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Targeted knockout in Physcomitrella reveals direct actions of phytochrome in the cytoplasm

机译:Physcomitrella中的靶向敲除揭示了细胞色素在细胞质中的直接作用

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摘要

The plant photoreceptor phytochrome plays an important role in the nucleus as a regulator of transcription. Numerous studies imply, however, that phytochromes in both higher and lower plants mediate physiological reactions within the cytoplasm. In particular, the tip cells of moss protonemal filaments use phytochrome to sense light direction, requiring a signaling system that transmits the directional information directly to the microfilaments that direct tip growth. In this work we describe four canonical phytochrome genes in the model moss species Physcomitrella patens, each of which was successfully targeted via homologous recombination and the distinct physiological functions of each gene product thereby identified. One homolog in particular mediates positive phototropism, polarotropism, and chloroplast movement in polarized light. This photoreceptor thus interacts with a cytoplasmic signal/response system. This is our first step in elucidating the cytoplasmic signaling function of phytochrome at the molecular level.
机译:植物感光细胞色素在细胞核中起着转录调节剂的作用。但是,大量研究表明,高等植物和低等植物中的植物色素都介导细胞质内的生理反应。尤其是,苔藓前体细丝的尖端细胞使用植物色素来感测光的方向,因此需要一个信号系统将方向信息直接传输到引导尖端生长的微丝中。在这项工作中,我们描述了模式苔藓种Physcomitrella patens中的四个规范性植物色素基因,通过同源重组成功靶向了每个植物基因,从而鉴定了每个基因产物的独特生理功能。一种同系物尤其介导偏振光中的正向光性,偏光性和叶绿体运动。因此,该感光体与细胞质信号/反应系统相互作用。这是我们在分子水平阐明植物色素的细胞质信号传导功能的第一步。

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