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Visual Detection of Multiple Nucleic Acids in a Capillary Array
Published on: November 15, 2017
Multiplex PCR Fluorescence Method for Detection of Genetically Modified Maize Strains
Wenxiu Yin1, Wenxin Zhang2, Quan Zhang1
1Species Identification Laboratory, Zhejiang Academy of Science and Technology for Inspection and Quarantine, Hangzhou 310008, China.
Current Issues in Molecular Biology
|July 28, 2026
Summary
A new multiplex fluorescence PCR-capillary electrophoresis platform enables high-throughput detection of 27 genetically modified (GM) genes and events. This advanced method accurately identifies GM maize strains and detects GM content down to 0.1%.
Area of Science:
- Agricultural Biotechnology
- Molecular Diagnostics
- Food Safety Analysis
Background:
- Genetically modified (GM) crops present regulatory and traceability challenges.
- Traditional PCR methods lack the high-throughput, specificity, and sensitivity needed for GM detection.
Purpose of the Study:
- To develop a multiplex fluorescence PCR-capillary electrophoresis platform for simultaneous GM detection.
- To enhance the efficiency and accuracy of transgenic organism identification in food and feed.
Main Methods:
- Developed a platform labeling endogenous and exogenous gene primers with distinct fluorescent groups.
- Utilized multiplex PCR and capillary electrophoresis for simultaneous detection of 27 GM-related genes and events.
- Validated the platform with GM maize events and mixed samples.
Main Results:
- Accurate identification of all seven tested GM maize events.
- Precise discrimination of a mixed sample containing five GM maize varieties.
- Achieved a detection sensitivity of 0.1% for GM content.
Conclusions:
- The developed platform simplifies workflows while maintaining high analytical performance for GM detection.
- Combines multicolor fluorescence and capillary electrophoresis for robust, high-resolution multiplex detection.
- Offers a novel tool for rapid transgenic crop detection in food safety, import/export inspection, and biosafety surveillance.
Keywords:
capillary electrophoresisevent-specific identificationfood safety monitoringhigh-throughput screeningtransgenic maize (Zea mays L.)
