Department of Biology, Wayne State University, Detroit, Michigan, USA.
Planta. 1968 Sep;83(3):303-13. doi: 10.1007/BF00385340.
Changes in the cells comprising the abscission zones of Lycopersicon esculentum and Nicotiana tabacum flower pedicels were observed, apparently associated with the separation of the flowers from the plants. Special attention is devoted to changes which occurred in the fine structure of intracellular components of the abscission cells. Microbodies with crystalloid cores in cells comprising the abscission tissue of the pedicels were observed to undergo structural changes. These changes occurred prior to the cell-wall degradation which resulted in cell separation. At the time of cell separation, the number of microbodies present in the abscission cells was greatly diminished. The changes in the fine structure of the crystalloid core may represent the release of latent enzymes into an active form which then induces cell separation in the abscission tissue. Other structures in the cells in which changes occurred are the endoplasmic reticulum (ER) and the nucleolus. Prior to, and during cell-wall disintegration, an abundance of rough ER was observed within the abscission cells. The occurrence of rough ER may represent an increase in the synthesis of protein for export from the cells of the abscission region and/or for the synthesis of certain enzymes associated with the degradation of cell walls in the abscission zone itself. In some abscission cells, prior to the cell-separation phase, nucleoli were observed which appeared as though they had segregated spatially. In such cases, the amorphous zone was the only nucleolar component observed. The possible significance of these observations is discussed.
对番茄和烟草花花梗离区细胞的变化进行了观察,这些变化显然与花与植株的分离有关。特别关注的是离区细胞内成分的精细结构变化。在离区组织的细胞中,观察到具有结晶核心的微体发生结构变化。这些变化发生在导致细胞壁降解从而导致细胞分离之前。在细胞分离时,离区细胞中存在的微体数量大大减少。结晶核心的精细结构变化可能代表潜在酶释放到活性形式,然后诱导离区组织中的细胞分离。细胞中发生变化的其他结构是内质网(ER)和核仁。在细胞壁解体之前和期间,在离区细胞内观察到大量粗糙内质网。粗糙内质网的出现可能代表了从离区细胞中输出的蛋白质合成的增加,和/或与离区本身细胞壁降解相关的某些酶的合成增加。在一些离区细胞中,在细胞分离阶段之前,观察到核仁,它们似乎在空间上已经分离。在这种情况下,无定形区是唯一观察到的核仁成分。讨论了这些观察结果的可能意义。