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Transcriptional regulation of Arabidopsis thaliana phytochelatin synthase (AtPCS1) by cadmium during early stages of plant development

机译:镉在植物发育早期对拟南芥拟南芥植物螯合酶合酶(AtPCS1)的转录调控

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摘要

Transcriptional regulation of Arabidopsis thaliana (L.) Heynh. phytochelatin synthase (AtPCS1) by cadmium (Cd) was analyzed at various stages of plant development using transgenic Arabidopsis and wild-type plants. Histochemical analysis of β-glucuronidase (GUS) activity in transgenic lines carrying a uidA gene driven by a 2.0-kb AtPCS1 promoter revealed higher GUS activities in 5-day-old seedlings subjected to 50 µM Cd treatment for 5 days, beginning at seed germination, than in non-treated plants. This high level of GUS activity gradually decreased as plants continued their growth until no differences were observed between Cd-treated and non-treated transgenic plants. The observed GUS activity due to Cd treatment during the early stage of plant development corresponded with induction of AtPCS1 mRNA as confirmed by RNA blot analysis of wild-type Arabidopsis. The steady-state level of AtPCS1 mRNA increased by 2-fold in 5-day-old Cd-treated wild-type Arabidopsis compared to non-treated seedlings. Moreover, AtPCS1 protein levels increased following Cd treatment as observed in western blot analysis of transgenic Arabidopsis lines carrying a C-terminal FLAG-tagged AtPCS1 genomic DNA driven by a 2.0-kb AtPCS1 promoter. The transcriptional regulation of AtPCS1 by Cd during the early stage of seedling development seemed to be correlated with a higher Cd sensitivity in cad2, an Arabidopsis mutant deficient in phytochelatin synthesis, during early stages of plant development. This was supported by our finding that Cd sensitivity in cad2 was reduced as plants continued their growth, and was comparable to that of wild-type plants.
机译:拟南芥(L.)Heynh的转录调控。使用转基因拟南芥和野生型植物在植物发育的各个阶段分析了镉(Cd)产生的植物螯合素合酶(AtPCS1)。对带有2.0kb AtPCS1启动子驱动的uidA基因的转基因品系中β-葡萄糖醛酸苷酶(GUS)活性的组织化学分析表明,从种子发芽开始,经过5 µC Cd处理的5天大幼苗中,其GUS活性较高。 ,而不是未处理的植物。随着植物继续生长,这种高水平的GUS活性逐渐降低,直到在Cd处理和未处理的转基因植物之间未观察到差异。如野生型拟南芥RNA印迹分析所证实的,在植物发育的早期阶段,由于镉处理而导致的观察到的GUS活性与AtPCS1 mRNA的诱导相对应。与未处理的幼苗相比,在5天大的Cd处理的野生型拟南芥中,AtPCS1 mRNA的稳态水平提高了2倍。此外,如对带有2.0 kb AtPCS1启动子驱动的带有C端FLAG标签的AtPCS1基因组DNA的转基因拟南芥品系进行的蛋白质印迹分析所观察到的,经过Cd处理后,AtPCS1蛋白水平增加。幼苗发育早期,Cd对AtPCS1的转录调控似乎与植物发育早期,cad2(一种缺乏植物螯合素合成的拟南芥突变体)中较高的Cd敏感性相关。我们的发现支持了这一点,因为随着植物的持续生长,cad2中的Cd敏感性降低,并且与野生型植物相当。

著录项

  • 来源
    《Planta》 |2002年第4期|689-693|共5页
  • 作者

    S. Lee; S. Korban;

  • 作者单位

    Department of Natural Resources and Environmental Sciences University of Illinois at Urbana-Champaign Urbana IL 61801 USA;

    Department of Natural Resources and Environmental Sciences University of Illinois at Urbana-Champaign Urbana IL 61801 USA;

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

    Arabidopsis Cadmium Phytochelatin Phytochelatin synthase Transcriptional regulation;

    机译:拟南芥镉植物螯合酶植物螯合酶转录调控;

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