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茄科作物重要病原物多目标现场快速检测方法的研究与应用

刘德凯 赵文军 蔡璐璐 田茜 金鑫浩 王梦雨 周洋 吴晓颖 蒲姝旸 李丹 张瑜

热带作物学报2026,Vol.47Issue(5):1286-1297,12.
热带作物学报2026,Vol.47Issue(5):1286-1297,12.DOI:10.3969/j.issn.1000-2561.2026.05.017

茄科作物重要病原物多目标现场快速检测方法的研究与应用

Research and Application of Multiplex On-site Rapid Detection Methods for Major Pathogens in Solanaceous Crops

刘德凯 1赵文军 2蔡璐璐 2田茜 2金鑫浩 3王梦雨 4周洋 5吴晓颖 5蒲姝旸 5李丹 3张瑜3

作者信息

  • 1. 三亚中国检科院生物安全中心,海南 三亚 572024
  • 2. 三亚中国检科院生物安全中心,海南 三亚 572024||中国质量检验检测科学研究院,北京 100176
  • 3. 北京中科生仪科技有限公司,北京 100176
  • 4. 中国质量检验检测科学研究院,北京 100176
  • 5. 海南省南繁管理局,海南 三亚 572000
  • 折叠

摘要

Abstract

Strict seed quarantine is crucial for preventing the long-distance spread of seed-borne diseases in Solanaceae crops and ensuring agricultural biosafety.Crops like tomato and pepper hold high economic value and extensive indus-trial influence.However,devastating quarantine pathogens,including Clavibacter michiganensis subsp.michiganensis,Tomato leaf curl New Delhi virus,Tomato spotted wilt virus and Tomato brown rugose fruit virus,pose a severe threat to industry security.Current molecular detection techniques for the mixed bacterial and viral infections often suffer from complex procedures,reliance on specialized laboratories and personnel,and difficulties in achieving rapid,integrated on-site testing.To address the challenges,this study developed a fully automated,rapid on-site detection system based on microfluidic chip and real-time quantitative PCR technology.The system integrates modules for co-extraction of nucleic acids,coordinated multi-target amplification and visual interpretation of results.It achieves multiplex detection of the aforementioned four pathogens within a total process time of only 36 minutes.The constructed P1000F integrated de-tection system demonstrated limits of detection of 4.50×104 CFU/mL for the bacterial pathogen and 1.00×101 copies/μL for each of the three viral pathogens.Testing with actual samples confirmed its good applicability and reliability.Compared with current standard methods(EPPO standards and national standards),the detection sensitivity of this system was generally equivalent.In conclusion,the P1000F integrated detection method established in this study is efficient and accurate.It eliminates dependence on traditional laboratory environments and specialized technical personnel,providing reliable technical support for the rapid on-site screening and port quarantine of tomato seed-borne diseases.

关键词

茄科作物/检疫性病害/微流控技术/多目标检测/现场快速检测

Key words

Solanaceae crops/quarantine diseases/microfluidic technology/multi-target detection/on-site rapid detection

分类

农业科技

引用本文复制引用

刘德凯,赵文军,蔡璐璐,田茜,金鑫浩,王梦雨,周洋,吴晓颖,蒲姝旸,李丹,张瑜..茄科作物重要病原物多目标现场快速检测方法的研究与应用[J].热带作物学报,2026,47(5):1286-1297,12.

基金项目

海南省重点研发项目(No.ZDYF2024XDNY276) (No.ZDYF2024XDNY276)

三亚崖州湾科技城科技专项(No.SKJC-JYRC-2024-53). (No.SKJC-JYRC-2024-53)

热带作物学报

1000-2561

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