Internal standard gene suitable to exogenous gene detection such as transgene cotton and application thereof

A technology of internal standard gene and exogenous gene, applied in the direction of determination/inspection of microorganisms, biochemical equipment and methods, etc., can solve the problems of deviation of results, high cost, low detection rate of single-copy gene, etc., and achieve the effect of rapid breeding

Inactive Publication Date: 2004-12-29
上海市农业科学院生物技术研究中心
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Problems solved by technology

[0018] But the following factors will affect its results: 1) The number of PCR cycles affects the formation of CE peaks, and it is easy to form hybrid molecules during the PCR plateau, adding new peaks
2) Sampling method: such as electromigration sampling, pressure sampling, which can cause deviations in results
3) The influence of electroosmotic flow, at the end of sample injection, electroosmotic flow will remove part of the sample molecules in the interface, affecting the quantitative results
Mainly include: 1) When FISH detects chromosomal abnormalities, it can still only target one or a few specific chromosomes; 2) The probe preparation technology is relatively diffic...

Method used

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  • Internal standard gene suitable to exogenous gene detection such as transgene cotton and application thereof
  • Internal standard gene suitable to exogenous gene detection such as transgene cotton and application thereof
  • Internal standard gene suitable to exogenous gene detection such as transgene cotton and application thereof

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Experimental program
Comparison scheme
Effect test

Embodiment Construction

[0064] experiment procedure

[0065] (1). Experimental materials

[0066] 1. Non-transgenic plants:

[0067] Non-transgenic cotton, such as: GK12, SGK321, GK19, GK22, 9409, Sumian 310, Boll cotton 1560BG, Boll cotton DP410B, Boll cotton 32B, Boll cotton 33B, Boll cotton 99B, dominant aglandular , Xuzhou 142, China Cotton Institute conventional cotton, China Cotton 30, etc.

[0068] Non-transgenic rice, such as: Hanfeng, Nonghu 6, 9520, Xiushui 04, Shenxiangjing 6, Taihu Nuo, 20566, D5 Heihe Aihui, C43βg94-1, C26 PR106, D20BaSmati, C21 Zhongyuzao 18, D57kholt marshi, P2C1 Huayu No.1, etc.

[0069] Non-GMO tomatoes, such as: 871, 1687, 1685, 1866, 1867, 822, Lichun, Xifen No. 1, Xifen No. 2, Xifen No. 3, Xifen No. 5, Xifen No. 81, Maohong 801 , Mao G1, Maofen 802, Zaofeng, Zhongfeng, Zaokui, Hongza No. 14, Hongza No. 16, Hongza No. 18, Hongza No. 20, Hongza No. 25, etc.

[0070] Non-transgenic rape, such as: Huyou 12, Huyou 50, An 437, Su 991246, Su 97-2126, Suyou 1, Zheshuan...

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Abstract

The present invention is internal standard gene suitable for quantitative and qualitative PCR detection of foreign gene of transgenic cotton, tomato, rice and rape and copy number analysis and its application. Based on the intraspecific non-specificity, interspecific specificity, monocopy or low copy number, and through bioinformatical analysis and biological experiment, four internal standard genes, including cotton SADI, tomato LAT52, rice SPS and rape HMGI/Y gene are found out separately in cotton, tomato, rice and rape. The detection sensitivity and precision of these internal standard genes are experiment proved in PCR method. At the same time, the quantitative and qualitative PCR detection systems for foreign gene of transgenic cotton, tomato, rice and rape are established separately based on these internal standard genes, and corresponding PCR detection and analysis platforms are established.

Description

technical field [0001] The invention relates to an internal standard gene suitable for qualitative and quantitative detection and copy number detection of exogenous genes in transgenic cotton, tomato, rice and rapeseed and its application. It belongs to the technical field of bioengineering. Background technique [0002] Modern biotechnology with genetic engineering technology as the core has widely penetrated into agriculture in the 20th century. High technology has changed the research and production mode of traditional agriculture and provided us with more abundant food and medical products. Take the United States, where the research and industrialization of agricultural transgenic technology is the most developed, for example, more than 50% of soybeans, corn, cotton and other crops in the American market are genetically modified varieties. [0003] (1) Research progress of internal standard genes in qualitative and quantitative detection of transgenic plants [0004] I...

Claims

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Application Information

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IPC IPC(8): C12Q1/68
Inventor 张大兵梁婉琪贾军伟苏振洪杨立桃丁嘉羽翁海波潘爱虎
Owner 上海市农业科学院生物技术研究中心
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