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过去一个世纪以来,用于分析叶绿体冷回避反应的光源的改进。

Refinements to light sources used to analyze the chloroplast cold-avoidance response over the past century.

作者信息

Fujii Yuta, Kodama Yutaka

机构信息

a Center for Bioscience Research and Education , Utsunomiya University , Tochigi , Japan.

出版信息

Plant Signal Behav. 2018 Mar 4;13(3):e1411452. doi: 10.1080/15592324.2017.1411452. Epub 2018 Mar 19.

Abstract

Chloroplasts alter their subcellular positions in response to ambient light and temperature conditions. This well-characterized light-induced response, which was first described nearly 100 years ago, is regulated by the blue-light photoreceptor, phototropin. By contrast, the molecular mechanism of low temperature-induced chloroplast relocation (i.e., the cold-avoidance response) was unexplored until its discovery in the fern Adiantum capillus-veneris in 2008. Because this response is also regulated by phototropin, it was thought to occur in a blue light-dependent manner. However, until recently, the blue light dependency of this response could not be examined due to the lack of a stable light source under cold conditions. We recently refined the light source to precisely control light intensity under cold conditions. Using this light source, we observed the blue light dependency of the cold-avoidance response in the liverwort Marchantia polymorpha and the phototropin2-mediated cold-avoidance response in the flowering plant Arabidopsis thaliana. Thus, this mechanism is evolutionarily conserved among land plants.

摘要

叶绿体根据环境光照和温度条件改变其亚细胞位置。这种特征明确的光诱导反应早在近100年前就首次被描述,它受蓝光光受体向光素调控。相比之下,低温诱导叶绿体重新定位(即避寒反应)的分子机制直到2008年在蕨类植物铁线蕨中被发现才得以探索。由于这种反应同样受向光素调控,所以人们认为它以蓝光依赖的方式发生。然而,直到最近,由于在寒冷条件下缺乏稳定的光源,这种反应的蓝光依赖性无法得到检验。我们最近改进了光源,以便在寒冷条件下精确控制光强度。利用这种光源,我们观察到了地钱多歧藻避寒反应的蓝光依赖性以及开花植物拟南芥中向光素2介导的避寒反应。因此,这种机制在陆地植物中具有进化保守性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55ed/5927705/d9fbbc9f10ad/kpsb-13-03-1411452-g001.jpg

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