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The -amylase activity and ultrastructure of aleurone cells inseeds of Avena sativa L. were studied using seed halves withembryo (embryo seeds) which had imbibed water and seed halveswithout embryo (embryo-less seeds) which had imbibed water withor without GA3. -Amylase activity was detected in the aleurone layers of embryoseeds that had imbibed water and embryo-less seeds that hadimbibed GA3-water. The ultrastructure of aleurone cells withdetectable -amylase activity showed marked changes in the roughsurfaced endoplasmic reticulum (rER), in the flattened sacculesforming stacks and in the aleurone grains. The progressive changesin the rER were as follows: first, the number of slender rERincreased; then, the inner space became wider and showed roundor oval profile; and finally, the rER became slender again witha reduced number of adhering ribosomes. The flattened sacculesforming stacks were appressed to the surface of aleurone grains.With time, they decreased in number and finally disappeared.In parallel with the decrease of flattened saccules, digestionof proteinaceous material inside the aleurone grains proceeded. (Received February 24, 1987; Accepted September 3, 1987)  相似文献   
2.
The localization of Ca2+ in cells of the periblem and dermatogen in the root meristem and the columella and peripheral cells of the root cap of maize was examined by the precipitation method of potassium pyroantimonate and EGTA-treatment. In periblem and dermatogen cells, Ca2+ was found to be localized in the nucleoplasm and granular zone of the nucleolus. Ca2+ was also found in most cell organelles: in the matrix in mitochondria, on the thylakoid membrane in proplastids, in the vacuoles and on the plasma membranes. Ca2+ was also distributed throughout the cytoplasmic ground matrix. Much Ca2+ was present in the cell wall soon after its formation during the cell division. Ca2+ was also conspicuous in the vesicles of Golgi in the dermatogen cells. In columella and peripheral cells, there was less Ca2+ in the organelles and cytoplasmic ground matrix, but Ca2+ was present in Golgi vesicles in the peripheral cells. Electron microscopic and X-ray microanalysis showed that Ca2+ was also present in the mucilaginous layer, the outermost cell wall of the peripheral cells.  相似文献   
3.
The effects of GA3 and/or ABA on the α-amylase activity and the ultrastructure of aleurone cells in halves of seeds without embryos (embryo-less half seeds) of oats (Avena sativa L.) were studied. α-Amylase activity was detected by the starch-agar gel method in the aleurone layers of embryo-less half seeds soaked in 1 μM GA3 solution or 100 μM GA3+10 μM ABA solution but not in those of seeds soaked in distilled water, 10 μM ABA solution, or 1 μM GA3+10 μM ABA solution. Ultrastructural examinations of aleurone cells with α-amylase activity showed a decrease in the number of sphaerosomes, the appearance of flattened saccules pressed to the surface of aleurone grains, and the development and transformations of the rER from a slender form to the one with wide inner spaces. In the aleurone cells in which the enzyme activity was not detected, components of the rER showed only slender profiles. The number of sphaerosomes did not decrease, and no flattened saccules appeared in the aleurone cells treated with 10 μM ABA or 1 μM GA3+10 μM ABA.  相似文献   
4.
The fine structure and ATPase activity of the mitotic spindle in neoblasts of planaria were examined. In neoblasts, the cells have a large nucleus and nucleolus. Mitochondria are aggregated around the nucleus with chromatoid bodies adjacent. The cytoplasm contains little endoplasmic reticulum (ER) and few Golgi bodies but many free ribosomes, forming polysomes, can be seen throughout the cytoplasmic and spindle ground areas. In addition, centriolar bodies, atypical centrioles, can also be recognized in the cytoplasm. Cells in the G2 stage contain a pair of electron-dense bodies, both consisting of fibrogranules but differing from each other in fine structure and, in the mitotic stage, only one fibrogranular body can be recognized at each pole. ATPase activity was detected in the centriolar bodies in the G2 and mitotic stages and in the ground area of the cytoplasm and spindle apparatus filled by free ribosomes. The activity associated with the microtubules differed with the developmental stage.  相似文献   
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