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膜电位可能参与纤细裸藻的趋重力定向。

Possible involvement of the membrane potential in the gravitactic orientation of Euglena gracilis.

作者信息

Richter P, Lebert M, Korn R, Hader D P

机构信息

Institut fur Botanik und Pharmazeutische Biologie, Lehrstuhl fur Botanik 1, Erlangen, Germany.

出版信息

J Plant Physiol. 2001 Jan;158(1):35-9. doi: 10.1078/0176-1617-00194.

Abstract

Euglena gracilis, a unicellular photosynthetic flagellate, uses light and gravity as environmental hints to reach and stay in regions optimal for growth and reproduction. The current model of gravitaxis (the orientation with respect to the earth's gravitational field) is based on the specific density difference between cell body and medium. The resulting sedimentation of the cell body applies a force to the lower membrane. This force activates mechano-sensitive ion channels. The resulting ion flux changes the membrane potential, which in turn triggers reorientational movements of the trailing flagellum. One possibility for recording the predicted membrane potential changes during reorientation is the use of potential-sensitive dyes, such as Oxonol VI. The absorption changes of the dye indicating potential changes were recorded with a custom-made photometer, which allows a high precision measurement with a high temporal resolution. After a gravitactic stimulation, a short period of hyperpolarization was detected, followed by a massive depolarization of the cell. The membrane potential returned to initial values after a period of approximately 200 s. Parallel measurements of the precision of orientation and the membrane potential showed a close relationship between both phenomena. The obtained results support the current model of gravitaxis of Euglena gracilis.

摘要

纤细裸藻是一种单细胞光合鞭毛虫,它利用光和重力作为环境线索,以到达并停留在最适合生长和繁殖的区域。目前关于趋重力性(相对于地球引力场的定向)的模型是基于细胞体与介质之间的特定密度差异。细胞体由此产生的沉降会对下侧膜施加一个力。这个力会激活机械敏感离子通道。由此产生的离子通量会改变膜电位,进而触发拖尾鞭毛的重新定向运动。记录重新定向过程中预测的膜电位变化的一种可能性是使用电位敏感染料,如氧化腈VI。用定制的光度计记录指示电位变化的染料吸收变化,该光度计能够以高时间分辨率进行高精度测量。在趋重力刺激后,检测到短时间的超极化,随后细胞出现大量去极化。膜电位在大约200秒后恢复到初始值。对定向精度和膜电位的平行测量表明这两种现象之间存在密切关系。所得结果支持了纤细裸藻趋重力性的当前模型。

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