EFFECTS OF EXOGENOUS GIBBERELLINS AND PACLOBUTRAZOL ON FLORAL STALK GROWTH OF TULIP SPROUTS ISOLATED FROM COOLED AND NON-COOLED TULIP BULBS

被引:0
|
作者
REBERS, M
ROMEIJN, G
KNEGT, E
VANDERPLAS, LHW
机构
关键词
COLD REQUIREMENT; FLORAL STALK ELONGATION; FLOWER DEVELOPMENT; GIBBERELLIN; PACLOBUTRAZOL; TISSUE SENSITIVITY; TULIP; TULIPA GESNERIANA;
D O I
暂无
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
The involvement of gibberellins (GAs) in the regulation of floral stalk elongation and flower development has been studied in tulip. The biological activity of GA(4) and GA(9), both endogenous in tulip bulb sprouts, and GA(1), was tested in vitro on sprouts of cooled and non-cooled tulip bulbs (Tulipa gesneriana L,. cv. Apeldoorn), in the presence or absence of the GA biosynthesis inhibitor paclobutrazol. At early starting dates of incubation, floral stalks from both cooled and non-cooled bulbs hardly showed any elongation in the absence of exogenous GA. Paclobutrazol had no effect on floral stalk elongation, and the response to GAs of sprouts from cooled bulbs was greater than that of sprouts from non-cooled bulbs. At later starts of incubation, considerable floral stalk elongation occurred without GA application. Paclobutrazol inhibited this floral stalk elongation, and the growth of sprouts from both cooled and non-cooled bulbs was stimulated by GA application. The effect of paclobutrazol was reversed by simultaneous application of GA(4) or GA(9). Application of GA with and without paclobutrazol resulted in the same elongation of the floral stalk, indicating the absence of substantial side effects of the inhibitor. The isolated sprouts did not develop a full-grown flower without the addition of GA. GA(4) was more effective than GA(9) in stimulating this flower development. The results demonstrate that both sprouts from cooled and non-cooled bulbs are responsive to exogenous GAs in vitro, and may be a site of GA biosynthesis.
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页码:661 / 667
页数:7
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