Current Biotechnology ›› 2026, Vol. 16 ›› Issue (4): 833-842.DOI: 10.19586/j.2095-2341.2026.0027
• Special Forum on Detection Technology for Genetically Modified Organisms • Previous Articles Next Articles
Tongtong ZHAO(
), Ziyan CHEN, Hua ZHANG, Xinyao PEI, Chenyao WANG, Jiake LI, Dan WANG, Yueqiu ZHANG, Wei FU(
), Hong CHEN(
)
Received:2026-02-06
Accepted:2026-04-03
Online:2026-07-25
Published:2026-09-11
Contact:
Wei FU,Hong CHEN
CLC Number:
Tongtong ZHAO, Ziyan CHEN, Hua ZHANG, Xinyao PEI, Chenyao WANG, Jiake LI, Dan WANG, Yueqiu ZHANG, Wei FU, Hong CHEN. A Qualitative Detection Method for Genetically Modified Maize KJ1003 by Real-time PCR[J]. Current Biotechnology, 2026, 16(4): 833-842.
| 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、浙大瑞丰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、浙大瑞丰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 |
引物和探针 (5′端) | 序列(5′→3′) | 引物和探针 (3′端) | 序列(5′→3′) |
|---|---|---|---|
| RB-qF1 | 5′-CGTGTCCTCGCTCCCTTTTC-3′ | LB-qF1 | 5′-CGCGTGAATACGTAGCTGTG-3′ |
| RB-qF2 | 5′-GCTCCCTTTTCTCTTCCCCAA-3′ | LB-qF2 | 5′-TGTGAAAAGAGAACGCGTGAAT-3′ |
| RB-qF3 | 5′-GTCCTCGCTCCCTTTTCTCTT-3′ | LB-qF3 | 5′-TGTGTCCCAAGTAAACCTCAGT-3′ |
| RB-qR1 | 5′-ATAGCGCGCAAACTAGGATAAA-3′ | LB-qR1 | 5′-CCCAAGTCCCACTCCTTGTG-3′ |
| RB-qR2 | 5′-AGCGCGCAAACTAGGATAA-3′ | LB-qR2 | 5′-AACCGGACCGTGGTGTTTT-3′ |
| RB-qR3 | 5′-ATAGCGCGCAAACTAGGAT-3′ | LB-qR3 | 5′-GCGCGTAAGTCTTGGTCTTC-3′ |
| RB-qP1 | 5′-FAM-CAGATTGTCGTTTCCCGCCT-BHQ1-3′ | LB-qP1 | 5′-FAM-GTGGCTCTAGCCGCTCCCAG-BHQ1-3′ |
| RB-qP2 | 5′-FAM-TGTCGTTTCCCGCCTTCAGT-BHQ1-3′ | LB-qP2 | 5′-FAM-CTCTAGCCGCTCCCAGTCGA-BHQ1-3′ |
Table 2 Sequences of qualitative PCR primers and probes
引物和探针 (5′端) | 序列(5′→3′) | 引物和探针 (3′端) | 序列(5′→3′) |
|---|---|---|---|
| RB-qF1 | 5′-CGTGTCCTCGCTCCCTTTTC-3′ | LB-qF1 | 5′-CGCGTGAATACGTAGCTGTG-3′ |
| RB-qF2 | 5′-GCTCCCTTTTCTCTTCCCCAA-3′ | LB-qF2 | 5′-TGTGAAAAGAGAACGCGTGAAT-3′ |
| RB-qF3 | 5′-GTCCTCGCTCCCTTTTCTCTT-3′ | LB-qF3 | 5′-TGTGTCCCAAGTAAACCTCAGT-3′ |
| RB-qR1 | 5′-ATAGCGCGCAAACTAGGATAAA-3′ | LB-qR1 | 5′-CCCAAGTCCCACTCCTTGTG-3′ |
| RB-qR2 | 5′-AGCGCGCAAACTAGGATAA-3′ | LB-qR2 | 5′-AACCGGACCGTGGTGTTTT-3′ |
| RB-qR3 | 5′-ATAGCGCGCAAACTAGGAT-3′ | LB-qR3 | 5′-GCGCGTAAGTCTTGGTCTTC-3′ |
| RB-qP1 | 5′-FAM-CAGATTGTCGTTTCCCGCCT-BHQ1-3′ | LB-qP1 | 5′-FAM-GTGGCTCTAGCCGCTCCCAG-BHQ1-3′ |
| RB-qP2 | 5′-FAM-TGTCGTTTCCCGCCTTCAGT-BHQ1-3′ | LB-qP2 | 5′-FAM-CTCTAGCCGCTCCCAGTCGA-BHQ1-3′ |
| 编号 | 引物名称及序列(5′→3′) | 产物大小/bp |
|---|---|---|
| 组合1 | RB-qF1/RB-qR1/RB-qP1 | 161 |
| 组合2 | RB-qF1/RB-qR1/RB-qP2 | 161 |
| 组合3 | RB-qF2/RB-qR2/RB-qP1 | 150 |
| 组合4 | RB-qF2/RB-qR2/RB-qP2 | 150 |
| 组合5 | RB-qF3/RB-qR3/RB-qP1 | 158 |
| 组合6 | RB-qF3/RB-qR3/RB-qP2 | 158 |
| 组合7 | RB-qF1/RB-qR2/RB-qP1 | 159 |
| 组合8 | RB-qF1/RB-qR2/RB-qP2 | 159 |
| 组合9 | LB-qF1/LB-qR1/LB-qP1 | 188 |
| 组合10 | LB-qF1/LB-qR1/LB-qP2 | 188 |
| 组合11 | LB-qF2/LB-qR2/LB-qP1 | 176 |
| 组合12 | LB-qF2/LB-qR2/LB-qP2 | 200 |
| 组合13 | LB-qF3/LB-qR3/LB-qP1 | 200 |
| 组合14 | LB-qF3/LB-qR3/LB-qP2 | 200 |
| 组合15 | LB-qF2/LB-qR1/LB-qP1 | 200 |
| 组合16 | LB-qF2/LB-qR1/LB-qP2 | 200 |
Table 3 Combinations of qualitative PCR primers and probes
| 编号 | 引物名称及序列(5′→3′) | 产物大小/bp |
|---|---|---|
| 组合1 | RB-qF1/RB-qR1/RB-qP1 | 161 |
