GIBBERELLINS IN SEEDS OF ARABIDOPSIS-THALIANA - BIOLOGICAL-ACTIVITIES, IDENTIFICATION AND EFFECTS OF LIGHT AND CHILLING ON ENDOGENOUS LEVELS

被引:62
|
作者
DERKX, MPM
VERMEER, E
KARSSEN, CM
机构
[1] Department of Plant Physiology, Agricultural University, Wageningen, 6703 BD
关键词
ARABIDOPSIS THALIANA; CHILLING; DORMANCY; GERMINATION; GIBBERELLIN; LIGHT;
D O I
10.1007/BF00029895
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
The activities of several gibberellins in stimulating germination of wild-type and GA-deficient ga1 seeds of Arabidopsis thaliana were compared. Of the six compounds tested GA(4) and GA(7)-isolactone had the highest activity and GA(7) and GA(9) the lowest; activities of GA(1) and GA(3) were intermediate. Combined application of pure GAs presented no indications that more than one GA receptor is involved. Four GAs were identified in extracts from wild-type and GA-insensitive gal seeds by combined gas chromatography mass spectrometry: GA(1), GA(3), GA(4) and GA(9). Effects of light and chilling on levels of GA(1), GA(4) and GA(9) were studied using deuterated standards. Light increased both GA levels and germination in unchilled wild-type and gal seeds. As a result of irradiation GA levels in gai seeds were 7-10 times as high as in wild-type seeds. In the dark germination was 0%, in the light 14% of gai seeds and 95% of wild-type seeds germinated. A chilling pre-treatment of 7 days at 2 degrees C was required to enhance further the germination of gai seeds in the light. Light did not increase GA levels of chilled seeds of either genotype; levels of GA(4) and GA(9) of chilled gal seeds, in the light were respectively 7 and 12 times lower than in non-chilled seeds, whereas the latter seeds germinated better. Slightly elevated levels of GA(4) were detected in darkness after chilling, but germination capacity was still 0%. These results strengthened the conclusion that GAs are required for germination of A. thaliana seeds, whereby GA(4) has intrinsic biological activity. However, it is unlikely that light and chilling stimulate germination primarily by increasing levels of GA. Instead GA sensitivity is a possible alternative.
引用
收藏
页码:223 / 234
页数:12
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