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首页> 外文期刊>Journal of Experimental Botany >Effects of cyclin-dependent kinase activity on the coordination of growth and the cell cycle in green algae at different temperatures
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Effects of cyclin-dependent kinase activity on the coordination of growth and the cell cycle in green algae at different temperatures

机译:细胞周期蛋白依赖性激酶活性对不同温度的生长和细胞周期的影响

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The progression of the cell cycle in green algae dividing by multiple fission is, under otherwise unlimited conditions, affected by the growth rate, set by a combination of light intensity and temperature. In this study, we compared the cell cycle characteristics of Desmodesmus quadricauda at 20 degrees C or 30 degrees C and upon shifts between these two temperatures. The duration of the cell cycle in cells grown under continuous illumination at 20 degrees C was more than double that at 30 degrees C, suggesting that it was set directly by the growth rate. Similarly, the amounts of DNA, RNA, and bulk protein content per cell at 20 degrees C were approximately double those of cells grown at the higher temperature. For the shift experiments, cells grown at either 20 degrees C or 30 degrees C were transferred to darkness to prevent further growth, and then cultivated at the same or the other temperature. Upon transfer to the lower temperature, fewer nuclei and daughter cells were produced, and not all cells were able to finish the cell cycle by division, remaining multinuclear. Correspondingly, cells placed in the dark at the higher temperature divided faster into more daughter cells than the control cells. These differences correlated with shifts in the preceding cyclin-dependent kinase activity, suggesting that cell cycle progression was not related to growth rate or cell biomass but correlated with cyclin-dependent kinase activity.
机译:在以其他方式无限制的条件下,通过多次裂变的细胞周期的进展是受生长速率影响的,通过光强度和温度的组合设定。在这项研究中,我们将Desmodesmus Quadicricauda的细胞周期特性与20摄氏度或30摄氏度的细胞周期特征进行了比较。在连续照射下在20℃下生长的细胞中细胞周期的持续时间大于30℃的两倍,表明它直接通过生长速度设定。类似地,在20℃下每胞细胞的DNA,RNA和本体蛋白质含量的量大约是在较高温度下生长的细胞的两倍。对于换档实验,在20℃或30℃下生长的细胞转移到暗度以防止进一步生长,然后在相同或其他温度下培养。转移到较低的温度后,产生更少的细胞核和子细胞,并且并非所有细胞都能够通过划分进行细胞周期,剩余的多核。相应地,在较高温度下放置在暗中的细胞比对照细胞划分为更快的子细胞。这些差异与先前的细胞周期蛋白依赖性激酶活性相关的差异,表明细胞周期进展与生长速率或细胞生物质无关但与细胞周期蛋白依赖性激酶活性相关。

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