Wright M L, Myers Y M, Karpells S T, Skibel C A, Clark M B, Fieldstad M L, Driscoll I J
Biology Department, College of Our Lady of the Elms, Chicopee, MA 01013.
Chronobiol Int. 1988;5(4):317-30. doi: 10.3109/07420528809067777.
Rhythms of labeling and mitotic indices were studied in the hindlimb epidermis of the anuran tadpole Rana pipiens under different light/dark (LD) cycles and daylengths in order to examine the role of the various parameters of the lighting regimen in setting the periods of the rhythms and the timing of the cell proliferation peaks. Altering the time of, or inverting, the 12 h light period on a 24 h day resulted in phase shifting of basically bimodal circadian rhythms with peaks in the light and dark. Thus the cell proliferation rhythms were entrained to the LD cycle. These rhythms also entrained to noncircadian schedules since they lengthened on a 15L:15D cycle and shortened on a 9L:9D cycle, although the bimodal characteristic of a peak in the light and a peak in the dark remained. Studies of 18L:6D and 6L:18D cycles in which either the time of onset of light or dark was changed relative to the 12L:12D control indicated that the onset of dark may regulate the timing of the labeling index peaks while the onset of light may determine the time of occurrence of mitotic index peaks. Control of the timing of labeling and mitotic index peaks by different parameters of the LD cycle suggests a mechanism for cell cycle regulation by the environmental lighting schedule. Analysis of the rhythms on all the cycles studied suggested that labeling index rhythms equal the length of, or twice the length of, the dark period. Mitotic index rhythms equal the daylength or a multiple of the length of the dark period.
为了研究光照方案的各种参数在设定节律周期和细胞增殖峰值时间方面的作用,我们在不同的光/暗(LD)周期和日长条件下,对无尾两栖类蝌蚪牛蛙(Rana pipiens)后肢表皮的标记节律和有丝分裂指数进行了研究。在24小时的一天中改变12小时光照期的时间或进行反转,会导致基本上呈双峰的昼夜节律发生相位偏移,其峰值分别出现在光照期和黑暗期。因此,细胞增殖节律被调整到LD周期。这些节律也能被非昼夜节律的时间表所调整,因为它们在15L:15D周期中延长,在9L:9D周期中缩短,尽管光照期峰值和黑暗期峰值的双峰特征仍然存在。对18L:6D和6L:18D周期的研究(其中光照或黑暗的开始时间相对于12L:12D对照发生了变化)表明,黑暗的开始可能调节标记指数峰值的时间,而光照的开始可能决定有丝分裂指数峰值出现的时间。LD周期的不同参数对标记和有丝分裂指数峰值时间的控制,提示了一种通过环境光照时间表来调节细胞周期的机制。对所有研究周期的节律分析表明,标记指数节律等于黑暗期的长度或黑暗期长度的两倍。有丝分裂指数节律等于日长或黑暗期长度的倍数。