Gibberellin-induced separation of cells in isolated endosperm of celery seed
- 1 January 1976
- journal article
- research article
- Published by Springer Nature in Planta
- Vol. 129 (2) , 113-122
- https://doi.org/10.1007/bf00390017
Abstract
The mature seed of celery (Apium graveolens, L.) contains a small axile linear embryo surrounded by endosperm which occpies the bulk of the seed. The endosperm is living and consists of mostly large angular thick-walled cells containing aleurone grains (often with globoids) and lipid droplets. — Using de-embryonated seeds, it has been shown that the endosperm was induced to break down by gibberellin. The aleurone grains became swollen and lost their contents and the bulk of each cell wall was hydrolyzed. However, a thin resistant layer of wall remained around each protoplast. The wall hydrolysis caused the endosperm to break down into individual cells which could be plasmolyzed and therefore appeared to be still living. All cells of the endosperm responded to gibberellin in a similar way although the cells near the radicle appeared to degrade more rapidly than those elsewhere. There was no change in the absence of the hormone. The response was apparently specific to gibberellin and did not occur in the presence of ethylene, kinetin, abscisic acid and indole acetic acid. The results were the same in light and in darkness. — It has been thought that endosperm breakdown during germination of seed such as celery involved release of hydrolases from the expanding embryo. The results of this study indicate that endosperm breakdown might be caused by hydrolases arising in the endosperm itself in response to gibberellin released from the embryo.This publication has 43 references indexed in Scilit:
- A low-viscosity epoxy resin embedding medium for electron microscopyPublished by Elsevier ,2004
- The Mechanism of Low Temperature Dormancy in Mature Seeds of Syringa SpeciesPhysiologia Plantarum, 1973
- Abscission: The Role of Ethylene, Ethylene Analogues, Carbon Dioxide, and OxygenPlant Physiology, 1968
- Red Light Induction of Gibberellin Synthesis in LeavesNature, 1968
- Senescence, Abscission and Cellulase Activity in Phaseolus vulgarisNature, 1967
- Gibberellic Acid Controlled Synthesis of α-Amylase in Barley EndospermPlant Physiology, 1964
- Action of Gibberellic Acid on Lettuce Seed GerminationPlant Physiology, 1960
- A SPECIFIC HYDROXYLAMINE-FERRIC CHLORIDE REACTION FOR HISTOCHEMICAL LOCALIZATION OF PECTINStain Technology, 1959
- SOME FACTORS AFFECTING GERMINATION OF CELERY SEEDPlant Physiology, 1949
- The Comparative Internal Morphology of SeedsThe American Midland Naturalist, 1946