Enhanced anthocyanin synthesis in foliage plant Caladium bicolor

被引:26
作者
Li, SJ [1 ]
Deng, XM [1 ]
Mao, HZ [1 ]
Hong, Y [1 ]
机构
[1] Natl Univ Singapore, Temasek Life Sci Lab, Singapore 117604, Singapore
关键词
caladium; anthocyanin; anthocyanin regulatory gene; genetic transformation; foliage plant;
D O I
10.1007/s00299-004-0871-2
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
A protocol was developed for Agrobacterium-mediated genetic transformation of monocotyledon foliage plant Caladium bicolor cv. Jackie Suthers using leaf disc and petiole as the explants. The explants were inoculated with Agrobacterium strain LBA4404 harboring a binary vector with the maize anthocyanin regulatory gene Lc under the control of the cauliflower mosaic virus promoter. Callus formation was induced in MS medium supplemented with 0.5 mg/l 6-benzylaminopurine (6-BA), 0.1 mg/1 2,4-dichlorophenoxyacetic acid (2,4-D), 30 g/l sucrose and kanamycin 50 mg/l for selection. Resistant calli were induced for shoot generation in MS medium with 2 mg/l 6-BA and 0.2 mg/l alpha-naphthaleneacetic acid. As much as 10% of the explants gave rise to kanamycin-resistant shoots with our procedure. Transformed plants had enhanced anthocyanin accumulation in the roots, leaves and stems ( epidermis and vascular bundles). Integration of the transgene into the host genome was confirmed by genomic Southern blot hybridization, and RNA blot hybridization analysis indicated that the expression of the transgene correlated with anthocyanin accumulation. This investigation illustrates the utility of anthocyanin regulatory genes in the genetic manipulation of the color of foliage plants. It also supports the premise that the Lc gene can be used as a powerful non-destructive cell autonomous visual marker in a wide variety of plants, as exemplified by the perfect symmetrical half-green/halfred plant presumably derived from the symmetrical division of one transgenic and one non-transgenic precursor meristematic cell.
引用
收藏
页码:716 / 720
页数:5
相关论文
共 15 条
[1]   PETUNIA-HYBRIDA GENES RELATED TO THE MAIZE REGULATORY C1-GENE AND TO ANIMAL MYB PROTOONCOGENES [J].
AVILA, J ;
NIETO, C ;
CANAS, L ;
BENITO, MJ ;
PAZARES, J .
PLANT JOURNAL, 1993, 3 (04) :553-562
[2]  
CANTWELL TB, 1994, PROF PLANT GROWERS A, V25, P5
[3]  
Chang S. J., 1993, Plant Molecular Biology Reporter, V11, P113, DOI 10.1007/BF02670468
[4]   MODIFICATION OF FLOWER COLOR IN FLORISTS CHRYSANTHEMUM - PRODUCTION OF A WHITE-FLOWERING VARIETY THROUGH MOLECULAR-GENETICS [J].
COURTNEYGUTTERSON, N ;
NAPOLI, C ;
LEMIEUX, C ;
MORGAN, A ;
FIROOZABADY, E ;
ROBINSON, KEP .
BIO-TECHNOLOGY, 1994, 12 (03) :268-271
[5]   GENETIC AND DEVELOPMENTAL CONTROL OF ANTHOCYANIN BIOSYNTHESIS [J].
DOONER, HK ;
ROBBINS, TP ;
JORGENSEN, RA .
ANNUAL REVIEW OF GENETICS, 1991, 25 :173-199
[6]   Lc as a non-destructive visual reporter and transposition excision marker gene for tomato [J].
Goldsbrough, AP ;
Tong, YS ;
Yoder, JI .
PLANT JOURNAL, 1996, 9 (06) :927-933
[7]   A COMMON GENE REGULATES PIGMENTATION PATTERN IN DIVERSE PLANT-SPECIES [J].
GOODRICH, J ;
CARPENTER, R ;
COEN, ES .
CELL, 1992, 68 (05) :955-964
[8]  
LI BJ, 1994, SCI CHINA SER B, V37, P280
[9]   ARABIDOPSIS AND NICOTIANA ANTHOCYANIN PRODUCTION ACTIVATED BY MAIZE REGULATOR-R AND REGULATOR-C1 [J].
LLOYD, AM ;
WALBOT, V ;
DAVIS, RW .
SCIENCE, 1992, 258 (5089) :1773-1775
[10]   MAIZE R-GENE FAMILY - TISSUE-SPECIFIC HELIX-LOOP-HELIX PROTEINS [J].
LUDWIG, SR ;
WESSLER, SR .
CELL, 1990, 62 (05) :849-851