Biolistic transformation of wheat: increased production of plants with simple insertions and heritable transgene expression

被引:0
作者
Caroline Tassy
Anne Partier
Michel Beckert
Catherine Feuillet
Pierre Barret
机构
[1] UMR 1095,INRA
[2] Genetics,undefined
[3] Diversity and Ecophysiology of Cereals,undefined
来源
Plant Cell, Tissue and Organ Culture (PCTOC) | 2014年 / 119卷
关键词
Biolistic transformation; Wheat; Simple events; Gene cassettes; Dephosphorylation; Transgene expression;
D O I
暂无
中图分类号
学科分类号
摘要
The feasibility of map-based cloning in wheat has been demonstrated recently, opening new perspectives for a better understanding of wheat plant biology and for accelerating wheat improvement in the coming decades. To validate the function of candidate genes, an efficient transformation system is needed. Here, we have performed two methods for wheat transformation using particle bombardment that ensures the production of transgenic plants with simple integration patterns for research purposes and stable transgene expression for accurate and rapid validation of gene function. To establish this method, we used the bar and pmi selectable genes either as part of whole plasmids, gene cassettes (obtained by PCR or purified on agarose gels), or as dephosphorylated cassettes. The analysis of about 300 transgenic plants showed that the use of gene cassettes or dephosphorylated gene cassettes leads to a majority (50–60 %) of simple integration events. This is significantly higher than the number of simple events obtained with whole plasmids (9–25 %). Moreover, the decrease of the quantity of DNA from 500 to 5 ng/µl for PCR-amplified cassettes used for transformation increased the number of single integration events. The transformation efficiency remained stable at 2.5 %, and a higher number of plants expressing the transgenes were obtained with the dephosphorylated cassette. No correlation was observed between the complexity of the events and stability of expression of the transgene, suggesting that plasmid sequences could be involved on transgene silencing. The inheritability of the transgene was demonstrated in T1 and T2 generations. These results show that biolistic transformation of dephosphorylated gene cassettes provides an easy and efficient route to produce backbone vector-free transgenic wheat carrying and expressing intact and single transgenes.
引用
收藏
页码:171 / 181
页数:10
相关论文
共 400 条
[31]  
Urnov FD(2002)Optimization of factors influencing microprojectile bombardment-mediated genetic transformation of seed-derived callus and regeneration of transgenic plants in Mol Breed 9 231-244
[32]  
Webb SR(2009) (L.) Gaertn Transgenic Res 18 831-840
[33]  
Petolino JF(2003)-mediated transformation of wheat using a superbinary vector and a polyamine-supplemented regeneration medium Plant Mol Biol 52 421-432
[34]  
Alfares W(2013)Bacterial transposons are co-transferred with T-DNA to rice chromosomes during BMC Genom 14 562-504
[35]  
Bouguennec A(1999)-mediated transformation Plant Cell Rep 18 500-7767
[36]  
Balfourier F(2009)Analysis of transgene integration and expression following biolistic transfer of different quantities of minimal expression cassette into sugarcane ( Proc Natl Acad Sci USA 106 7762-430
[37]  
Gay G(2002) spp. Hybrids) Genome 45 421-211
[38]  
Bergès H(2003)Transgene organization in rice engineered through direct DNA transfer supports a two-phase integration mechanism mediated by the establishment of integration hot spots Mol Breed 11 203-917
[39]  
Vautrin S(2004)Molecular analysis of transgene and vector backbone integration into the barley genome following Cell Mol Biol Lett 9 903-473
[40]  
Sourdille P(2001)-mediated transformation J Exp Bot 52 461-473