Seed development, testa structure and precocious germination of Chinese cabbage (Brassica rapasubsp.pekinensis)
- 19 September 1998
- journal article
- research article
- Published by Cambridge University Press (CUP) in Seed Science Research
- Vol. 8 (3), 385-398
- https://doi.org/10.1017/s0960258500004311
Abstract
On the basis of embryo and seed colour, morphology, accumulation of fresh and dry weight, seed development of Chinese cabbage (Brassica rapasubsp.pekinensis) can be divided into 10 discrete but contiguous stages. Precocious germination (PG) occurs in the seeds of a Chinese cabbage mutant on the parent plant mainly during the maturation period (from stage 5 to 8), with either the radicle or the cotyledon protruding out of the testa. All plants of the mutant line produce some PG seeds, but among the seeds, only 18% (maximum) germinate precociously. The developing mutant seeds have higher water contents and lower dry weights than those of the wild-type and are less tolerant of desiccation. The testa structure of Chinese cabbage seed is similar to that of otherBrassicaspecies. In developing seeds, it consists of the epidermis, subepidermis, palisade layer and pigmented layers, while in the mature dry seeds, all the cell layers except the palisade layer are crushed into non-cell structures and are stacked on the outer and inner faces of the palisade layer; the aleurone layer is fused to the testa. An alteration in testa structure of the mutant seeds (both non-germinated and precociously-germinated seeds) is probably related to PG. The secondary cell wall materials are less, or not deposited on the radial and basal walls of the palisade cells on the adaxial side of the testa, which could result in a weaker mechanical restraint, thus leading to PG.Keywords
This publication has 40 references indexed in Scilit:
- Primary dormancy in tomato (Lycopersicon esculentumcv. Moneymaker): studies with thesitiensmutantJournal of Experimental Botany, 1996
- Molecular Characterization of the Interspecific Origin of Viviparous OnionJournal of Heredity, 1991
- Abscisic Acid and the Developmental Regulation of Embryo Storage Proteins in MaizePlant Physiology, 1991
- Water Relations of Seed Development and Germination in Muskmelon (Cucumis melo L.)Plant Physiology, 1990
- In Vivo Inhibition of Seed Development and Reserve Protein Accumulation in Recombinants of Abscisic Acid Biosynthesis and Responsiveness Mutants in Arabidopsis thalianaPlant Physiology, 1989
- Comparative Ultrastructure of Developing Seed Coats of "Hard-Seeded" and "Soft-Seeded" Varieties of Soybean, Glycine max (L.) Merr.Botanical Gazette, 1987
- Ethidium bromide (EB) induced mutants in gingelly (Sesamum indicum L.) cultivar ‘Vinayak’Theoretical and Applied Genetics, 1985
- Induction of dormancy during seed development by endogenous abscisic acid: studies on abscisic acid deficient genotypes of Arabidopsis thaliana (L.) Heynh.Planta, 1983
- Responses of the moss Tortula ruralis to desiccation treatments. I. Effects of minimum water content and rates of dehydration and rehydrationCanadian Journal of Botany, 1981
- Integument initiation and testa development in some CruciferaeBotanical Journal of the Linnean Society, 1975