| 组合2 | RB-qF1/RB-qR1/RB-qP2 | 161 |
| 组合3 | RB-qF2/RB-qR2/RB-qP1 | 150 |
| 组合4 | RB-qF2/RB-qR2/RB-qP2 | 150 |
| 组合5 | RB-qF3/RB-qR3/RB-qP1 | 158 |
| 组合6 | RB-qF3/RB-qR3/RB-qP2 | 158 |
| 组合7 | RB-qF1/RB-qR2/RB-qP1 | 159 |
| 组合8 | RB-qF1/RB-qR2/RB-qP2 | 159 |
| 组合9 | LB-qF1/LB-qR1/LB-qP1 | 188 |
| 组合10 | LB-qF1/LB-qR1/LB-qP2 | 188 |
| 组合11 | LB-qF2/LB-qR2/LB-qP1 | 176 |
| 组合12 | LB-qF2/LB-qR2/LB-qP2 | 200 |
| 组合13 | LB-qF3/LB-qR3/LB-qP1 | 200 |
| 组合14 | LB-qF3/LB-qR3/LB-qP2 | 200 |
| 组合15 | LB-qF2/LB-qR1/LB-qP1 | 200 |
| 组合16 | LB-qF2/LB-qR1/LB-qP2 | 200 |
| 样品名称 | 8家实验室验证结果 | |||||||
|---|---|---|---|---|---|---|---|---|
| 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 | - | - | - | - | - | - | - | - |
| 0.05%KJ1003(检出限) | + | + | + | + | + | + | + | + |
Table 4 Summary of verification results for event-specific real-time fluorescent PCR qualitative detection method of KJ1003 transformant
| 样品名称 | 8家实验室验证结果 | |||||||
|---|---|---|---|---|---|---|---|---|
| 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 | - | - | - | - | - | - | - | - |
| 0.05%KJ1003(检出限) | + | + | + | + | + | + | + | + |
| [1] | 闫邦奇,水克娟,黎财慧,等.转基因玉米MON87411双重微滴式数字PCR定量检测方法的建立[J].现代食品科技,2025,41(3):378-386. |
| YAN B Q, SHUI K J, LI C H, et al.. Establishment of a quantitative duplex droplet digital PCR detection method for genetically modified maize MON87411[J]. Mod. Food Sci. Technol., 2025, 41(3): 378-386. | |
| [2] | 国际农业生物技术应用服务组织.2018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,2019,39(8):1-6. |
| ISAAA.Global commercialization of biotechnology/transgenic crops in 2018[J]. China Biotechnol., 2019, 39(8): 1-6. | |
| [3] | 农民日报·中国农网记者.转基因技术,给世界多一种选择[N].农民日报,2023-12-12(8). |
| [4] | 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):I0003-I0004. |
| LIU W. Study on the application and network communication of transgenic crops in China[J]. J. Plant Genet. Resour., 2024, 25(7): I0003-I0004. | |
| [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] | 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,2025,34(3):189-203. |
| FAN Y H, YUE S Y, NAN Z B, et al.. The evolution of China's maize seed industry, relevant industrial policies and implications for grassland agriculture development[J]. Acta Prataculturae Sin., 2025, 34(3): 189-203. | |
| [7] | 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 of industrialization of genetically modified breeding soybean in China based on investigation in some pilot areas[J]. Chin. J. Oil Crop Sci., 2025, 47(4): 797-805. | |
| [8] | 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. Agricul. Mach., 2024(5): 47-48. | |
| [9] | 杜孟盈,马宗琪,焦来正,等.转基因食品的潜在危害[J].现代农业科技,2022(16):184-187. |
| DU M Y, MA Z Q, JIAO L Z, et al.. Potential harm of genetically modified food[J]. Mod. Agric. Sci. Technol., 2022(16): 184-187. | |
| [10] | 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. | |
| [11] | 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.. Event-specific qualitative PCR detection method of stress-resistant soybean IND-ØØ41Ø-5 and its standardization[J]. Chin. J. Oil Crop Sci., 2024, 46(5): 1148-1156. | |
| [12] | 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[2026-03-25]. . |
