Expression of GFP and Bt transgenes in Brassica napus and hybridization with Brassica rapa

被引:105
作者
Halfhill, MD [1 ]
Richards, HA [1 ]
Mabon, SA [1 ]
Stewart, CN [1 ]
机构
[1] Univ N Carolina, Dept Biol, Greensboro, NC 27402 USA
关键词
transgenic canola; GFP; interspecific hybridization; Brassica rapa; Bacillus thuringiensis;
D O I
10.1007/s001220100613
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
It is possible to monitor the movement of transgenes by tagging them with green fluorescent protein (GFP). In order to develop a model to study transgene flow, canola (Brassica napus ev Westar) was transformed with two GFP constructs, mGFP5er (GFP only) and pSAM 12 [GFP linked to a synthetic Bacillus thuringiensis (Bt) cry1Ac endotoxin gene]. Transformed callus sectors that fluoresced green were preferentially selected in the tissue culture process. Four independent GFP canola events and 12 events of GFP/Bt canola were regenerated through tissue culture. GFP fluorescence was macroscopically detectable throughout the entire life cycle of canola. The GFP/Bt events were insecticidal to neonate corn earworm. (Helicoverpa zea) larvae and prevented herbivory damage. Fluorescence intensity at 508 nm. varied between the independent transformation events, and ranged from 7.6 x 10(5) to 13.8 x 10(5) (counts per second) in contrast with the wild-type at 5.3 x 10(5) cps. Nine GFP/Bt and three GFP events were hybridized with three wild accessions of B. rapa. The resultant hybrids fluoresced green and were insecticidal to neonate corn earworm larvae to the same degree as the transgenic canola parents. However, fluorescence intensities of the hemizygous F-1 hybrid lines were lower than the respective original homozygous canola parents. Each F-1 hybrid line was backcrossed by hand onto the B. rapa parent, and transgenic backcrosses were produced at rates ranging from 15% to 34%. These data suggest that GFP can be used as a tool to monitor transgene flow from crop species to wild relatives.
引用
收藏
页码:659 / 667
页数:9
相关论文
共 28 条
[1]   GREEN FLUORESCENT PROTEIN AS A MARKER FOR GENE-EXPRESSION [J].
CHALFIE, M ;
TU, Y ;
EUSKIRCHEN, G ;
WARD, WW ;
PRASHER, DC .
SCIENCE, 1994, 263 (5148) :802-805
[2]   Nutritional genomics: Manipulating plant micronutrients to improve human health [J].
DellaPenna, D .
SCIENCE, 1999, 285 (5426) :375-379
[3]   Agrobacterium-mediated transformation of sugarcane using GFP as a screenable marker [J].
Elliott, AR ;
Campbell, JA ;
Brettell, RIS ;
Grof, CPL .
AUSTRALIAN JOURNAL OF PLANT PHYSIOLOGY, 1998, 25 (06) :739-743
[4]   Green fluorescent protein as a screenable marker to increase the efficiency of generating transgenic woody fruit plants [J].
Ghorbel, R ;
Juárez, J ;
Navarro, L ;
Peña, L .
THEORETICAL AND APPLIED GENETICS, 1999, 99 (1-2) :350-358
[5]   Green fluorescent protein as a marker for expression of a second gene in transgenic plants [J].
Harper, BK ;
Mabon, SA ;
Leffel, SM ;
Halfhill, MD ;
Richards, HA ;
Moyer, KA ;
Stewart, CN .
NATURE BIOTECHNOLOGY, 1999, 17 (11) :1125-1129
[6]  
HARPER BK, 2000, PLANT MOL BIOL REP, V18, P1
[7]   Removal of a cryptic intron and subcellular localization of green fluorescent protein are required to mark transgenic Arabidopsis plants brightly [J].
Haseloff, J ;
Siemering, KR ;
Prasher, DC ;
Hodge, S .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1997, 94 (06) :2122-2127
[8]  
Holm L., 1997, NATURAL HIST DISTRIB
[9]   SPONTANEOUS HYBRIDIZATION BETWEEN OILSEED RAPE (BRASSICA-NAPUS) AND WEEDY BRASSICA-CAMPESTRIS (BRASSICACEAE) - A RISE OF GROWING GENETICALLY-MODIFIED OILSEED RAPE [J].
JORGENSEN, RB ;
ANDERSEN, B .
AMERICAN JOURNAL OF BOTANY, 1994, 81 (12) :1620-1626
[10]   Applications of green fluorescent protein in plants [J].
Leffel, SM ;
Mabon, SA ;
Stewart, CN .
BIOTECHNIQUES, 1997, 23 (05) :912-+