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光敏内质网-叶绿体接触位点。

The photosensitive endoplasmic reticulum-chloroplast contact site.

作者信息

Maynard Sara N, Griffing Lawrence R

机构信息

Biology Department and the Molecular and Environmental Plant Sciences Program, Texas A&M University, College Station, Texas, USA.

出版信息

J Microsc. 2025 Mar;297(3):333-348. doi: 10.1111/jmi.13377. Epub 2024 Dec 4.

Abstract

The endoplasmic reticulum (ER) forms contact sites with the chloroplast. Exposing contact sites that contain both the chloroplast and the ER to localised high-fluence, wavelength specific, 405 nm violet light, hereinafter referred to as photostimulation, induces multiple, potentially interacting intra- and intercellular responses. The responses vary depending on the tissue type of the cell and the chloroplast. Photostimulating the ER-chloroplast contact sites in growing epidermal cells of the hypocotyl of Arabidopsis thaliana, produces a wave of cytoplasmic ionic calcium that traverses the cell, spreading radially to other cells around the circumference of the hypocotyl. A transient ER stress accompanies the calcium wave. These responses occur in older epidermal cells (5-8 days post-germination) with nonmotile chloroplasts tethered to the ER and the cell cortex but do not occur with motile or dividing chloroplasts. Dividing chloroplasts show a markedly different association with the ER, which forms a ring around the fission plane, similar to that of dividing mitochondria. Inhibition of calcium channels with lanthanum has no effect. Photostimulation of only the ER results in no ER stress and a calcium wave with a different spatiotemporal signature: delayed release and lower magnitude, with no accompanying ER stress response. Likewise, photostimulation of the chloroplast only, without the ER, produces no calcium wave or ER stress. General chloroplast photobleaching or restructuring caused by photostimulation is not the cause of this response; photostimulation with 488 nm of the same intensity and power as 405 nm photostimulation produces no change in cytosolic calcium levels. The pH of the ER decreases, indicating the involvement of ER ion transporters in the response. A wave of increased reactive oxygen species (ROS) in mitochondria and nuclei accompanies photostimulation. Together, these data support a model by which tethered ER-chloroplast contact sites constitute a unique subcellular photosensitive region and are part of an ER-mediated signalling network. Lay Abstract: The endoplasmic reticulum (ER) forms contact sites with the chloroplast. Shining violet (405 nm) light on the chloroplast with its associated ER produces a calcium wave through the cell that is communicated to other cells. This is correlated with a wave of transient denaturation of the luminal proteins of the ER (ER stress) and increased reactive oxygen species (ROS) in mitochondria. The wavelength dependence and precise cellular location of the light stimulation implies a novel way for plants to sense light. The movement of the response through the cell is consistent with the mediation of the response by a subcellular network, such as that formed by the ER.

摘要

内质网(ER)与叶绿体形成接触位点。将同时包含叶绿体和内质网的接触位点暴露于局部高剂量、波长特定的405 nm紫光下(以下简称光刺激),会引发多种可能相互作用的细胞内和细胞间反应。这些反应因细胞和叶绿体的组织类型而异。对拟南芥下胚轴生长中的表皮细胞的内质网 - 叶绿体接触位点进行光刺激,会产生一波细胞质离子钙,该钙波穿过细胞,径向扩散到下胚轴周围的其他细胞。钙波伴随着短暂的内质网应激。这些反应发生在较老的表皮细胞(萌发后5 - 8天)中,其中非移动性叶绿体与内质网和细胞皮层相连,但在移动性或分裂中的叶绿体中不会发生。分裂中的叶绿体与内质网呈现出明显不同的关联,内质网在分裂平面周围形成一个环,类似于分裂中的线粒体。用镧抑制钙通道没有效果。仅对内质网进行光刺激不会导致内质网应激,且会产生具有不同时空特征的钙波:释放延迟且幅度较小,没有伴随的内质网应激反应。同样,仅对叶绿体进行光刺激(不涉及内质网)不会产生钙波或内质网应激。由光刺激引起的一般叶绿体光漂白或结构重组不是这种反应的原因;用与405 nm光刺激相同强度和功率的488 nm光刺激不会使细胞质钙水平发生变化。内质网的pH值下降,表明内质网离子转运体参与了该反应。光刺激伴随着线粒体和细胞核中活性氧(ROS)的增加。总之,这些数据支持了一个模型,即相连的内质网 - 叶绿体接触位点构成了一个独特的亚细胞光敏区域,并且是内质网介导的信号网络的一部分。

摘要

内质网(ER)与叶绿体形成接触位点。用紫光(405 nm)照射与内质网相关的叶绿体,会在细胞中产生钙波,并传递到其他细胞。这与内质网腔蛋白的短暂变性(内质网应激)波以及线粒体中活性氧(ROS)的增加相关。光刺激的波长依赖性和精确的细胞定位意味着植物感知光的一种新方式。反应在细胞中的移动与由亚细胞网络(如内质网形成的网络)介导的反应一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d01/11808455/82148c32e575/JMI-297-333-g004.jpg

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