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Roles of Salicylic Acid-responsive Cis-acting Elements and W-boxes in Salicylic Acid Induction of VCH3 Promoter in Transgenic Tobaccos

机译:水杨酸响应顺式作用元件和W-boxs在水杨酸诱导VCH3启动子在转基因烟草中的作用

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摘要

A salicylic acid (SA)-inducible VCH3 promoter was recently identified from grapevine (Vitis amurensis) that contains two inverse SA-responsive cis-acting elements and four W-boxes. To further demonstrate the roles of these elements, four fragments with lengths from −1187, −892, −589, −276 to +7 bp were fused with the β-glucuronidase (GUS) reporter gene and transferred to Nicotiana tobacum, together with another four VCH3 promoter fragments with mutation in the two inverse SA-responsive elements. The functions of each promoter fragment were examined by analysis of GUS activity in the transgenic tobacco root treated with SA. Enhanced GUS activity was shown in the roots of transgenic tobaccos with the VCH3 (-1187)-Gt/5 construct containing two SA-responsive cis-acting elements and four W-boxes. However, GUS activity directed by the VCH3 (-892)-GUS construct, containing one SA cisacting element and four W-boxes, was reduced by up to 35% compared with that in tobaccos transformed with the VCH3 (-1187)-GUS construct, indicating that the SA cis-acting element plays an important role in SA induction of the VCH3 promoter. Neither the m2VCH3 (-IU7)-GUS nor the mVCH3 (-%92)-GUS construct, with mutation on the SA-responsive elements, abolished the expression of GUS activity, demonstrating that the W-boxes in the VCH3 promoter are also involved in SA induction. Histochemical analysis of GUS activity directed by each of the eight VCH3 promoter fragments showed that GUS was expressed specifically in vascular tissue. It was concluded that both the SA-responsive cis-acting elements and the W-boxes are important for the SA induction of the VCH3 promoter. This promoter might have a potential use in plant genetic engineering.
机译:最近从葡萄(Vitis amurensis)中鉴定出水杨酸(SA)诱导型VCH3启动子,该启动子包含两个反向SA响应的顺式作用元件和四个W-box。为了进一步证明这些元素的作用,将长度为-1187,-892,-589,-276至+7 bp的四个片段与β-葡糖醛酸糖苷酶(GUS)报告基因融合,并与其他烟草一起转移至烟草四个VCH3启动子片段在两个SA反向响应元件中发生突变。通过分析用SA处理的转基因烟草根中的GUS活性,检查了每个启动子片段的功能。具有包含两个SA响应顺式作用元件和四个W-box的VCH3(-1187)-Gt / 5构建体在转基因烟草的根中显示出增强的GUS活性。但是,与用VCH3(-1187)-GUS构建体转化的烟草相比,由VCH3(-892)-GUS构建体指导的GUS活性降低了35%,该活性包含一个SA顺式元件和四个W-box。 ,表明SA顺式作用元件在SA诱导VCH3启动子中起重要作用。在SA响应元件上发生突变的m2VCH3(-IU7)-GUS或mVCH3(-%92)-GUS构建体都没有消除GUS活性的表达,表明VCH3启动子中的W-box也参与了在SA感应中。对八个VCH3启动子片段中每个片段指导的GUS活性的组织化学分析表明,GUS在血管组织中特异性表达。结论是SA响应顺式作用元件和W盒对SA诱导VCH3启动子都很重要。该启动子可能在植物基因工程中具有潜在用途。

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  • 来源
    《Acta Biochimica et Biophysica Sinica》 |2006年第1期|46-52|共7页
  • 作者

    Hai-Yan Li; Wei Wei; and Yu Li;

  • 作者单位

    Institute of Mycology Jilin Agricultural University Changchun 130118 China;

    College of Biotechnology Jilin Agricultural University Changchun 130118 China;

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  • 正文语种 eng
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