ENVIRONMENTAL AND HORMONAL-REGULATION OF SEED DORMANCY AND GERMINATION IN CAPE FYNBOS LEUCOSPERMUM RBR (PROTEACEAE) SPECIES

被引:20
作者
BRITS, GJ
CUTTING, JGM
BROWN, NAC
VANSTADEN, J
机构
[1] UNIV NATAL, DEPT HORT SCI, PIETERMARITZBURG 3200, SOUTH AFRICA
[2] NATL BOT INST, CONSERVAT BIOL RES UNIT, CLAREMONT 7735, SOUTH AFRICA
[3] UNIV NATAL, DEPT BOT, PIETERMARITZBURG 3200, SOUTH AFRICA
关键词
ALTERNATING TEMPERATURE; CYTOKININ; ECO-PHYSIOLOGY; GIBBERELLIN; LEUCOSPERMUM; PLANT GROWTH SUBSTANCES; SEED DORMANCY;
D O I
10.1007/BF00024724
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
The endogenous levels of abscisic acid (ABA), cytokinins (CKs) and gibberellins (GA(1)/GA(3) combined) in Leucospermum glabrum embryos were monitored in axes and cotyledons separately during normal germination. Plant growth substance changes were correlated with known morphological, structural and ultrastructural events in the embryo of Proteaceae. The effect of exogenous application of 6-benzyladenine (BA) and GA(4+7) under three known dormancy-enforcing environmental conditions were studied in L. glabrum and L. cordifolium. The endogenous levels of the hormone classes GAs and CKs changed phasically during normal germination under a single alternating temperature regime. GA(1)/GA(3) levels increased in cotyledons within 3 d of hydration while at the same time initial CK levels decreased. Following this transient peak GAs fell to a low level throughout the germinative period. Subsequently the CKs, Z and ZR, and to a lesser extent their dihydro-derivatives, appeared in both the axes and the cotyledons as fluctuating, transient peaks. Early increases in GAs are thought to control the induction of the germination process. The CK pattern suggests that CKs control at least three major processes of germination sensu stricto following induction: 1) early mobilization of protein and lipid reserves in the axis and later in cotyledons, 2) cotyledon expansion which causes the endotesta to split permitting radicle protrusion and 3) later, radicle growth. Our results indicate that dormancy in intact Leucospermum seeds is enforced by embryo anoxia, regulated by the impermeable exotesta. In addition synthesis of or tissue sensitizing to both hormone classes GAs and CKs depends on moderately low temperature as the primary environmental requirement. For GA synthesis a secondary, daily pulse of high temperature is required. Inhibitory hormones, specifically ABA, appear not to play a role.
引用
收藏
页码:181 / 193
页数:13
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