Particle-Bombardment-Mediated Co-Transformation of Maize with a Lysine Rich Protein Gene (sb401) from potato

被引:3
作者
Dongxue Wang
Qian Zhao
Dengyun Zhu
Guangming Ao
Jingjuan Yu
机构
[1] China Agricultural University,State Key Laboratory for Agricultural Biotechnology, College of Biological Sciences
来源
Euphytica | 2006年 / 150卷
关键词
hybrid lines; inbred lines; protein content; gene; transgenic plant; L.;
D O I
暂无
中图分类号
学科分类号
摘要
Little work has been reported on genetic transformation with maize inbred lines, especially elite inbred lines used in breeding. In this work, 7 self-pollinated inbred lines and 4 hybrid lines have been screened. The results revealed that calli derived from immature embryos from two inbred lines X333 and X301 were compact, hyperhydric and unsuitable for transformation, but the calli induced from other inbred lines and all the hybrid lines were friable and yellow and could be used for genetic transformation. The sb401 gene isolated from potato (Solanum berthaultii) encodes a protein with a high lysine content. Maize calli from 5 self-pollinated inbred lines and 4 hybrid lines were transformed using particle-bombardment with different plasmids to simultaneously introduce the sb401 lysine rich gene and the selectable gene hpt respectively. Two hundred and sixty-eight regenerated plants were obtained from these genotypes. Co-insertion was confirmed in 29 regenerated plants by PCR and Southern blot analysis. Transgene segregation of the R1 plants was observed and one marker-free transgenic maize line was recovered. Analysis of the crude protein content in mature seeds of R1 transgenic plants also showed an increase from 36.8% to 48.2%. This study thus provides a workable system for generating transgenic maize free from selectable marker genes and generates valuable resources for obtaining marker free transgenic maize with a high-lysine protein content.
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页码:75 / 85
页数:10
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共 99 条
[1]  
Althenbach S.B.(1992)Accumulation of Brazil nut albumin in the seeds of transgenic canola results in enhanced levels of seeds protein methionine Plant Mol Biol 18 235-245
[2]  
Suo C.C.(2001)Influence of 2,4-D, TIBA and 3,5-D on the growth response of cultured maize embryos Plant Cell, Tissue and Organ Culture 65 45-56
[3]  
Staraci L.C.(1997)Type I callus production and plant regeneration in tropical maize genotypes Plant Cell Report 17 73-76
[4]  
Person K.W.(1998)Expression and inheritance of multiple transgenes in rice plants Nature Biotechnol 16 1060-1064
[5]  
Wainwright C.(1975)Establishment of an efficient medium for another culture of rice through comparative experiments on the nitrogen sources Scientia Sinica 18 659-668
[6]  
Georgescu A.(1996)Transformation of 12 Different plasmids into soybean via particle bombardment Plant Cell Report 15 500-505
[7]  
Townsend J.(1997)Cloning and characterization of pollen-specific cDNA encoding a glutamic-acid-rich protein (GARP) from potato Plant Mol. Biol. 33 291-300
[8]  
Bronsema F.B.F.(2001)Marker gene elimination from transgenic barley, using co-transformation with adjacent “twin T-DNAs” on a standard Molecular Breeding 7 195-202
[9]  
van Oostveen W.J.F.(2001) transformation vector Transgenic Research 10 143-155
[10]  
van Lammeren A.A.M.(1964)Efficient co-transformation of Science 145 279-280