Current Biotechnology ›› 2026, Vol. 16 ›› Issue (4): 843-852.DOI: 10.19586/j.2095-2341.2025.0179
• Special Forum on Detection Technology for Genetically Modified Organisms • Previous Articles Next Articles
Fangrui GAO1(
), Ziyan CHEN1, Tongtong ZHAO1, Hongye JIANG1, Hua ZHANG1, Yichen LIAO1, Xiaodan JIANG1, Fangqi FU1, Yahui LI1,2, Haoqian WANG1(
), Hong CHEN1(
)
Received:2025-12-15
Accepted:2026-01-26
Online:2026-07-25
Published:2026-09-11
Contact:
Haoqian WANG,Hong CHEN
CLC Number:
Fangrui GAO, Ziyan CHEN, Tongtong ZHAO, Hongye JIANG, Hua ZHANG, Yichen LIAO, Xiaodan JIANG, Fangqi FU, Yahui LI, Haoqian WANG, Hong CHEN. PCR Detection Method for Transgenic Maize KJ1003[J]. Current Biotechnology, 2026, 16(4): 843-852.
| 转基因混合样品 | 组成成分(每种转化体质量分数1%) |
|---|---|
| 其他转基因玉米混合样 | Bt11、Bt176、MON810、MON863、GA21、NK603、T25、TC1507、MON89034、MON88017、59122、MIR604、3272、MON87460、DAS40278-9、4114、MON87427、5307、DBN9858、ND207、DBN9501、瑞丰125、DBN9936、MON87411、MZIR098、瑞丰8、BFL4-2、nCX-1 |
| 转基因大豆混合样 | GTS40-3-2、MON89788、A5547-127、A2704-12、356043、305423、CV127、MON87701、MON87708、MON87769、MON87705、FG72、DAS81419-2、DAS-444Ø6-6、MON87751、SHZD3201、CAL16、中黄6106、DBN9004 |
| 转基因水稻混合样 | TT51-1、KF-6、KMD-1、M12、KF-8、KF-2、G6H1、T1C-19 |
| 转基因油菜混合样 | MS1、MS8、RF1、RF2、RF3、T45、Oxy-235、Topas19/2、MON88302、73496 |
| 转基因棉花混合样 | MON1445、MON531、MON15985、LLCOTTON25、MON88913、GHB614、COT102 |
| 非转基因玉米混合样 | 多种非转基因玉米等量混合制成 |
Table 1 Sample information
| 转基因混合样品 | 组成成分(每种转化体质量分数1%) |
|---|---|
| 其他转基因玉米混合样 | Bt11、Bt176、MON810、MON863、GA21、NK603、T25、TC1507、MON89034、MON88017、59122、MIR604、3272、MON87460、DAS40278-9、4114、MON87427、5307、DBN9858、ND207、DBN9501、瑞丰125、DBN9936、MON87411、MZIR098、瑞丰8、BFL4-2、nCX-1 |
| 转基因大豆混合样 | GTS40-3-2、MON89788、A5547-127、A2704-12、356043、305423、CV127、MON87701、MON87708、MON87769、MON87705、FG72、DAS81419-2、DAS-444Ø6-6、MON87751、SHZD3201、CAL16、中黄6106、DBN9004 |
| 转基因水稻混合样 | TT51-1、KF-6、KMD-1、M12、KF-8、KF-2、G6H1、T1C-19 |
| 转基因油菜混合样 | MS1、MS8、RF1、RF2、RF3、T45、Oxy-235、Topas19/2、MON88302、73496 |
| 转基因棉花混合样 | MON1445、MON531、MON15985、LLCOTTON25、MON88913、GHB614、COT102 |
| 非转基因玉米混合样 | 多种非转基因玉米等量混合制成 |
| 编号 | 引物名称及序列(5'→3') | 产物大小/bp | 来源 | |
|---|---|---|---|---|
| 组合1 | LB-F1: 5'-CGCGTGAATACGTAGCTGTG-3' | LB-R1: 5'-GAGCGCGTAAGTCTTGGTCT-3' | 229 | 本研究设计 |
| 组合2 | LB-F2: 5'-GAGCCACACCCAAGTTCCTAA-3' | LB-R2: 5'-TGGCAAATGGGGGATGCTTT-3' | 235 | 本研究设计 |
| 组合3 | LB-F3: 5'-TGTGTCCCAAGTAAACCTCAGT-3' | LB-R3: 5'-CCAAGATGGAGGGAAGGAGC-3' | 253 | 本研究设计 |
| 组合4 | LB-F4: 5'-GTAACAGAAAACACCACGGTCC-3' | LB-R4: 5'-ATGAGGGCGACCAGACCTTA-3' | 165 | 本研究设计 |
