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纤细裸藻重力趋性的昼夜节律。

Circadian rhythm of gravitaxis in Euglena gracilis.

作者信息

Lebert M, Porst M, Hader D P

机构信息

Friedrich-Alexander-Universitat, Institut fur Botanik und Pharmazeutische Biologie, Erlangen.

出版信息

J Plant Physiol. 1999 Sep;155(3):344-9. doi: 10.1016/s0176-1617(99)80115-1.

Abstract

Euglena gracilis, a unicellular, photosynthetic flagellate is a model system for environmentally controlled behavioral reactions. One pronounced reaction is the orientation with respect to gravity. In synchronized cultures with no cell growth a distinct circadian rhythm of negative gravitactic orientation could be observed. The main maximum of sensitivity was detected 5 h after the beginning of the subjective day, the main minimum 5 h before the beginning of the subjective day. Transferring synchronized cultures to continuous light resulted in an almost instantaneous loss of rhythmicity. In contrast, after transfer to permanent darkness cells exhibited a circadian rhythm with a progressive shortening of the period for more than 5 days. These findings are in contrast to the circadian rhythm of phototaxis in Euglena, where a free-running period of 24 h was observed. Parallel measurements of negative gravitactic orientation, velocity, cell shape as well as cAMP concentration in synchronized cultures revealed a circadian rhythm of all reactions. The results are discussed with regard to the possible role of cell shape and cAMP in gravitactic orientation.

摘要

纤细裸藻是一种单细胞光合鞭毛虫,是环境控制行为反应的模型系统。一种明显的反应是相对于重力的定向。在没有细胞生长的同步培养物中,可以观察到负趋重力定向的明显昼夜节律。在主观日开始后5小时检测到敏感性的主要最大值,在主观日开始前5小时检测到主要最小值。将同步培养物转移到连续光照下会导致节律几乎立即丧失。相比之下,转移到永久黑暗中后,细胞表现出昼夜节律,周期逐渐缩短超过5天。这些发现与裸藻的趋光性昼夜节律形成对比,在裸藻中观察到自由运行周期为24小时。对同步培养物中负趋重力定向、速度、细胞形状以及cAMP浓度的平行测量揭示了所有反应的昼夜节律。讨论了细胞形状和cAMP在趋重力定向中可能的作用的结果。

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