Department of Biology, 1000 Holt Ave, Rollins College, Winter Park, FL, 32789, USA.
Am J Bot. 2021 Aug;108(8):1525-1539. doi: 10.1002/ajb2.1717. Epub 2021 Aug 29.
Chloroplast movement to the anticlinal walls in excess light, referred to as chloroplast avoidance movement, is one strategy to prevent high light damage. Chloroplast avoidance movement is mediated by the blue-light photoreceptor phototropin. Since some blue-light effects are reversed by green light, we investigated the effect of green wavelengths on chloroplast avoidance.
Chloroplast position was visualized via microscopy and by transmission of red light through the leaves of Arabidopsis thaliana and Landoltia punctata (duckweed).
Green light reduced blue-light-induced chloroplast avoidance movement but only when green light was presented simultaneously with blue light. Green light alone had no effect on chloroplast position. An action spectrum for green-light attenuation of chloroplast avoidance in duckweed revealed peaks at 510, 550, and 590 nm. Blue-light-induced chloroplast avoidance movement in three Arabidopsis mutants with reduced nonphotochemical quenching, npq1, npq4, and npq7 was not affected by green light.
The action spectrum does not conform to any known photoreceptor. The lack of a green-light response in the npq mutants of Arabidopsis suggests a possible role for the xanthophyll cycle or a signal from the chloroplast in control of chloroplast avoidance movement.
在过量光照下,叶绿体向垂周壁的运动,称为叶绿体回避运动,是防止高光损伤的一种策略。叶绿体回避运动由蓝光光受体向光素介导。由于一些蓝光效应被绿光逆转,我们研究了绿光对叶绿体回避的影响。
通过显微镜观察和红光透过拟南芥和 Landoltia punctata(浮萍)叶片的透射来可视化叶绿体的位置。
绿光减少了蓝光诱导的叶绿体回避运动,但只有在绿光与蓝光同时存在时才会发生这种情况。绿光单独对叶绿体位置没有影响。浮萍中绿光衰减叶绿体回避作用的作用光谱在 510、550 和 590nm 处有峰值。三个非光化学猝灭减少的拟南芥突变体 npq1、npq4 和 npq7 中蓝光诱导的叶绿体回避运动不受绿光影响。
作用光谱不符合任何已知的光受体。拟南芥 npq 突变体中缺乏绿光反应表明叶黄素循环或来自叶绿体的信号可能在控制叶绿体回避运动中起作用。