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冬季苏格兰松树的小孢子叶球的超微结构和代谢变化。

Wintertime changes in the ultrastructure and metabolism of the microsporangiate strobili of the Scotch pine.

机构信息

Department of Botany, University of Oulu, 90100, Oulu 10, Finland.

出版信息

Planta. 1978 Jan;144(1):19-29. doi: 10.1007/BF00385003.

Abstract

Terminal buds of Pinus silvestris L. containing microsporangiate strobilus primordia were collected once a month throughout the winter. The electron microscopic studies indicated that in October and December, the cells of the strobili contained a large number of vacuoles, a portion of which was supposedly autophagic, and stacked rough endoplasmic reticulum. By February, the amount of these had decreased, and instead, a large population of dense bodies was visible. Additional phenomena, characteristic at this state, were the occurrences of highly uneven contours of the plasmalemma and of inclusions of various kinds between the plasmalemma and the cell wall. In March, autolysis was visible in a portion of cells outside the sporangia. In the sporangia the ground cytoplasm was thin but the number of organelles was increasing. In the April collections, cell divisions were visible. The amount of protein per dry weight increased during the winter reaching a peak in February. The activity of RNases, having optima of pH 5.0 and pH 7.5, was measured in two successive years. Both series showed a period of high activity during the middle of the winter. The exact timing of this period depended on the year in question. On the basis of these observations, the dormant period of the microsporangiate strobili of the Seotch pine is divided into three sub-periods. It is also suggested that the definition of dormancy of these structures should include a mentioning of alterations in the metabolical machinery of the cells.

摘要

冬季期间,每月采集一次包含小孢子叶原基的欧洲赤松顶芽。电子显微镜研究表明,在 10 月和 12 月,小孢子叶的细胞中含有大量液泡,其中一部分可能是自噬的,并且堆叠了粗糙内质网。到 2 月,这些数量减少了,取而代之的是大量密集体可见。在这个状态下还出现了其他特征性现象,即质膜的高度不均匀轮廓的发生以及质膜和细胞壁之间各种内含物的发生。3 月,部分孢子囊外的细胞发生自溶。在孢子囊中,细胞质稀薄,但细胞器数量增加。在 4 月的采集物中,可见细胞分裂。冬季期间,每克干重的蛋白质含量增加,在 2 月达到峰值。在连续两年中测量了具有 pH5.0 和 pH7.5 最佳 pH 值的 RNase 的活性。两个系列都显示出冬季中期活性较高的时期。这个时期的确切时间取决于所讨论的年份。基于这些观察结果,将欧洲赤松小孢子叶芽的休眠期分为三个亚期。还建议这些结构休眠的定义应包括对细胞代谢机制的改变的提及。

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