Combining a regeneration-promoting ipt gene and site-specific recombination allows a more efficient apricot transformation and the elimination of marker genes

被引:25
作者
Lopez-Noguera, Sonia [1 ]
Petri, Cesar [1 ]
Burgos, Lorenzo [1 ]
机构
[1] CEBAS CSIC, Dept Mejora, Grp Biotecnol Frutales, Murcia 30100, Spain
关键词
ipt Gene; Marker free; MAT vectors; Prunus armeniaca; Temperate fruit trees; FREE TRANSGENIC PLANTS; MAT-VECTOR SYSTEM; AGROBACTERIUM-MEDIATED TRANSFORMATION; GREEN FLUORESCENT PROTEIN; ISOPENTENYL TRANSFERASE; PRUNUS-ARMENIACA; IN-VITRO; SELECTION; LEAVES; REMOVAL;
D O I
10.1007/s00299-009-0778-z
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
The presence of marker genes conferring antibiotic resistance in transgenic plants represents a serious obstacle for their public acceptance and future commercialization. In addition, their elimination may allow gene stacking by the same selection strategy. In apricot, selection using the selectable marker gene nptII, that confers resistance to aminoglycoside antibiotics, is relatively effective. An attractive alternative is offered by the MAT system (multi-auto-transformation), which combines the ipt gene for positive selection with the recombinase system R/RS for removal of marker genes from transgenic cells after transformation. Transformation with an MAT vector has been attempted in the apricot cultivar 'Helena'. Regeneration from infected leaves with Agrobacterium harboring a plasmid containing the ipt gene was significantly higher than that from non-transformed controls in a non-selective medium. In addition, transformation efficiencies were much higher than those previously reported using antibiotic selection, probably due to the integration of the regeneration-promoting ipt gene. However, the lack of an ipt expression-induced differential phenotype in apricot made difficult in detecting the marker genes excision and plants had to be evaluated at different times. PCR analysis showed that cassette excision start occurring after 6 months approximately and 1 year in culture was necessary for complete elimination of the cassette in all the transgenic lines. Excision was confirmed by Southern blot analysis. We report here for the first time in a temperate fruit tree that the MAT vector system improves regeneration and transformation efficiency and would allow complete elimination of marker genes from transgenic apricot plants by site-specific recombination.
引用
收藏
页码:1781 / 1790
页数:10
相关论文
共 43 条
[1]   T-DNA OF AGROBACTERIUM-TUMEFACIENS ENCODES AN ENZYME OF CYTOKININ BIOSYNTHESIS [J].
AKIYOSHI, DE ;
KLEE, H ;
AMASINO, RM ;
NESTER, EW ;
GORDON, MP .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA-BIOLOGICAL SCIENCES, 1984, 81 (19) :5994-5998
[2]   Evaluation of selection strategies alternative to nptII in genetic transformation of citrus [J].
Ballester, Alida ;
Cervera, Magdalena ;
Pena, Leandro .
PLANT CELL REPORTS, 2008, 27 (06) :1005-1015
[3]   Efficient production of transgenic citrus plants using isopentenyl transferase positive selection and removal of the marker gene by site-specific recombination [J].
Ballester, Alida ;
Cervera, Magdalena ;
Pena, Leandro .
PLANT CELL REPORTS, 2007, 26 (01) :39-45
[4]   Seeing the wood through the trees: A review of techniques for distinguishing green fluorescent protein from endogenous autofluorescence [J].
Billinton, N ;
Knight, AW .
ANALYTICAL BIOCHEMISTRY, 2001, 291 (02) :175-197
[5]   Ethylene inhibitors and low kanamycin concentrations improve adventitious regeneration from apricot leaves [J].
Burgos, L ;
Alburquerque, N .
PLANT CELL REPORTS, 2003, 21 (12) :1167-1174
[6]   Engineered GFP as a vital reporter in plants [J].
Chiu, WL ;
Niwa, Y ;
Zeng, W ;
Hirano, T ;
Kobayashi, H ;
Sheen, J .
CURRENT BIOLOGY, 1996, 6 (03) :325-330
[7]   INTRAMOLECULAR AND INTERMOLECULAR SITE-SPECIFIC RECOMBINATION IN PLANT-CELLS MEDIATED BY BACTERIOPHAGE-P1 RECOMBINASE [J].
DALE, EC ;
OW, DW .
GENE, 1990, 91 (01) :79-85
[8]   GENE-TRANSFER WITH SUBSEQUENT REMOVAL OF THE SELECTION GENE FROM THE HOST GENOME [J].
DALE, EC ;
OW, DW .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1991, 88 (23) :10558-10562
[9]  
Darbani Behrooz, 2007, Biotechnology Journal, V2, P83, DOI 10.1002/biot.200600182
[10]  
Doyle J. J., 1987, PHYTOCHEM B, V19, P11