| 组合5 | LB-F1: 5'-CGCGTGAATACGTAGCTGTG-3' | LB-R4: 5'-GTAACAGAAAACACCACGGTCC-3' | 302 | 本研究设计 |
| 组合6 | LB-F2: 5'-GAGCCACACCCAAGTTCCTAA-3' | LB-R1: 5'-GAGCGCGTAAGTCTTGGTCT-3' | 131 | 本研究设计 |
| 组合7 | LB-F3: 5'-TGTGTCCCAAGTAAACCTCAGT-3' | LB-R2: 5'-TGGCAAATGGGGGATGCTTT-3' | 306 | 本研究设计 |
| 组合8 | LB-F4: 5'-GTAACAGAAAACACCACGGTCC-3' | LB-R1: 5'-GAGCGCGTAAGTCTTGGTCT-3' | 92 | 本研究设计 |
| 组合9 | RB-F1: 5'-TTTCTCTTCCCCAACCGTGC-3' | RB-R1: 5'-AGCGCGCAAACTAGGATAAA-3' | 143 | 本研究设计 |
| 组合10 | RB-F2: 5'-GTGTTCCAGCTGACCGTGT-3' | RB-R2: 5'-CGCGGTGTCATCTATGTTACT-3' | 145 | 本研究设计 |
| 组合11 | RB-F3: 5'-CGCAGTGCGTTTGAGGC-3' | RB-R1: 5'-AGCGCGCAAACTAGGATAAA-3' | 265 | 本研究设计 |
| 组合12 | RB-F4: 5'-CATGGCCCTGACCGTAGC-3' | RB-R4: 5'-AAATATAGCGCGCAAACTAGGAT-3' | 232 | 本研究设计 |
| 组合13 | RB-F2: 5'-GTGTTCCAGCTGACCGTGT-3' | RB-R1: 5'-AGCGCGCAAACTAGGATAAA-3' | 173 | 本研究设计 |
| 组合14 | RB-F3: 5'-CGCAGTGCGTTTGAGGC-3' | RB-R4: 5'-AAATATAGCGCGCAAACTAGGAT-3' | 271 | 本研究设计 |
| 组合15 | RB-F4: 5'-CATGGCCCTGACCGTAGC-3' | RB-R2: 5'-CGCGGTGTCATCTATGTTACT-3' | 198 | 本研究设计 |
| 组合16 | LB-F1: 5'-TCCTCGCTCCCTTTTCTCTT-3' | LB-R1: 5'-TTAGAGTCCCGCAATTATACATT-3' | 202 | 公司提供 |
Table 2 Qualitative PCR primer set
| 编号 | 引物名称及序列(5'→3') | 产物大小/bp | 来源 | |
|---|---|---|---|---|
| 组合1 | LB-F1: 5'-CGCGTGAATACGTAGCTGTG-3' | LB-R1: 5'-GAGCGCGTAAGTCTTGGTCT-3' | 229 | 本研究设计 |
| 组合2 | LB-F2: 5'-GAGCCACACCCAAGTTCCTAA-3' | LB-R2: 5'-TGGCAAATGGGGGATGCTTT-3' | 235 | 本研究设计 |
| 组合3 | LB-F3: 5'-TGTGTCCCAAGTAAACCTCAGT-3' | LB-R3: 5'-CCAAGATGGAGGGAAGGAGC-3' | 253 | 本研究设计 |
| 组合4 | LB-F4: 5'-GTAACAGAAAACACCACGGTCC-3' | LB-R4: 5'-ATGAGGGCGACCAGACCTTA-3' | 165 | 本研究设计 |
| 组合5 | LB-F1: 5'-CGCGTGAATACGTAGCTGTG-3' | LB-R4: 5'-GTAACAGAAAACACCACGGTCC-3' | 302 | 本研究设计 |
| 组合6 | LB-F2: 5'-GAGCCACACCCAAGTTCCTAA-3' | LB-R1: 5'-GAGCGCGTAAGTCTTGGTCT-3' | 131 | 本研究设计 |
| 组合7 | LB-F3: 5'-TGTGTCCCAAGTAAACCTCAGT-3' | LB-R2: 5'-TGGCAAATGGGGGATGCTTT-3' | 306 | 本研究设计 |
| 组合8 | LB-F4: 5'-GTAACAGAAAACACCACGGTCC-3' | LB-R1: 5'-GAGCGCGTAAGTCTTGGTCT-3' | 92 | 本研究设计 |
| 组合9 | RB-F1: 5'-TTTCTCTTCCCCAACCGTGC-3' | RB-R1: 5'-AGCGCGCAAACTAGGATAAA-3' | 143 | 本研究设计 |
| 组合10 | RB-F2: 5'-GTGTTCCAGCTGACCGTGT-3' | RB-R2: 5'-CGCGGTGTCATCTATGTTACT-3' | 145 | 本研究设计 |
| 组合11 | RB-F3: 5'-CGCAGTGCGTTTGAGGC-3' | RB-R1: 5'-AGCGCGCAAACTAGGATAAA-3' | 265 | 本研究设计 |
| 组合12 | RB-F4: 5'-CATGGCCCTGACCGTAGC-3' | RB-R4: 5'-AAATATAGCGCGCAAACTAGGAT-3' | 232 | 本研究设计 |
| 组合13 | RB-F2: 5'-GTGTTCCAGCTGACCGTGT-3' | RB-R1: 5'-AGCGCGCAAACTAGGATAAA-3' | 173 | 本研究设计 |
