Hellung-Larsen P, Andersen A P
Department of Biochemistry B, Panum Institute, University of Copenhagen, Denmark.
J Cell Sci. 1989 Feb;92 ( Pt 2):319-24. doi: 10.1242/jcs.92.2.319.
Cultures of Tetrahymena pyriformis, T. hegewishi and T. malaccensis have been studied with regard to control of cell volume and cellular dry weight. Cell volume was measured on cells suspended in 0.9% sodium chloride + 0.1% sodium azide using a Multisizer cell counter (Coulter). Tetrahymena were grown at different temperatures and under various up- or downshift conditions. In all cases the changes in cell volume are paralleled by changes in cellular dry weight. The volume and the dry weight of a Tetrahymena cell are determined by the particular medium and the growth temperature. Large cells are seen in concentrated media and at low growth temperatures resulting in cell volumes up to 17,000 microns 3, whereas starving cells decrease gradually towards 700 microns 3 or even smaller sizes. It is proposed that lag phase observed at up- and downshift is to a large extent due to the necessary adjustment of the cell volume to the new conditions.
已针对梨形四膜虫、赫氏四膜虫和马六甲四膜虫的细胞体积控制和细胞干重进行了研究。使用库尔特多通道细胞计数器(Coulter)对悬浮于0.9%氯化钠 + 0.1%叠氮化钠中的细胞进行细胞体积测量。四膜虫在不同温度以及各种升档或降档条件下生长。在所有情况下,细胞体积的变化都与细胞干重的变化平行。四膜虫细胞的体积和干重由特定培养基和生长温度决定。在浓缩培养基中以及低生长温度下可观察到较大的细胞,其细胞体积可达17,000立方微米,而饥饿细胞则逐渐减小至700立方微米甚至更小。有人提出,在升档和降档时观察到的滞后期在很大程度上是由于细胞体积需要适应新条件。