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The role of light in the regulation of anthocyanin accumulation in Gerbera hybrida

机译:光在非洲菊杂交中花色苷积累调控中的作用

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摘要

In the present work, the pigmentation regulated by light was investigated in ray floret (rf) of Gerbera hybrida. When inflorescences from stage 1 were covered with aluminium foil in vivo the pigmentation of the rf petals was strongly blocked and the gene expression of CHS (Chalcone synthase) and DFR (Dihydroflavonol-4-reductase) was inhibited. Similar results were obtained when the detached rfs were cultured in vitro. Covering of the leaves on the plants resulted in reduced pigmentation compared with the covering of inflorescences in vivo. Removal of the green bracts did not affect the pigmentation significantly and the anthocyanin concentration was maintained at a level similar to that of the control. The ultrastructure of the plastids in rf petals was examined to investigate the possible role of photosynthesis in light regulation of flower pigmentation. Plastids within rf epidermal cells showed a characteristic chloroplast morphology in flowers at stage 2, which deteriorated by stage 3. They then changed to a chromoplast-like structure in fully opened rf petals (stage 6). Similar chromoplast-like structures were observed in the plastids of the rf petals from inflorescences both shaded in vivo and in vitro. Additionally, DCMU, a photosynthetic inhibitor, did not show a significant effect on light-induced anthocyanin accumulation. Our data suggest that light is an important factor for pigmentation of rf petal in Gerbera and the petal itself acts as a light sensor site to perceive the light signal. From the different light qualities evaluated, blue light promoted gene expression of CHS and DFR, and red light enhanced the gene expression of CHS, indicating the photoreceptors responding to blue and red light involved in the photoregulation of flower pigmentation in Gerbera.
机译:在目前的工作中,在非洲菊的小花(rf)中研究了受光调节的色素沉着。当第1阶段的花序在体内被铝箔覆盖时,rf花瓣的色素沉着被强烈阻断,并且CHS(查尔酮合酶)和DFR(Dihydroflavonol-4-reductase)的基因表达受到抑制。当离体的rfs在体外培养时,获得了相似的结果。与体内的花序覆盖相比,植物上的叶子覆盖导致色素沉着减少。去除绿色片不会显着影响色素沉着,并且花色苷浓度保持在与对照相似的水平。检查了rf花瓣中质体的超微结构,以研究光合作用在花卉色素沉着的光调节中的可能作用。射频表皮细胞内的质体在第2阶段的花朵中显示出特征性的叶绿体形态,并在第3阶段恶化。然后,它们在完全打开的射频花瓣中变成了类似叶绿体的结构(第6阶段)。在体内和体外着色的花序的rf花瓣的质体中都观察到了类似的原生质体样结构。另外,光合抑制剂DCMU对光诱导的花色苷积累没有显着影响。我们的数据表明,光是非洲菊中rf花瓣色素沉着的重要因素,并且花瓣本身是感知光信号的光传感器部位。从评估的不同光质量来看,蓝光促进了CHS和DFR的基因表达,红光增强了CHS的基因表达,表明感光体对蓝色和红色光作出反应,参与了非洲菊花卉色素沉着的光调节。

著录项

  • 来源
    《Plant Growth Regulation》 |2004年第3期|243-250|共8页
  • 作者单位

    College of Life Sciences South China Normal University Guangdong Key Lab of Biotechnology for Plant DevelopmentFruit Tree Research Institute Science Guangdong Academy of Agricultural Sciences;

    Department of Biology Carleton University;

    College of Life Sciences South China Normal University Guangdong Key Lab of Biotechnology for Plant Development;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Anthocyanin; CHS and DFR gene expression; Light; Photoreceptor; Ray floret (rf);

    机译:花青素;CHS和DFR基因表达;光;感光体;射线小花(rf);

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