Department of Biology, Graduate School of Sciences, Kyushu University, Higashi-ku, Fukuoka 812-8581, Japan.
Plant Cell. 2013 Feb;25(2):572-90. doi: 10.1105/tpc.113.109694. Epub 2013 Feb 12.
Phototropins (phot1 and phot2 in Arabidopsis thaliana) relay blue light intensity information to the chloroplasts, which move toward weak light (the accumulation response) and away from strong light (the avoidance response). Chloroplast-actin (cp-actin) filaments are vital for mediating these chloroplast photorelocation movements. In this report, we examine in detail the cp-actin filament dynamics by which the chloroplast avoidance response is regulated. Although stochastic dynamics of cortical actin fragments are observed on the chloroplasts, the basic mechanisms underlying the disappearance (including severing and turnover) of the cp-actin filaments are regulated differently from those of cortical actin filaments. phot2 plays a pivotal role in the strong blue light-induced severing and random motility of cp-actin filaments, processes that are therefore essential for asymmetric cp-actin formation for the avoidance response. In addition, phot2 functions in the bundling of cp-actin filaments that is induced by dark incubation. By contrast, the function of phot1 is dispensable for these responses. Our findings suggest that phot2 is the primary photoreceptor involved in the rapid reorganization of cp-actin filaments that allows chloroplasts to change direction rapidly and control the velocity of the avoidance movement according to the light's intensity and position.
光受体(拟南芥中的 phot1 和 phot2)将蓝光强度信息传递到叶绿体,叶绿体向弱光(积累反应)移动,远离强光(避免反应)。叶绿体肌动蛋白(cp-actin)丝对于介导这些叶绿体光定位运动至关重要。在本报告中,我们详细研究了 cp-actin 丝的动力学,该动力学调节叶绿体的避免反应。尽管在叶绿体上观察到皮层肌动蛋白片段的随机动力学,但 cp-actin 丝的消失(包括切割和周转)的基本机制与皮层肌动蛋白丝的消失机制不同。phot2 在强蓝光诱导的 cp-actin 丝切割和随机运动中发挥关键作用,这些过程对于避免反应中 cp-actin 丝的不对称形成是必不可少的。此外,phot2 还可诱导 cp-actin 丝的bundling,该过程在黑暗孵育时发生。相比之下,phot1 的功能对于这些反应是可有可无的。我们的发现表明,phot2 是参与 cp-actin 丝快速重组的主要光受体,这使得叶绿体能够根据光的强度和位置快速改变方向并控制避免运动的速度。