification occurred for irrelevant GMO events. After evaluation of all of the parameters, a practical evaluation was performed with different foods. The more stable amplification results, compared to qPCR, showed that ME-qPCR was suitable for GMO detection in foods. In conclusion, ME-qPCR achieved sensitive, high-throughput GMO detection in complex substrates, such as crops or food samples. In the future, ME-qPCR-based GMO content identification may positively impact SNP analysis or multiplex gene expression of food or agricultural samples.
引用
收藏
页码:2655 / 2664
页数:10
相关论文
共 50 条
  • [41] Highly Sensitive and High-Throughput Method for the Analysis of Bisphenol Analogues and Their Halogenated Derivatives in Breast Milk
    Niu, Yumin
    Wang, Bin
    Zhao, Yunfeng
    Zhang, Jing
    Shao, Bing
    JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2017, 65 (48) : 10452 - 10463
  • [42] High Sensitive Method for the Simultaneous Detection of Pathogens in Chrysanthemum morifolium: A Nested Multiplex PCR Assay
    Wang, Hefei
    Huang, Haizhi
    Cao, Zhenyan
    Yang, Yihua
    Wu, Yinfei
    Shentu, Xuping
    Yu, Xiaoping
    JOURNAL OF FOOD QUALITY, 2025, 2025 (01)
  • [43] An Integrated Platform and Method for Rapid High-Throughput Quantitative Detection of Organophosphorus Pesticide Residues
    Yang, Ning
    Tao, Shoulong
    Mao, Hanping
    Wei, Mingji
    Fu, Jiuju
    Song, Wei
    IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT, 2024, 73 : 1 - 11
  • [44] High-Throughput Transcription-mediated amplification on the Hologic Panther is a highly sensitive method of detection for SARS-CoV-2
    Gorzalski, Andrew J.
    Tian, Honglin
    Laverdure, Chris
    Morzunov, Sergey
    Verma, Subhash C.
    VanHooser, Stephanie
    Pandori, Mark W.
    JOURNAL OF CLINICAL VIROLOGY, 2020, 129
  • [45] High-Throughput and Sensitive Quantification of Circulating Tumor DNA by Microfluidic-Based Multiplex PCR and Next-Generation Sequencing
    Guan, Yinghui
    Mayba, Oleg
    Sandmann, Thomas
    Lu, Shan
    Choi, Younjeong
    Darbonne, Walter C.
    Leveque, Vincent
    Ryner, Lisa
    Humke, Eric
    Tam, Nga W. R.
    Sujathasarma, Sundari
    Cheung, Anna
    Bourgon, Richard
    Lackner, Mark R.
    Wang, Yulei
    JOURNAL OF MOLECULAR DIAGNOSTICS, 2017, 19 (06): : 921 - 932
  • [46] An accurate, specific, sensitive, high-throughput method based on a microsphere immunoassay for multiplex detection of three viruses and bacterial fruit blotch bacterium in cucurbits
    Charlermroj, Ratthaphol
    Makornwattana, Manlika
    Himananto, Orawan
    Seepiban, Channarong
    Phuengwas, Sudtida
    Warin, Nuchnard
    Gajanandana, Oraprapai
    Karoonuthaisiri, Nitsara
    JOURNAL OF VIROLOGICAL METHODS, 2017, 247 : 6 - 14
  • [47] Direct multiplex sequencing (DMPS)-a novel method for targeted high-throughput sequencing of ancient and highly degraded DNA
    Stiller, Mathias
    Knapp, Michael
    Stenzel, Udo
    Hofreiter, Michael
    Meyer, Matthias
    GENOME RESEARCH, 2009, 19 (10) : 1843 - 1848
  • [48] A HIGHLY SENSITIVE, ONE-STEP QUANTITATIVE RT-PCR METHOD FOR THE DETECTION OF EGFRVIII
    Li, Gordon
    Wong, Albert
    NEURO-ONCOLOGY, 2008, 10 (05) : 761 - 761
  • [49] Validation of a High-Throughput Multiplex Genetic Detection System for Helicobacter pylori Identification, Quantification, Virulence, and Resistance Analysis
    Zhang, Yanmei
    Zhao, Fuju
    Kong, Mimi
    Wang, Shiwen
    Nan, Li
    Hu, Binjie
    Olszewski, Michal A.
    Miao, Yingxin
    Ji, Danian
    Jiang, Wenrong
    Fang, Yi
    Zhang, Jinghao
    Chen, Fei
    Xiang, Ping
    Wu, Yong
    Zhao, Hu
    FRONTIERS IN MICROBIOLOGY, 2016, 7
  • [50] A high-throughput screening method for GM soybean events based on single universal primer multiplex PCR and capillary electrophoresis
    Dong, Liming
    Li, Congcong
    Xing, Zhenjuan
    He, Yuxuan
    Xia, Wei
    Liu, Yijun
    Long, Likun
    Li, Feiwu
    JOURNAL OF CONSUMER PROTECTION AND FOOD SAFETY, 2024, 19 (04) : 445 - 454