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Combinatorial interplay of promoter elements constitutes the minimal determinants for light and developmental control of gene expression in Arabidopsis.

机译:启动子元件的组合相互作用构成拟南芥中基因表达的轻和发育控制的最小决定因素。

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摘要

Higher plants are able to integrate environmental and endogenous signals to regulate gene expression for optimal development. To define the minimal sequence requirement sufficient to integrate light and developmental signals in controlling promoter activity, we carried out a systematic analysis of the roles of four well-conserved 'light-responsive elements (LREs)' common to many nuclear-encoded photosynthetic genes. A gain-of-function assay using basal promoter-reporter fusions in stable transgenic Arabidopsis was employed to demonstrate that pairwise combinations of the LREs, but not the individual elements alone, can confer light-inducible expression to the reporter gene independently of the basal promoter context and the light-triggered morphological changes. The activity of the synthetic promoters with the paired LREs can be modulated at least by the phytochrome system. Further, those synthetic light-regulated promoters confer a photosynthetic cell-specific expression pattern and respond to the chloroplast development state. Our data suggest that distinct combinatorial interactions of LREs can serve as minimal autonomous promoter determinants which integrate light and developmental signals and modulate promoter activity.
机译:高等植物能够整合环境和内源信号来调节基因表达,以实现最佳发育。为了定义足以整合光和发育信号以控制启动子活性的最小序列要求,我们对许多核编码的光合基因共有的四个保守的“光响应元件(LRE)”的作用进行了系统分析。使用在稳定的转基因拟南芥中使用基础启动子-报告子融合体的功能获得试验来证明,LRE的成对组合,而不是单独的单个元件,可以独立于基础启动子而赋予报告基因光诱导表达上下文和光触发的形态变化。具有成对的LRE的合成启动子的活性至少可以通过植物色素系统调节。此外,那些合成的光调节启动子赋予光合作用细胞特异性表达模式并响应叶绿体发育状态。我们的数据表明,LRE的独特组合相互作用可以作为最小的自主启动子决定簇,这些决定子可以整合光和发育信号并调节启动子活性。

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