Fructan accumulation and sucrose metabolism in transgenic maize endosperm expressing a Bacillus amyloliquefaciens SacB gene

被引:61
作者
Caimi, PG
McCole, LM
Klein, TM
Kerr, PS
机构
[1] Agricultural Products, E. I. DuPont de Nemours and Co., Wilmington
关键词
D O I
10.1104/pp.110.2.355
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Over 40,000 species of plants accumulate fructan, beta-2-1- and beta-2-6-linked polymers of fructose as a storage reserve. Due to their high fructose content, several commercial applications for fructans have been proposed. However, plants that accumulate these polymers are not agronomically suited for large-scale cultivation or processing. This study describes the transformation of a Bacillus amyloliquefaciens SacB gene into maize (Zea mays L.) callus by particle bombardment. Tissue-specific expression and targeting of the SacB protein to endosperm vacuoles resulted in stable accumulation of high-molecular-weight fructan in mature seeds. Accumulation of fructan in the vacuole had no detectable effect on kernel development or germination. Fructan levels were found to be approximately 9-fold higher in sh(2) mutants compared to wild-type maize kernels. In contrast to vacuole-targeted expression, starch synthesis and endosperm development in mature seeds containing a cytosolically expressed SacB gene were severely affected. The data demonstrate that hexose resulting from cytosolic SacB activity was not utilized for starch synthesis. Transgenic seeds containing a chimeric SacB gene provide further evidence that the dominant pathway for starch synthesis in maize endosperm is through uridine diphosphoglucose catalyzed by the enzyme sucrose synthase.
引用
收藏
页码:355 / 363
页数:9
相关论文
共 42 条
[31]   EXPRESSION IN PLANTS OF 2 BACTERIAL ANTIBIOTIC-RESISTANCE GENES AFTER PROTOPLAST TRANSFORMATION WITH A NEW PLANT EXPRESSION VECTOR [J].
PIETRZAK, M ;
SHILLITO, RD ;
HOHN, T ;
POTRYKUS, I .
NUCLEIC ACIDS RESEARCH, 1986, 14 (14) :5857-5868
[32]  
ROE JH, 1949, J BIOL CHEM, V178, P839
[33]  
SAHNNON J, 1968, PLANT PHYSIOL, V43, P1815
[34]  
Sambrook J., 1989, MOL CLONING LABORATO, V2nd
[35]   TRANSPORT AND METABOLISM OF A SUCROSE ANALOG (1'-FLUOROSUCROSE) INTO ZEA-MAYS-L ENDOSPERM WITHOUT INVERTASE HYDROLYSIS [J].
SCHMALSTIG, JG ;
HITZ, WD .
PLANT PHYSIOLOGY, 1987, 85 (04) :902-905
[37]  
SONNEWALD U, 1993, J EXP BOT, V44, P293
[38]   MANIPULATION OF SINK-SOURCE RELATIONS IN TRANSGENIC PLANTS [J].
SONNEWALD, U ;
LERCHL, J ;
ZRENNER, R ;
FROMMER, W .
PLANT CELL AND ENVIRONMENT, 1994, 17 (05) :649-658
[39]  
VANDERMEER IM, 1994, PLANT CELL, V6, P561, DOI 10.1105/tpc.6.4.561
[40]   DETERMINATION OF EASILY HYDROLYZABLE FRUCTOSE UNITS IN DEXTRAN PREPARATIONS [J].
WISE, CS ;
DIMLER, RJ ;
DAVIS, HA ;
RIST, CE .
ANALYTICAL CHEMISTRY, 1955, 27 (01) :33-36