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首页> 外文期刊>Journal of Cell Science >Choice of tracks, microtubules and/or actin filaments for chloroplast photo-movement is differentially controlled by phytochrome and a blue light receptor.
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Choice of tracks, microtubules and/or actin filaments for chloroplast photo-movement is differentially controlled by phytochrome and a blue light receptor.

机译:叶绿体光运动的轨迹,微管和/或肌动蛋白丝的选择受植物色素和蓝光受体的差异控制。

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Light induced chloroplast movement has been studied as a model system for photoreception and actin microfilament (MF)-based intracellular motilities in plants. Chloroplast photo-accumulation and -avoidance movement is mediated by phytochrome as well as blue light (BL) receptor in the moss Physcomitrella patens. Here we report the discovery of an involvement of a microtubule (MT)-based system in addition to an MF-based system in photorelocation of chloroplasts in this moss. In the dark, MTs provided tracks for rapid movement of chloroplasts in a longitudinal direction and MFs contributed the tracks for slow movement in any direction. We found that phytochrome responses utilized only the MT-based system, while BL responses had an alternative way of moving, either along MTs or MFs. MT-based systems were mediated by both photoreceptors, but chloroplasts showed movements with different velocity and pattern between them. No apparent difference in the behavior of chloroplast movement between the accumulation and avoidance movement was detected in phytochrome responses or BL responses, except for the direction of the movement. The results presented here demonstrate that chloroplasts use both MTs and MFs for motility and that phytochrome and a BL receptor control directional photo-movement of chloroplasts through the differential regulation of these motile systems.
机译:光诱导的叶绿体运动已作为植物的光接收和肌动蛋白微丝(MF)为基础的细胞内运动的模型系统进行了研究。叶绿体中的光合作用和蓝光(BL)受体介导了叶绿体的光积累和回避运动。在这里,我们报告了在这种苔藓中叶绿体的光子重定位中,除了基于微管的系统以外,还发现了基于微管(MT)的系统的发现。在黑暗中,MT为叶绿体在纵向上的快速运动提供了轨迹,而MF为在任何方向上的慢速运动提供了轨迹。我们发现植物色素反应仅利用基于MT的系统,而BL反应则具有沿着MT或MF的另一种移动方式。基于MT的系统是由两个感光器介导的,但叶绿体之间的移动具有不同的速度和模式。除运动方向外,在植物色素反应或BL反应中未检测到积累和回避运动之间的叶绿体运动行为有明显差异。此处显示的结果表明,叶绿体同时利用MT和MF促进运动,而植物色素和BL受体通过这些运动系统的差异调节来控制叶绿体的定向光运动。

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