| LIU S, YAN S, LIU N, et al. Event-Specific Qualitative PCR Detection Method for Genetically Modified Soybean DBN9004[J]. Mol. Plant Breed., 2024,1-17[2026-03-25]. . | |
| [13] | OLIVEIRA C A M, KOMMERS C M, LEHMANN F K M, et al.. Detection of genetically modified maize in processed products, dry grains, and corn ears intended for fresh consumption in South Brazil[J]. Genet. Mol. Res., 2016, 15(4): 8818-8827. |
| [14] | ALASAAD N, ALZUBI H, KADER A A. Data in support of the detection of genetically modified organisms (GMOs) in food and feed samples[J]. Data Brief, 2016, 7: 243-252. |
| [15] | 尹全,李忆,王东,等.转基因抗除草剂玉米DAS-40278-9品系特异实时荧光定量PCR检测方法的建立[J].中国食品学报,2016,16(5):147-154. |
| YIN Q, LI Y, WANG D, et al.. Establishment of event-specific quantitative PCR of event DAS-40278-9 herbicide-tolerant maize[J]. J. Chin. Inst. Food Sci. Technol., 2016, 16(5): 147-154. | |
| [16] | 李凌燕,肖冰,张旭冬,等.转基因玉米MON87411实时荧光PCR定性检测方法的建立及其标准化[J].生物技术进展,2024,14(2):257-262. |
| LI L Y, XIAO B, ZHANG X D, et al.. Establishment and standardization of real-time PCR method for qualitative detection of genetically modified maize MON87411[J]. Curr. Biotechnol., 2024, 14(2): 257-262. | |
| [17] | 王沛然, 陆佳雨, 许学, 等. 转基因大豆CAL16转化体特异性定量检测方法的建立[J]. 中国油料作物学报, 2025, 47(4): 1036-1050. |
| WANG P R, LU J Y, XU X, et al.. Establishment of event-specific quantitative detection method for genetically modified soybean CAL16[J]. Chin. J. Oil Crop Sci., 2025, 47(4): 1036-1050. | |
| [18] | 李允静,肖芳,武玉花,等.抗逆大豆IND-ØØ41Ø-5转化体特异性定量PCR检测方法的建立及其标准化[J].中国农业科学,2023,56(13):2443-2460. |
| LI Y J, XIAO F, WU Y H, et al.. Establishment and standardization of event-specific real-time quantitative PCR detection method of stress-resistant soybean IND-ØØ41Ø-5[J]. Sci. Agric. Sin., 2023, 56(13): 2443-2460. | |
| [19] | WANG X, TANG T, MIAO Q, et al.. Detection of transgenic rice line TT51-1 in processed foods using conventional PCR, real-time PCR, and droplet digital PCR[J]. Food Control, 2019, 98: 380-388. |
| [20] | 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. |
| [21] | 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. |
| [22] | ENGL-GMFF. Definition of minimum performance requirements for analytical methods of GMO testing[M]. European Network of GMO Laboratories, 2015. |
| [23] | 中华人民共和国农业部. 转基因植物及其产品成分检测实时荧光定量PCR方法制定指南: 农业部2259号公告—5—2015 [S].北京:中国农业出版社,2015. |
| [24] | 肖付刚,谷蒙林,张尧轩,等.核酸检测技术鉴别转基因食品[J].农产品加工,2023(6):91-94. |
| XIAO F G, GU M L, ZHANG Y X, et al.. Identification of genetically modified foods by nucleic acid detection technology[J]. Acad. Period. Farm Prod. Proc., 2023(6): 91-94. | |
| [25] | SALISU I B, SHAHID A A, YAQOOB A, et al.. Molecular approaches for high throughput detection and quantification of genetically modified crops: a review[J/OL]. Front. Plant Sci., 2017, 8: 1670[2026-03-15]. . |
| [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. |
| [1] | 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. |
| [2] | Fangqi FU, Xinhao JIN, Wei FU, Pengchong JIANG, Jing GAO, Li CUI, Yimei CAI, Lufeng REN, Hong CHEN. Establishment of On-site Rapid Identification System for Transgenic Ingredients Based on Microfluidic Platform [J]. Current Biotechnology, 2026, 16(4): 797-804. |
