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玉米自交系InDel标记现场检测技术的研发与应用

王蕊 田红丽 易红梅 刘亚维 江彬 吴明生 匡猛 王凤格 胡丽萍 赵伟 刘志浩 张茗起 卿香玉 许理文 霍永学 葛建镕

中国农业科学2026,Vol.59Issue(13):2776-2788,13.
中国农业科学2026,Vol.59Issue(13):2776-2788,13.DOI:10.3864/j.issn.0578-1752.2026.13.002

玉米自交系InDel标记现场检测技术的研发与应用

Development and Application of InDel Marker Detection Technology for Field Identification of Maize Inbred Lines

王蕊 1田红丽 1易红梅 1刘亚维 1江彬 2吴明生 3匡猛 4王凤格 1胡丽萍 1赵伟 1刘志浩 1张茗起 1卿香玉 1许理文 1霍永学 1葛建镕1

作者信息

  • 1. 北京市农林科学院玉米研究所/农业农村部农作物DNA指纹创新利用重点实验室(部省共建)/玉米DNA 指纹及分子育种北京市重点实验室,北京 100097
  • 2. 深圳市纬星软件有限公司,广东 深圳 518000
  • 3. 北京市种子管理站,北京 100044
  • 4. 三亚中国农业科学院国家南繁研究院,海南 三亚 572024
  • 折叠

摘要

Abstract

[Objective]Variety identification is vital for the security of agricultural production and integrity of seed markets.Current molecular approaches for identification of crop varieties predominantly require specialized laboratory equipment,resulting in relatively slow turnaround times and high costs.The Maize Point-of-Genuineness(M-POG)identification kit aims to extend variety identification from the laboratory to the field,address the lack of rapid on-site detection methods,and support the establishment of a rapid,efficient,and traceable molecular detection system for the modern seed industry.[Method]Candidate InDel loci from the MaizeIDP50K chip were screened using a stepwise dichotomous partitioning method in combination with a dynamic optimization algorithm.Nine maize elite inbred lines and three closely related maize varieties were used to design dominant and co-dominant primers,which were evaluated by conducting quantitative real-time PCR and fluorescence capillary electrophoresis.An optimal combination algorithm was used to screen and determine the core set of loci.Based on the cycle threshold(Ct)value for the dominant primer for the core markers,a barcode conversion mechanism suitable for field detection was established.The detection thresholds were set using the core loci fingerprints of 2 270 maize inbred lines.The consistency and single sample detection efficiency were evaluated by comparison with the traditional method for variety identification using simple sequence repeat(SSR)markers,thereby verifying the accuracy and practicability of the M-POG method.[Result]Eighty InDel candidate loci from the chip were screened for which 76 pairs of dominant primers were designed.Among these loci,31 high quality loci showed clear qPCR amplification curves,high repeatability,and uniform amplification efficiency.Ultimately,16 highly discriminative core loci were identified,achieving a variety recognition rate of 95.83%across the 2 270 inbred lines.The fingerprint detection threshold for each locus was calculated;loci with Ct<28 were classified as dominant type(coded as 1),and those with Ct>30 were classified as recessive type(coded as 0),enabling generation of a DNA fingerprinting for M-POG detection.Pairwise comparisons among the 2 270 inbred lines revealed that 98.29%of the pairs of lines differed at four or more loci.A comparative analysis between the M-POG method and the SSR molecular marker method,conducted using elite inbred lines and closely related varieties,showed that the samples were consistently discriminated by both methods in 90.91%of the comparisons.This result demonstrated the reliability of the M-POG method.Thus,the M-POG approach enables efficient screening of genetically dissimilar inbred lines,thereby substantially reducing the number of samples requiring further laboratory analysis.The complete field detection process required only 42 min,approximately one-quarter of the time required by standard identification procedures.[Conclusion]Sixteen core InDel loci were selected for the M-POG method,achieving a variety recognition rate exceeding 95%.Based on the InDel on-site detection results,the minimum number of differential loci required for variety discrimination was determined.Development of the M-POG kit enables rapid and accurate identification of maize inbred lines in the field.

关键词

品种鉴定/玉米/InDel标记/现场检测/核酸检测技术/实时荧光定量PCR

Key words

variety identification/maize/InDel marker/field test/nucleic acid detection technology/quantitative real-time PCR

引用本文复制引用

王蕊,田红丽,易红梅,刘亚维,江彬,吴明生,匡猛,王凤格,胡丽萍,赵伟,刘志浩,张茗起,卿香玉,许理文,霍永学,葛建镕..玉米自交系InDel标记现场检测技术的研发与应用[J].中国农业科学,2026,59(13):2776-2788,13.

基金项目

北京市农林科学院科技创新能力建设专项(KJCX20230301) (KJCX20230301)

中国农业科学

0578-1752

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