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Gene expression regulation by the 5' regulatory sequences of the rice rubi3 gene in transgenic rice plants .

机译:转基因水稻中水稻rubi3基因5'调控序列对基因表达的调控。

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摘要

Plant biotechnology has found extensive applications in agricultural production, environmental protection, and molecular farming. A promoter of known expression pattern and regulation mode is of primary importance for these applications in that it helps tailor transgene expression in plants. The promoter of the rice polyubiquitin gene rubi3 was isolated in our laboratory. In transient assays, its expression was strongly enhanced by its 5'UTR intron and further elevated to a high level by sequences from the coding region of the rubi3 gene. In this thesis research, I analyzed the expression pattern of the rubi3 promoter, and studied the effects of its 5'UTR intron as well as the first 27 bp of the rubi3 coding sequence on its expression pattern and strength in transgenic rice plants.; The expression pattern of the rubi3 promoter was studied by using both GUS and GFP as reporter genes to obtain more reliable information. Histochemical GUS localization and GFP visualization revealed that the rubi3 promoter, with its 5'UTR intron, was active in all the tissues and cell types examined, suggesting that it is a constitutive promoter although the expression levels among the tissues were not uniform. Its activity was especially strong in root apical meristems, leaf mesophyll cells, embryos, and parenchyma cells in the vascular system, including the vascular cylinders of roots and the vascular bundles of stems.; The 5'UTR intron substantially enhanced the expression level of the rubi3 promoter without altering its expression pattern, but the magnitude of enhancement showed profound difference among various tissues. The increase in GUS enzyme activity was 3.1-fold in leaf, 23.6-fold in root, and 48-fold in callus tissue. Differential enhancement was also observed in other tissues of the GUS transformants and in the GFP transgenic plants. For example, enhancement was higher in embryos and aleurone layers, but obviously lower in stigma tissues. This report is the first one to demonstrate the tissue-dependency of intron-mediated enhancement of gene expression (IME) in stably transformed monocot plants. (Abstract shortened by UMI.)
机译:植物生物技术已在农业生产,环境保护和分子农业中得到广泛应用。对于这些应用而言,已知表达模式和调控模式的启动子至关重要,因为它有助于定制植物中的转基因表达。水稻多聚泛素基因rubi3的启动子在我们的实验室中分离出来。在瞬时测定中,其表达被其5'UTR内含子强烈增强,并被来自rubi3基因编码区的序列进一步升高至高水平。在本文的研究中,我分析了rubi3启动子的表达模式,并研究了其5'UTR内含子以及rubi3编码序列的前27 bp对转基因水稻植株的表达模式和强度的影响。通过使用GUS和GFP作为报告基因研究rubi3启动子的表达模式,以获得更可靠的信息。组织化学GUS定位和GFP可视化显示,rubi3启动子及其5'UTR内含子在所有检查的组织和细胞类型中均具有活性,这表明它是组成型启动子,尽管组织之间的表达水平不一致。在根系统中的根尖分生组织,叶肉细胞,胚胎和薄壁细胞中,其活性特别强。包括根的维管和茎的维管束。 5'UTR内含子实质上增强了rubi3启动子的表达水平,而没有改变其表达模式,但是增强的幅度显示了各种组织之间的深刻差异。 GUS酶的活性在叶中增加了3.1倍,在根中增加了23.6倍,在愈伤组织中增加了48倍。在GUS转化子的其他组织和GFP转基因植物中也观察到差异增强。例如,增强作用在胚胎和糊粉层中较高,而在柱头组织中则明显较低。该报告是第一个证明在稳定转化的单子叶植物中内含子介导的基因表达增强(IME)的组织依赖性的报告。 (摘要由UMI缩短。)

著录项

  • 作者

    Lu, Jianli.;

  • 作者单位

    North Carolina State University.;

  • 授予单位 North Carolina State University.;
  • 学科 Biology Molecular.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 87 p.
  • 总页数 87
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子遗传学;
  • 关键词

  • 入库时间 2022-08-17 11:39:29

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