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首页> 外文期刊>Plant direct. >Relationship between relocation of phototropin to the chloroplast periphery and the initiation of chloroplast movement in Marchantia polymorpha
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Relationship between relocation of phototropin to the chloroplast periphery and the initiation of chloroplast movement in Marchantia polymorpha

机译:光致卟啉骨迁移与Marchantia多晶叶绿体外周的关系与叶绿体运动的关系

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摘要

The blue-light photoreceptor kinase phototropin (phot) mediates chloroplast movement in response to light and temperature. Phot predominantly localizes at the plasma membrane, but also resides in the cytosol and the chloroplast periphery. Although the phot localized to the chloroplast periphery is thought to mediate chloroplast movement, the localization mechanism is unknown. In this study, we found that chloroplast movement does not occur in 0-day-old gemma cells of the liverwort Marchantia polymorpha but that the movement is induced in 1-day-old gemmaling cells. Along with this physiological change, the subcellular localization of phot also changed: In 0-day-old gemma cells, phot localized at the plasma membrane and the cytosol, but in 1-day-old gemmaling cells, the phot disappeared from the cytosol and appeared at the chloroplast periphery. When the relocalization was tracked using a photoconvertible fluorescent protein, the cytosolic phot relocated to the plasma membrane, and the plasma membrane-resident phot relocated to the chloroplast periphery. The blue-light-dependent activation of phot kinase activity enhanced this relocalization. Mutated phot deficient in blue-light reception or kinase activity had a severely reduced ability to localize at the chloroplast periphery. These findings suggest that photoactivated phot localizes at the chloroplast periphery to initiate chloroplast movement.
机译:蓝光光感受器激酶光溶素(Phot)响应于光和温度介导叶绿体运动。 PHOL主要定位在血浆膜上,但也存在于细胞溶胶和叶绿体周边。尽管被认为是叶绿体周边的光刻介导叶绿体运动,但定位机制是未知的。在这项研究中,我们发现叶绿体运动不会发生在Liverwort Markantia多晶型多晶型多晶型的0日龄幼虫细胞中,但是该运动在1天历史的血液腺细胞中诱导。随着这种生理变化,光照的亚细胞定位也改变了:在0日历史的Gemma细胞中,在血浆膜和胞浆中的光定位,但在1天古老的Gemmaling细胞中,从细胞溶胶中消失了光消失出现在叶绿体周边。当使用光致荧光蛋白质跟踪重新定位时,将其迁移到质膜中的细胞溶质光谱,并将血浆膜 - 驻留光重新定位在叶绿体周边。光激酶活性的蓝光依赖性活化增强了这种重定位化。蓝光接收或激酶活性的突变的光缺乏具有严重降低的定位在叶绿体周边的能力。这些发现表明,光活化的光定位在叶绿体周边以引发叶绿体运动。

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