2025-6-7- 13
  • Home
  • About Journal
  • Editorial Board
  • Author
    Instruction
    Copyright Agreement
  • Ethcis Statement
  • Subscribe
  • Contact
  • 中文
Home > Archive>Volume 23, Issue 5, 2022 >1500-1507. DOI:10.13430/j.cnki.jpgr.20220403001 Online First
PDF HTML XML Export Cite reminder
T-DNA Flanking Sequence Analysis and Specific Detection of Transgenic Soybean FvC5SD-L05
DOI:
10.13430/j.cnki.jpgr.20220403001
CSTR:
Author:
  • ZHANG Wei-dong 1

    ZHANG Wei-dong

    Institute of Agricultural Biotechnology, Jilin Academy of Agricultural Sciences
    Find this author on All Journals
    Find this author on BaiDu
    Search for this author on this site
  • YUAN Yi-xin 1

    YUAN Yi-xin

    Institute of Agricultural Biotechnology, Jilin Academy of Agricultural Sciences
    Find this author on All Journals
    Find this author on BaiDu
    Search for this author on this site
  • LI Ming-yue 1

    LI Ming-yue

    Institute of Agricultural Biotechnology, Jilin Academy of Agricultural Sciences
    Find this author on All Journals
    Find this author on BaiDu
    Search for this author on this site
  • MENG Fan-li 2

    MENG Fan-li

    Northeast Agricultural University, Harbin
    Find this author on All Journals
    Find this author on BaiDu
    Search for this author on this site
  • ZHANG Ling 1

    ZHANG Ling

    Institute of Agricultural Biotechnology, Jilin Academy of Agricultural Sciences
    Find this author on All Journals
    Find this author on BaiDu
    Search for this author on this site
Affiliation:

1.Institute of Agricultural Biotechnology, Jilin Academy of Agricultural Sciences;2.Northeast Agricultural University, Harbin

Clc Number:

Fund Project:

Jilin Academy of Agricultural Sciences Outstanding Youth Program for Basic Scientific Research Funds (KYJF2021JQ001)

  • Article
  • |
  • Figures
  • |
  • Metrics
  • |
  • Reference [15]
  • |
  • Related
  • |
  • Cited by
  • |
  • Materials
  • |
  • Comments
    Abstract:

    The FvC5SD gene from Flammulina velutipes was transformed into soybean cultivar Shennong 9 by Agrobacterium mediated genetic transformation of soybean cotyledon nodes. The transgenic soybean line FvC5SD-L05 showed good drought tolerance and agronomic performance. To clarify the characteristics of the transgenic soybean FvC5SD-L05 material meeting its biosafety evaluation, we analyzed the copy number of FvC5SD gene in T4 generation plant, by Southern hybridization and identified the position and direction of the insert in soybean genome. Meanwhile, by PCR amplification of the flanking sequences of exogenous T-DNA, we established a specific qualitative PCR detection method for FvC5SD-L05. This method represents specificity with high sensitivity, e.g. being able to detect transgenic fragment in the template with FvC5SD-L05 genomic DNA content of 0.1%. The specific detection of FvC5SD-L05 provided technical basis to identify the transgenic soybeans with the target gene.

