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Fine tuning chloroplast movements through physical interactions between phototropins

机译:通过光蛋白之间的物理相互作用微调叶绿体的运动

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摘要

Phototropins are plant photoreceptors which regulate numerous responses to blue light, including chloroplast relocation. Weak blue light induces chloroplast accumulation, whereas strong light leads to an avoidance response. Two Arabidopsis phototropins are characterized by different light sensitivities. Under continuous light, both can elicit chloroplast accumulation, but the avoidance response is controlled solely by phot2. As well as continuous light, brief light pulses also induce chloroplast displacements. Pulses of 0.1s and 0.2s of fluence rate saturating the avoidance response lead to transient chloroplast accumulation. Longer pulses (up to 20s) trigger a biphasic response, namely transient avoidance followed by transient accumulation. This work presents a detailed study of transient chloroplast responses in Arabidopsis. Phototropin mutants display altered chloroplast movements as compared with the wild type: phot1 is characterized by weaker responses, while phot2 exhibits enhanced chloroplast accumulation, especially after 0.1s and 0.2s pulses. To determine the cause of these differences, the abundance and phosphorylation levels of both phototropins, as well as the interactions between phototropin molecules are examined. The formation of phototropin homo- and heterocomplexes is the most plausible explanation of the observed phenomena. The physiological consequences of this interplay are discussed, suggesting the universal character of this mechanism that fine-tunes plant reactions to blue light. Additionally, responses in mutants of different protein phosphatase 2A subunits are examined to assess the role of protein phosphorylation in signaling of chloroplast movements.
机译:肌钙蛋白是植物的光感受器,其调节对蓝光的许多响应,包括叶绿体的重新定位。弱蓝光会诱导叶绿体积聚,而强光则会导致回避反应。两种拟南芥光蛋白的特征在于不同的光敏性。在连续光照下,两者均可引起叶绿体积累,但回避反应仅受phot2控制。除连续光外,短暂的光脉冲还会引起叶绿体移位。通量速率的0.1s和0.2s脉冲使回避响应饱和,导致短暂的叶绿体积聚。较长的脉冲(最长20s)触发双相响应,即瞬态回避和瞬态累积。这项工作提出了拟南芥中瞬时叶绿体反应的详细研究。与野生型相比,光养蛋白突变体显示出改变的叶绿体运动:phot1以较弱的响应为特征,而phot2则显示出增强的叶绿体积累,尤其是在0.1s和0.2s脉冲后。为了确定这些差异的原因,研究了两种光蛋白的丰度和磷酸化水平以及光蛋白分子之间的相互作用。光养蛋白同型和异型复合物的形成是观察到的现象的最合理的解释。讨论了这种相互作用的生理后果,表明该机制的普遍特征是可以微调植物对蓝光的反应。此外,检查了不同蛋白质磷酸酶2A亚基突变体中的应答,以评估蛋白质磷酸化在叶绿体运动信号传导中的作用。

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