| 组合14 | RB-F3: 5'-CGCAGTGCGTTTGAGGC-3' | RB-R4: 5'-AAATATAGCGCGCAAACTAGGAT-3' | 271 | 本研究设计 |
| 组合15 | RB-F4: 5'-CATGGCCCTGACCGTAGC-3' | RB-R2: 5'-CGCGGTGTCATCTATGTTACT-3' | 198 | 本研究设计 |
| 组合16 | LB-F1: 5'-TCCTCGCTCCCTTTTCTCTT-3' | LB-R1: 5'-TTAGAGTCCCGCAATTATACATT-3' | 202 | 公司提供 |
| 样品名称 | 8家实验室验证 | |||||||
|---|---|---|---|---|---|---|---|---|
| Lab1 | Lab2 | Lab3 | Lab4 | Lab5 | Lab6 | Lab7 | Lab8 | |
| 空白对照 | - | - | - | - | - | - | - | - |
| 阴性对照 | - | - | - | - | - | - | - | - |
| 阳性对照 | + | + | + | + | + | + | + | + |
| 1% KJ1003 | + | + | + | + | + | + | + | + |
| 其他转基因玉米混合样 | - | - | - | - | - | - | - | - |
| 转基因大豆混合样 | - | - | - | - | - | - | - | - |
| 转基因水稻混合样 | - | - | - | - | - | - | - | - |
| 转基因油菜混合样 | - | - | - | - | - | - | - | - |
| 转基因棉花混合样 | - | - | - | - | - | - | - | - |
| 非转基因玉米混合样 | - | - | - | - | - | - | - | - |
| 0.1% KJ1003(检出限) | + | + | + | + | + | + | + | + |
Table 3 Validation results for specific qualitative PCR detection method of KJ1003 transformant
| 样品名称 | 8家实验室验证 | |||||||
|---|---|---|---|---|---|---|---|---|
| Lab1 | Lab2 | Lab3 | Lab4 | Lab5 | Lab6 | Lab7 | Lab8 | |
| 空白对照 | - | - | - | - | - | - | - | - |
| 阴性对照 | - | - | - | - | - | - | - | - |
| 阳性对照 | + | + | + | + | + | + | + | + |
| 1% KJ1003 | + | + | + | + | + | + | + | + |
| 其他转基因玉米混合样 | - | - | - | - | - | - | - | - |
| 转基因大豆混合样 | - | - | - | - | - | - | - | - |
| 转基因水稻混合样 | - | - | - | - | - | - | - | - |
| 转基因油菜混合样 | - | - | - | - | - | - | - | - |
| 转基因棉花混合样 | - | - | - | - | - | - | - | - |
| 非转基因玉米混合样 | - | - | - | - | - | - | - | - |
| 0.1% KJ1003(检出限) | + | + | + | + | + | + | + | + |
| [1] | 国际农业生物技术应用服务组织.2019年全球生物技术/转基因作物商业化发展态势[J].中国生物工程杂志,2021, 41(1):114-119. |
| [2] | 刘玮.我国转基因农作物的应用及网络传播研究[J].植物遗传资源学报,2024,25(7):1222-1223. |
| LIU W. Study on the application and network communication of transgenic crops in China[J]. J. Plant Genet. Resour., 2024, 25(7): 1222-1223. | |
| [3] | 樊有鹤,岳思妤,南志标,等.我国玉米种业与产业政策演进及其对草地农业发展的启示[J].草业学报,2024,2025,34(3):189-203. |
| FAN Y H, YUE S Y, NAN Z B, et al.. Evolution of China's maize seed industry and industrial policies and their enlightenment to the development of grassland agriculture[J]. Acta Pratacult. Sin., 2024, 2025, 34(3): 189-203 | |
| [4] | 王瑞娜.生物育种转基因玉米产业化应用栽培技术要点[J].四川农业与农机,2024(5):47-48. |
| WANG R N. Key points of industrialized application and cultivation techniques of genetically modified corn in biological breeding[J]. Sichuan Agric. Agricultural Machinery, 2024(5): 47-48. | |
| [5] | 梦尧,邹卓瑜,孟凡军.转基因作物产业现状及展望[J].农业发展与金融,2024(6):44-46. |
