Strategies for developing marker-free transgenic plants

被引:0
|
作者
Hee-Jong Woo
Seok-Cheol Suh
Yong-Gu Cho
机构
[1] Rural Development Administration,Division of Biosafety, National Academy of Agricultural Science
[2] Chungbuk National University,Department of Crop Science
关键词
genetically modified (GM); selectable marker gene; marker-free; plant transformation; biotechnology; biosafety;
D O I
暂无
中图分类号
学科分类号
摘要
The development of marker-free transgenic plants has responded to public concerns over the safety of biotechnology crops. It seems that continued work in this area will soon remove the question of unwanted marker genes from the debate concerning the public acceptability of transgenic crop plants. Selectable marker genes are co-introduced with genes of interest to identify those cells that have integrated the DNA into their genome. Despite the large number of different selection systems, marker genes that confer resistance to the antibiotics, hygromycin (hpt) and kanamycin (nptII) or herbicide phosphinothricin (bar), have been used in most transgenic research and crop development techniques. The techniques that remove marker gene are under development and will eventually facilitate more precise and subtle engineering of the plant genome, with widespread applications in both fundamental research and biotechnology. In addition to allaying public concerns, the absence of resistance genes in transgenic plants could reduce the costs of developing biotechnology crops and lessen the need for time-consuming safety evaluations, thereby speeding up the commercial production of biotechnology crops. Many research results and various techniques have been developed to produce marker-free transgenic plants. This review describes the strategies for eliminating selectable marker genes to generate marker-free transgenic plants, focusing on the three significant marker-free technologies, co-transformation, site-specific recombinase-mediated excision, and non-selected transformation.
引用
收藏
页码:1053 / 1064
页数:11
相关论文
共 50 条
  • [21] Marker-free Transgenic plants through genetically programmed auto-excision
    Verweire, Dimitri
    Verleyen, Kristof
    De Buck, Sylvie
    Claeys, Martine
    Angenon, Geert
    PLANT PHYSIOLOGY, 2007, 145 (04) : 1220 - 1231
  • [22] Construction of marker-free transplastomic plants
    Lutz, Kerry A.
    Maliga, Pal
    CURRENT OPINION IN BIOTECHNOLOGY, 2007, 18 (02) : 107 - 114
  • [23] An Efficient Marker-free Transgenic Corn Technology
    Anand, Ajith
    IN VITRO CELLULAR & DEVELOPMENTAL BIOLOGY-ANIMAL, 2018, 54 : S33 - S33
  • [24] Development of marker-free transgenic Jatropha plants with increased levels of seed oleic acid
    Qu, Jing
    Mao, Hui-Zhu
    Chen, Wen
    Gao, Shi-Qiang
    Bai, Ya-Nan
    Sun, Yan-Wei
    Geng, Yun-Feng
    Ye, Jian
    BIOTECHNOLOGY FOR BIOFUELS, 2012, 5
  • [25] Effective selection system for generating marker-free transgenic plants independent of sexual crossing
    K. Sugita
    E. Matsunaga
    H. Ebinuma
    Plant Cell Reports, 1999, 18 : 941 - 947
  • [26] Production of Proinsulin in Marker-Free Transgenic Tobacco Plants Using CRE/loxP System
    Zheng, L.
    Peng, Z. Y.
    Jiao, Q. Q.
    Wang, Y.
    Bian, F.
    Qu, S. J.
    Wan, S. B.
    Bi, Y. P.
    RUSSIAN JOURNAL OF PLANT PHYSIOLOGY, 2016, 63 (05) : 673 - 677
  • [27] Generation of Marker-free Transgenic Plants Concurrently Resistant to a DNA Geminivirus and a RNA Tospovirus
    Ching-Fu Yang
    Kuan-Chun Chen
    Ying-Hui Cheng
    Joseph A. J. Raja
    Ya-Ling Huang
    Wan-Chu Chien
    Shyi-Dong Yeh
    Scientific Reports, 4
  • [28] Generation of Marker-free Transgenic Plants Concurrently Resistant to a DNA Geminivirus and a RNA Tospovirus
    Yang, Ching-Fu
    Chen, Kuan-Chun
    Cheng, Ying-Hui
    Raja, Joseph A. J.
    Huang, Ya-Ling
    Chien, Wan-Chu
    Yeh, Shyi-Dong
    SCIENTIFIC REPORTS, 2014, 4
  • [29] Development of Selection Marker-free Transgenic Potato Plants with Enhanced Tolerance to Oxidative Stress
    Ahmad, Raza
    Kim, Yun-Hee
    Kim, Myoung Duck
    Phung, Minh-Ngoc
    Chung, Won-Il
    Lee, Haeng-Soon
    Kwak, Sang-Soo
    Kwon, Sulk-Yoon
    JOURNAL OF PLANT BIOLOGY, 2008, 51 (06) : 401 - 407
  • [30] Production of proinsulin in marker-free transgenic tobacco plants using CRE/loxP system
    L. Zheng
    Z. Y. Peng
    Q. Q. Jiao
    Y. Wang
    F. Bian
    S. J. Qu
    S. B. Wan
    Y. P. Bi
    Russian Journal of Plant Physiology, 2016, 63 : 673 - 677