首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Phytochromes promote seedling light responses by inhibiting four negatively-acting phytochrome-interacting factors
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Phytochromes promote seedling light responses by inhibiting four negatively-acting phytochrome-interacting factors

机译:植物色素通过抑制四种负作用的植物色素相互作用因子来促进幼苗的光响应

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摘要

PIF3 is a phytochrome-interacting basic helix-loop-helix transcription factor that negatively regulates light responses, including hypocotyl elongation, cotyledon opening, and hypocotyl negative gravitropism. However, the role of PIF3 in chlorophyll biosynthesis has not been clearly defined. Here, we show that PIF3 also negatively regulates chlorophyll biosynthesis by repressing biosyn-thetic genes in the dark. Consistent with the gene expression patterns, the etiolated pif3 mutant accumulated a higher amount of protochlorophyllide and was bleached severely when transferred into light. The photobleaching phenotype of pif3 could be suppressed by the gun5 mutation and mimicked by overexpression of GUN5. When 4 negative phytochrome-interacting protein genes (PIF1, PIF3, PIF4, and PIFS) were mutated, the resulting quadruple mutant seedlings displayed constitutive photomorphogenic phe-notypes, including short hypocotyls, open cotyledons, and disrupted hypocotyl gravitropism in the dark. Microarray analysis further confirmed that the dark-grown quadruple mutant has a gene expression pattern similar to that of red light-grown WT. Together, our data indicate that 4 phytochrome-interacting proteins are required for skotomorphogenesis and phytochromes activate photomorphogenesis by inhibiting these factors.
机译:PIF3是一种与植物色素相互作用的基本螺旋-环-螺旋转录因子,可负调节光反应,包括下胚轴伸长,子叶开放和下胚轴负重力。但是,PIF3在叶绿素生物合成中的作用尚未明确。在这里,我们显示PIF3还通过在黑暗中抑制生物合成基因来负调控叶绿素的生物合成。与基因表达模式一致,黄化的pif3突变体积累了大量的原叶绿素,当转移到光中时会被严重漂白。 pif3的光漂白表型可以通过gun5突变来抑制,而可以通过GUN5的过表达来模仿。当四个负性植物色素相互作用蛋白基因(PIF1,PIF3,PIF4和PIFS)发生突变时,所得的四倍体突变苗显示出组成型光形态发生型,包括短的下胚轴,开放的子叶和在黑暗中破坏的下胚轴重力。微阵列分析进一步证实了暗红色的四重突变体具有类似于红光的野生型的基因表达模式。在一起,我们的数据表明,需要4种与植物色素相互作用的蛋白才能进行骨架形态发生,而植物色素则通过抑制这些因素来激活光形态发生。

著录项

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  • 作者单位

    Departments of Biological Sciences, Korea Advanced Institute of Science and Technology, Daejeon 305-701, Korea;

    Departments of Biological Sciences, Korea Advanced Institute of Science and Technology, Daejeon 305-701, Korea;

    Departments of Bio and Brain Engineering, Korea Advanced Institute of Science and Technology, Daejeon 305-701, Korea;

    Department of Molecular Biology, Pusan National University, Busan 609-735, Korea;

    Departments of Biological Sciences, Korea Advanced Institute of Science and Technology, Daejeon 305-701, Korea;

    Department of Molecular Biology, Pusan National University, Busan 609-735, Korea;

    Departments of Bio and Brain Engineering, Korea Advanced Institute of Science and Technology, Daejeon 305-701, Korea;

    Departments of Biological Sciences, Korea Advanced Institute of Science and Technology, Daejeon 305-701, Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    PIF1; PIF3; PIF4; PIF5; chlorophyll;

    机译:PIF1;PIF3;PIF4;PIF5;叶绿素;
  • 入库时间 2022-08-18 00:41:55

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