    Key words:Transgenic soybean; T-DNA flanking sequence; specific detection; genotype identification
    Reference
    [1] 崔蓉, 王天野, 王呈玉, 李锦秀, 张欣宇, 刘淑霞. 干旱胁迫对不同玉米品种生长性状及产量的影响. 华北农学报,2021, 36(S1): 94-100.Cui R, Wang T Y, Wang C Y, Li J X, Zhang X Y, Liu S X. Effects of drought stress on growth characters and yield of differert maize varieties.Acta Agriculturae Boreali-Sinica,2021,36(S1):94-100.
    [2] Kamthan Ayushi, Chaudhuri Abira, Kamthan Mohan, Datta Asis. Genetically modified (GM) crops: milestones and new advances in crop improvement. TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik. 2016, 129(9).
    [3] 余永亮, 梁慧珍, 王树峰, 练云, 位艳丽, 王庭峰. 中国转基因大豆的研究进展及其产业化.大豆科学, 2010, 29(01): 143-50.Yu Y L, Liang H Z, Wang S F, Lian Y, Wei Y L, Wang T F. Research progress and commercialization on transgenic soybean in China.Soybean science, 2010,29(01):143-150.
    [4] Tetsuya Yamada, Kyoko Takagi, Masao Ishimoto. Recent advances in soybean transformation and their application to molecular breeding and genomic analysis Breeding Science 2012, 61(5).
    [5] 袁磊, 孙红炜, 杨崇良, 尚佑芬, 路兴波, 赵蕾. 转基因玉米MON88017旁侧序列分析及定性PCR检测. 作物学报, 2010, 36(02): 361-4.Yuan L, Sun H W, Yang C L, Shang Y F, Lu X B, Zhao L. Analysis of junction sequence in the transgenic maize MON88017 and the methods of qualitative PCR detection. Journal of Crop Science,2010,36(02):361-364.
    [6] 金芜军, 贾士荣, 彭于发. 不同国家和地区转基因产品标识管理政策的比较. 农业生物技术学报, 2004, (01): 1-7.Jin W J, Jia S R, Peng Y F. Comparison of labeling policy of genetically modified products in different countries and territories. Journal of Agricultural Biotechnology ,2004(01):1-7.
    [7] 肖国樱, 周浩, 孟秋成, 陈芬. 中国转基因作物的主要争论问题与解读. 农业现代化研究, 2011, 32(06): 666-9.Xiao G Y, Zhou H, Meng Q C, Chen F. Debate of transgenic crops in China and its unscrambling. Research of Agricultural Modernization, 2011,32(06):666-669.
    [8] 马宇浩, 蔡甘先, 邓晓恬, 李瑞, 高爽, 董向会, 孙光泽, 邰钰溶, 夏添兰, 贺旗, 邓学梅. 我国转基因生物安全评价现状及展望. 中国畜牧杂志,2021, 57(10): 1-7.SMaSYSH,SCaiSGSX,SDengSXST,SLiSR,SGaoSS,SDongSXSH,SSunSGSZ,STaiSYSR,SXiaSTSL,SHeSQ,SDengSXSM.CurrentSstatusSandSprospectsSofSsafetySevaluationSofSgeneticallySmodifiedSorganismsSinSChina.ChineseSJournalSofSAnimalSScience,2021,57(10):1-7.S
    [9] 徐九文, 李天富, 韩正姝, 童继平. 作物转基因育种技术的应用及安全性探讨. 安徽农业科学, 2016, 44(30): 97-100+17.Xu J W, Li T F, Han Z S, Tong J P. Security discussion and applicatim of genetically modified crops technology.Journal of AnHui Agricultural Science,2016,44(30):97-100+117.
    [10] 焦悦, 梁晋刚, 翟勇. 转基因作物安全评价研究进展.作物杂志, 2016, (05): 1-7.Jiao Y, Liang J G, Zhai Y. Progress in safety assessment of genetically modified crops.The Crop Journal,2016,(05):1-7.
    [11] 蔡勤安, 尚丽霞, 姜志磊, 于志晶, 马瑞. 转HAL1基因大豆侧翼序列分析及特异性检测方法研究. 大豆科学, 2018, 37(01): 32-8.Cai Q A, Shang L X, Jiang Z L, Yu Z J, Ma R. The T-DNA flanking sequence analysis and specific detection method of transgenic soybean with gene HAL1. Soybean science,2018,37(01):32-38.
    [12] 仲晓芳, 杨静, 贺红利, 牛陆, 邢国杰, 杨向东. 基于基因组重测序的高含量油酸转基因大豆T-DNA旁侧序列分析及事件特异性PCR检测 . 农业生物技术学报, 2018, 26(12): 2017-26.Zhong X F, Yang J, He H L, Niu L, Xing G J, Yang X D. Analysis of the T-DNA flanking sequences and event-specific PCR detection of high-content oleic acid transgenic soybean(Glycine max) bases on genome re-sequencing.Journal of Agricultural Biotechnology,2018,26(12):2017-2026.
    [13] Zhang Ling, Li Tong, Wang Yang, Zhang Yuanyu, Dong Ying-Shan. FvC5SD overexpression enhances drought tolerance in soybean by reactive oxygen species scavenging and modulating stress-responsive gene expression. Plant cell reports, 2019, 38(9).
    [14] 仇有文, 高学军, 张明辉, 敖金霞, 袁肖寒, 刘营. 抗除草剂转基因大豆插入拷贝数及其旁侧序列分析. 生物技术, 2011, 21(06): 31-5.Chou Y W, Gao X J, Zhang M H, Ao J X, Yuan X H, Liu Y. The copy number of transgenic soybean with the EPSPS gene and flanking sequence analysis. Biotechnology,2011,21(06):31-35.
    [15] 张亮, 杨剑波, 宋丰顺, 陈圣, 郭霞, 李莉, 汪秀峰. 实时荧光PCR技术定量检测转Bt基因水稻的研究. 生物学杂志,2008, 25(06): 63-5+71.Zhang L, Yang J B, Song F S, Chen S, Guo X, Li L, Wang X F. Detecting of Bt transgenic rice by real-time quantitative PCR technique. Journal of Biology, 2008,25(06):63-65+71.
    Related
    Cited by
    Comments
    Comments
    分享到微博
    Submit
Get Citation

Copy
Related Videos

Share
0
Article Metrics
  • Abstract:323
  • PDF: 1044
  • HTML: 0
  • Cited by: 0
History
  • Received:April 03,2022
  • Revised:April 18,2022
  • Adopted:May 06,2022
  • Online: September 09,2022
  • Published:
Article QR Code
You are the 669778th visitor 京ICP备09069690号-23
® 2025 All Rights Reserved
Supported by:Beijing E-Tiller Technology Development Co., Ltd.
Firefox, Chrome, IE10, IE11 are recommended. Other browsers are not recommended.