| [3] | Jin TIAN, Fangrui GAO, Ling LI, Ziyan CHEN, Yifan CHEN, Hua ZHANG, Hong CHEN, Haoqian WANG, Jingang LIANG. Establishment of Specific Qualitative PCR Detection Method of Transgenic Maize Bt11 [J]. Current Biotechnology, 2025, 15(6): 1031-1039. |
| [4] | Yueqiu ZHANG, Fangqi FU, Tongtong ZHAO, Ziyan CHEN, Xinyao PEI, Fangrui GAO, Jiake LI, Hui LI, Xiaodan JIANG, Haoqian WANG, Hong CHEN. Development of PCR Qualitative Method for Genetically Modified Herbicide-tolerant Soyabean LP012-1 [J]. Current Biotechnology, 2025, 15(3): 466-475. |
| [5] | Yueqiu ZHANG, Fangqi FU, Hua ZHANG, Yifan CHEN, Chenyao WANG, Hongye JIANG, Yahui LI, Yichen LIAO, Dan WANG, Yu SUN, Wei FU, Hong CHEN. Research of Detection Method for Genetically Modified Herbicide-tolerant Soyabean LP012-1 Transformant by Quantitative Real-time PCR [J]. Current Biotechnology, 2025, 15(2): 276-286. |
| [6] | Xin QI, Xinran LI, Yaning GUO, Dan WANG, Kai LI, Qiong WU, Liang LI. Comparison of Endogenous Genes in Maize Based on Digital PCR [J]. Current Biotechnology, 2025, 15(1): 78-85. |
| [7] | Lingyan LI, Bing XIAO, Xudong ZHANG, Hua ZHANG, Ziyan CHEN, Haoqian WANG, Xiujie ZHANG, Hong CHEN, Jingang LIANG. Establishment and Standardization of Real-time PCR Method for Qualitative Detection of Genetically Modified Maize MON87411 [J]. Current Biotechnology, 2024, 14(2): 257-262. |
| [8] | Xing DANG, Binwei ZHI, Kehao CAO, Tingting LIU, Biao CHEN, Yuanjie DING. Patent Analysis on Genetically Modified Maize Biological Breeding Technology and Development Suggestions [J]. Current Biotechnology, 2022, 12(4): 614-622. |
| [9] | Hongtao WEN, Yang YANG, Yijia DING, Ran YUAN, Ruiying ZHANG, Zhiyuan XU, Jingang LIANG. Establishment of Qualitative PCR Detection of Transgenic Insect⁃resistant Maize CM8101 [J]. Current Biotechnology, 2022, 12(2): 248-255. |
| [10] | WEN Hongtao1§,YANG Yang1§,DING Yijia1,YUAN Ran1,ZHANG Xiujie2,ZHANG Ruiying1*. Qualitative PCR Methods for the Detection of Transgenic Herbicide-tolerant Maize G1105E-823C [J]. Curr. Biotech., 2020, 10(6): 688-695. |
| [11] | REN Wen1, YANG Haixia2, CHEN Lizhu2, LI Yufeng2, LIU Ya1*. Establishment and Application of Nucleic Acid Chromatography for Rapid Detection of Transgenic Plants [J]. Curr. Biotech., 2020, 10(6): 680-687. |
| [12] | WU Wenyan§, LIU Xinxiang§, ZHOU Miaoyi*, LIU Jinxiang, LIU Ya. Establishment of Event-specific PCR Detection Method of Transgenic Maize Line 2A-5 [J]. Curr. Biotech., 2020, 10(4): 363-370. |
| [13] | ZHANG Yu, WANG Sen, CHEN Duyu, XU Lei*. Promoter Analysis and Realtime-PCR Assay of Denitrifying Genes of Sinorhizobium sp. NP1 [J]. Curr. Biotech., 2019, 9(2): 178-184. |
| [14] | HU Wenran1, LI Xiaodong2, ZHOU Xiaoyun1, LI Xiaorong1, YANG Yang1, LI Bo1. Study on Expression and Functional Analysis of GhCAD6 Gene in Transgenic Cotton [J]. Curr. Biotech., 2019, 9(1): 46-53. |
| [15] | LI Tingting, ZHANG Guilan, WANG Zhiying, CHEN Ailiang*. Chip Preparation and Application Research with Real-time PCR for Rapid Identification of Mutton Adulteration [J]. Curr. Biotech., 2018, 8(6): 522-529. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||