| MENG Y, ZOU Z Y, MENG F J. Current status and future prospect of genetically modif ied crops industry[J]. Agric. Dev. Finance, 2024(6): 44-46. | |
| [6] | 罗屹.中国生物育种大豆产业化存在的问题及对策建议:基于部分试点地区的调研[J].中国油料作物学报, 2025, 47(4):797-805. |
| LUO Y. Problems and countermeasures in the industrialization of biotechnologically bred soybeans in China: sased on surveys in some pilot areas[J]. Chin. J. Oil Crop Sci., 2025, 47(4): 797-805. | |
| [7] | 肖芳,李允静,武玉花,等.抗逆大豆IND-ØØ41Ø-5转化体特异性定性PCR检测方法的建立及其标准化[J].中国油料作物学报,2024,46(5):1148-1156. |
| XIAO F, LI Y J, WU Y H, et al.. Establishment and standardization of transformation event-specific qualitative PCR detection method for stress-tolerant soybean IND-ØØ41Ø-5[J]. Chin. J. Oil Crop Sci., 2024, 46(5): 1148-1156. | |
| [8] | 刘双,闫嵩,刘娜,等.转基因大豆DBN9004转化体特异性定性PCR检测方法[J/OL].分子植物育种,1-17[2024-03-15]. . |
| LIU S, YAN S, LIU N, et al.. Qualitative PCR detection method for transformant specificity of transgenic soybean DBN9004[J/OL]. Mol. Plant Breed., 1-17[2024-03-15]. . | |
| [9] | 李凌燕,肖冰,张旭冬,等.转基因耐除草剂玉米MON87419品系特异性定性PCR检测方法的建立[J].江苏农业科学,2023,51(1):50-57. |
| LI L Y, XIAO B, ZHANG X D, et al.. Establishment of specific qualitative PCR method for detection of genetically modified herbicide-tolerant maize MON87419[J]. Jiangsu Agric. Sci., 2023, 51(1): 50-57. | |
| [10] | 马卉,汪秀峰,李莉,等.转基因耐除草剂大豆A2704-12定性PCR检测方法研究[J].分子植物育种,2011,9(3):376-380. |
| MA H, WANG X F, LI L, et al.. Establishment of an event-specific qualitative PCR method for detection of herbicide-tolerance genetically modified soybean A2704-12[J]. Mol. Plant Breed., 2011, 9(3): 376-380. | |
| [11] | 李飞武,李葱葱,董立明,等.转基因大豆MON89788转化体特异性定性PCR检测[J].安徽农业科学,2010,38(13):6679-6682. |
| LI F W, LI C C, DONG L M, et al.. Establishment of event-specific qualitative PCR method for transgenic soybean MON89788[J]. J. Anhui Agric. Sci., 2010, 38(13): 6679-6682. | |
| [12] | 杨立桃,蒋玲曦,沈凯琳,等.转基因棉花MON88913转化体特异性定性、定量PCR检测方法[J].食品安全质量检测技术,2009,1(1):10-19. |
| YANG L T, JIANG L X, SHEN K L, et al.. Event-specific qualitative and quantitative PCR detection methods for genetically modified cotton MON88913[J]. Food Saf. Qual. Detect. Technol., 2009, 1(1): 10-19. | |
| [13] | 杨阳,王叶,范金杰,等.转基因棉花MON757转化体特异性PCR检测方法及应用[J].农业生物技术学报,2016,24(6):908-918. |
| YANG Y, WANG Y, FAN J J, et al.. Event-specific PCR detection methods of genetically modified cotton (Gossypium hirsutum) MON757 and their application[J]. J. Agric. Biotechnol., 2016, 24(6): 908-918. | |
| [14] | 梁利霞,宛煜嵩,金芜军.利用复合PCR方法同时检测三种转基因水稻[J].基因组学与应用生物学,2014,33(1):16-21. |
