Hagiwara S, Takahashi M, Yamagishi A, Zhang Y, Goto K
Division of Biological Sciences, Graduate School of Science, Hokkaido University, Sapporo, Japan.
Photochem Photobiol. 2001 Nov;74(5):726-33. doi: 10.1562/0031-8655(2001)074<0726:nfrpco>2.0.co;2.
Effects of light and darkness on cell-cycle progression were studied in the log-linear photoautotrophic growth mode of Euglena gracilis. We found that there are light-dependent restriction points in the post-G1 phases, quite in contrast to Chlamydomonas, where a light-dependent restriction is known to exist only in the G1 phase. Thus, in E. gracilis, there are photoinduced commitments of G1-, S- and G2-phase cells that allow them to progress to the G1, S and G2 phases in darkness, and there are dark-induced G1-, S- and G2-phase arrests. In darkness, only committed cells were able to progress to the committed phases (G1, S or G2), whereas uncommitted cells were unable to undergo a cell-cycle transition. Whether or not cells were induced to commit by irradiation, they were eventually arrested somewhere in the G1, S or G2 (but not M) phase within 14 h of being transferred to darkness. We also describe the dependence of photoinduced commitment on light intensity and discuss the results as they relate to cell-cycle progression in continuous light.
在纤细裸藻的对数线性光合自养生长模式下,研究了光照和黑暗对细胞周期进程的影响。我们发现,在后G1期存在光依赖限制点,这与衣藻截然不同,在衣藻中已知光依赖限制仅存在于G1期。因此,在纤细裸藻中,G1期、S期和G2期细胞存在光诱导的承诺,使它们能够在黑暗中进入G1期、S期和G2期,并且存在暗诱导的G1期、S期和G2期阻滞。在黑暗中,只有已承诺的细胞能够进入承诺阶段(G1期、S期或G2期),而未承诺的细胞则无法进行细胞周期转换。无论细胞是否通过照射被诱导承诺,在转移到黑暗中14小时内,它们最终会在G1期、S期或G2期(但不是M期)的某个位置停滞。我们还描述了光诱导承诺对光强度的依赖性,并讨论了与连续光照下细胞周期进程相关的结果。