首页> 美国卫生研究院文献>Plant Physiology >Phytochrome A enhances the promotion of hypocotyl growth caused by reductions in levels of phytochrome B in its far-red-light-absorbing form in light-grown Arabidopsis thaliana.
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Phytochrome A enhances the promotion of hypocotyl growth caused by reductions in levels of phytochrome B in its far-red-light-absorbing form in light-grown Arabidopsis thaliana.

机译:在浅色拟南芥中植物色素A促进了下胚轴生长的促进这是由于植物色素B的远红光吸收形式减少而引起的。

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摘要

We sought to determine if phytochrome B (phyB)-mediated responses to the red light (R)/far-red light (FR) ratio are affected by phytochrome A (phyA) activity in light-grown seedlings of Arabidopsis thaliana. Pulses of FR delayed into the dark period were less effective than end-of-day (EOD) FR in promoting hypocotyl growth over a given period in darkness. White light minus blue light interposed instead of darkness between the end of the white-light photoperiod and the FR pulse was sufficient to maintain responsivity to the decrease in phyB in FR-light-absorbing form in wild-type (WT) seedlings, but not in the phyA mutant. Compared with EOD R, hourly R+FR pulses provided throughout the night caused a stronger promotion of stem growth than a single EOD R+FR pulse in WT Arabidopsis, cucumber, mustard, sunflower, tobacco, and tomato, but not in phyA Arabidopsis or in the aurea mutant of tomato. WT seedlings of Arabidopsis responded to a range of high EOD R/FR ratios, whereas the phyA mutant required stronger reductions in the EOD R/FR ratio. In sunlight, phyA seedlings of Arabidopsis showed no response to the "early warning" signals of neighboring vegetation, and hypocotyl-growth promotion occurred at higher plant densities than in the WT. Thus, under a series of light conditions, the sensitivity or responsivity to reductions in the R/FR ratio were larger in WT than in phyA seedlings. A product of phyA is therefore proposed to enhance the hypocotyl-growth response to decreases in phyB in FR-light-absorbing form in light grown seedlings.
机译:我们试图确定在拟南芥光生幼苗中,植物色素B(phyB)介导的对红光(R)/远红光(FR)比的响应是否受到植物色素A(phyA)活性的影响。延迟进入黑暗期的FR脉冲在一天中在黑暗中促进下胚轴生长的效果不如日末(EOD)FR有效。在白光光周期结束和FR脉冲之间插入白光减去蓝光而不是黑暗,足以维持野生型(WT)幼苗对FR-光吸收形式phyB下降的响应能力,但不足够在phyA突变体中。与EOD R相比,在WT拟南芥,黄瓜,芥菜,向日葵,烟草和番茄中,整夜提供的每小时R + FR脉冲比单个EOD R + FR脉冲更能促进茎生长,但在phyA拟南芥或在番茄的金黄色葡萄球菌突变体中。拟南芥的WT幼苗对一系列高EOD R / FR比有反应,而phyA突变体则需要更强地降低EOD R / FR比。在阳光下,拟南芥的phyA幼苗对邻近植被的“早期预警”信号没有反应,并且在植物密度比野生型更高的情况下发生了下胚轴生长促进作用。因此,在一系列光照条件下,野生型中对R / FR比降低的敏感性或响应性大于phyA幼苗中。因此提出了phyA的产物以增强光生长的幼苗中对FRB吸收形式的phyB降低的下胚轴生长响应。

著录项

  • 期刊名称 Plant Physiology
  • 作者

    J J Casal;

  • 作者单位
  • 年(卷),期 1996(112),3
  • 年度 1996
  • 页码 965–973
  • 总页数 9
  • 原文格式 PDF
  • 正文语种
  • 中图分类 人体生理学;
  • 关键词

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