| LIANG L X, WAN Y S, JIN W J. The event-specific multiplex PCR detection method for three genetically modified rice[J]. Genom. Appl. Biol., 2014, 33(1): 16-21. | |
| [15] | 李鹏,张琳,叶吉妮,等.抗病转基因水稻M12及其产品成分的定性、定量PCR检测方法[J].作物学报,2018,44(7):949-955. |
| LI P, ZHANG L, YE J N, et al.. A qualitative and quantitative PCR detection method for disease-resistant genetically modified rice M12 and its derivates[J]. Acta Agron. Sin., 2018, 44(7): 949-955. | |
| [16] | 中华人民共和国农业农村部. 转基因植物及其产品成分检测抗虫耐除草剂玉米ZZM030及其衍生品种定性PCR方法:农业农村部公告第423号—7—2021 [S].北京:中国农业出版社, 2021. |
| [17] | 中华人民共和国农业农村部. 转基因植物及其产品成分检测 耐除草剂大豆ZH10-6及其衍生品种定性PCR方法:农业农村部公告第323号—20—2020 [S].北京:中国农业出版社, 2020. |
| [18] | 中华人民共和国农业农村部. 转基因植物及其产品成分检测 抗虫棉花 及其衍生品种定性PCR方法:农业农村部公告第423号—4—2021[S].北京:中国农业出版社,2021. |
| [19] | 中华人民共和国农业部. 转基因植物及其产品成分检测 玉米内标准基因定性PCR方法:农业部1861号公告—3—2012 [S].北京:中国农业出版社,2013. |
| [20] | 中华人民共和国农业部. 转基因植物及其产品成分检测定性PCR方法制定指南:农业部2259号公告—4—2015 [S].北京:中国农业出版社,2015. |
| [21] | ENGL-GMFF. Definition of minimum performance requirements for analytical methods of GMO testing[M]. European Network of GMO Laboratories, 2015. |
| [22] | 常丽娟,梁晋刚,宋君,等.转基因玉米ND207转化事件特异性定性PCR检测方法及其标准化[J].作物学报,2023,49(7):1818-1828. |
| CHANG L J, LIANG J G, SONG J, et al.. Event-specific PCR detection method of transgenic maize ND207 and its standardization[J]. Acta Agron. Sin., 2023, 49(7): 1818-1828. | |
| [23] | 李筠,柴昕岳,刘晋,等.转基因生物育种现状及其检测技术研究进展[J].农业技术与装备,2024(11):119-121. |
| LI J, CHAI X Y, LIU J, et al.. Current status and research progress on the detection techniques of genetically modified organism breeding[J]. Agric. Technol. Equip., 2024(11): 119-121. | |
| [24] | SALISU I B, SHAHID A A, YAQOOB A, et al.. Molecular approaches for high throughput detection and quantification of genetically modified crops: a review[JOL]. Front. Plant Sci., 2017, 8: 1670[2025-11-30]. . |
| [25] | XU C, LI L, JIN W, et al.. Recombinase polymerase amplification (RPA) of CaMV-35S promoter and nos Terminator for rapid detection of genetically modified crops[J]. Int. J. Mol. Sci., 2014, 15(10): 18197-18205. |
| [26] | LIU M M, ZHANG X J, GAO Y, et al.. Molecular characterization and efficacy evaluation of a transgenic corn event for insect resistance and glyphosate tolerance[J]. J. Zhejiang Univ. Sci. B, 2018, 19(8): 610-619. |
| [27] | CHU H, TU R, NIU F, et al.. A new PCR/LDR-based multiplex functional molecular marker for marker-assisted breeding in rice[J]. Rice Sci., 2021, 28(1): 6-10. |
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