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根霉的细胞内旋转与向光性反应

Intracellular rotation and the phototropic response of Phycomyces.

作者信息

Dennison D S, Foster K W

出版信息

Biophys J. 1977 Apr;18(1):103-23. doi: 10.1016/S0006-3495(77)85599-9.

Abstract

Experimental evidence indicates that during phototropism, Phycomyces sporangiophores use their own net rotation to convert an apparently spatial stimulus to a temporal one. Conversion to a continuous temporal stimulus insures that phototropism never adapts as long as the spatial asymmetry in illumination is maintained. If this temporal stimulus is circumvented by rotating the cell backwards so that there is no net rotation of some of the receptors relative to the light, the response can be reduced by two-thirds. The system thus adapts to the incident light, resulting in a reduced response. For the illumination of a transparent cell, this compensating rotation speed is 10 degrees/min counterclockwise and probably corresponds to the photoreceptor rotation in the most effective part of the growing zone. We infer that this region is in the upper portion of the growing zone and that the receptor system rotates integrally with that region of the cell.

摘要

实验证据表明,在向光性过程中,毛霉的孢子囊柄利用自身的净旋转将明显的空间刺激转化为时间刺激。转化为连续的时间刺激可确保只要光照的空间不对称性得以维持,向光性就不会适应。如果通过使细胞反向旋转来规避这种时间刺激,从而使一些受体相对于光没有净旋转,那么反应可以降低三分之二。因此,该系统适应入射光,导致反应减弱。对于透明细胞的光照,这种补偿性旋转速度为逆时针10度/分钟,可能对应于生长区最有效部分的光感受器旋转。我们推断该区域位于生长区的上部,并且受体系统与细胞的该区域整体旋转。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/abcd/1473273/74067ec404dd/biophysj00760-0108-a.jpg

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