生物技术进展 ›› 2026, Vol. 16 ›› Issue (4): 797-804.DOI: 10.19586/j.2095-2341.2026.0037

• 转基因检测技术专题 • 上一篇    下一篇

基于微流控平台的转基因成分现场快速鉴定系统的建立

傅芳奇1(), 金鑫浩2(), 付伟1, 蒋鹏翀2, 高静2, 崔丽2, 蔡亦梅2, 任鲁风2,3(), 陈红1()   

  1. 1.农业农村部科技发展中心,北京 100176
    2.北京中科生仪科技有限公司,北京 101111
    3.烟台大学生命科学学院,山东 烟台 264006
  • 收稿日期:2026-02-13 接受日期:2026-04-30 出版日期:2026-07-25 发布日期:2026-09-11
  • 通信作者: 任鲁风,陈红
  • 作者简介:傅芳奇 E-mail: 2570167864@qq.com
    金鑫浩 E-mail: jinxinhao@ibs-bj.com
  • 基金资助:
    科技创新2030—重大项目(2022ZD04020);国家重点研发计划项目(2021YFC2401000);国家重点研发计划项目(2024YDF1200100)

Establishment of On-site Rapid Identification System for Transgenic Ingredients Based on Microfluidic Platform

Fangqi FU1(), Xinhao JIN2(), Wei FU1, Pengchong JIANG2, Jing GAO2, Li CUI2, Yimei CAI2, Lufeng REN2,3(), Hong CHEN1()   

  1. 1.Development Center of Science and Technology,Ministry of Agriculture and Rural Affairs,Beijing 100176,China
    2.Beijing Integrated BioSystems Co. ,Ltd. ,Beijing 101111,China
    3.School of Life Sciences,Yantai University,Shandong Yantai 264006,China
  • Received:2026-02-13 Accepted:2026-04-30 Online:2026-07-25 Published:2026-09-11
  • Contact: Lufeng REN,Hong CHEN

摘要:

转基因作物的精准鉴别与监管是生物安全与种业发展的核心需求。现有主流检测方法依赖实验室环境,难以满足现场快速、多靶标并行鉴定的实际需求。研究旨在建立一种集核酸提取、扩增与检测于一体的现场化快速鉴定系统。基于一款集成高单色性激发光源、微型光谱仪及半导体制冷模块的手持式转基因一体化现场快检设备,凭借微流控技术及精密注塑工艺开发了配套的多靶标核酸检测芯片与样本处理管。该系统对植物种子、叶片等样本可在30 min内实现“样本进-结果出”的全自动检测,单次检测最多覆盖7个靶标,人工操作时间少于1 min,且内置电池充电1次即可完成8次检测。在模拟样品中,对MON810转化体的检出限达0.1%(质量分数),无非特异性扩增。重复性实验显示,不同人员、仪器及时间点检测结果的Ct 值变异系数(coefficient of variation,CV)小于1.5%,与实验室常规实时荧光PCR方法结果一致。研究建立了一种精准、快速、便携的转基因成分现场鉴定新方法,为基层监管、种业质控等场景提供了高效的一体化解决方案。

关键词: 微流控技术, 现场快速检测, 实时荧光PCR, 转基因鉴定

Abstract:

Accurate identification and supervision of genetically modified (GM) crops are critical for biosafety assurance and seed industry development. Most existing detection methods rely on laboratory environments and fail to meet the practical requirements for rapid, on-site, and multi-target parallel identification. This study aimed to establish an integrated on-site rapid detection system that enables one-stop nucleic acid extraction, amplification and detection. Based on a handheld integrated GM on-site rapid detection device equipped with a high-monochromatic excitation light source, miniature spectrometer and semiconductor refrigeration module, supporting multi-target nucleic acid detection chips and sample processing tubes were developed via microfluidic technology and precision injection molding. The system achieves fully automated “sample-in, result-out” detection for plant seeds, leaves and other samples within 30 minutes, supporting simultaneous detection of up to seven targets with less than 1 minute of manual operation. The built-in battery allows eight independent detections on one full charge. In simulated samples, the limit of detection (LOD) for the MON810 event reached 0.1% (mass fraction) with no non-specific amplification. Reproducibility tests showed that the coefficient of variation (CV) of Ct values across different operators, instruments and test time points was less than 1.5%, and the results were highly consistent with those of conventional laboratory real-time PCR. This developed method enables accurate, rapid and portable on-site identification of GM ingredients, providing an efficient integrated solution for grassroots supervision and seed industry quality control.

Key words: microfluidic technology, on-site rapid detection, real-time PCR, GM identification

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