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首页> 外文期刊>Molecular genetics and genomics: MGG >A cis-regulatory sequence from a short intergenic region gives rise to a strong microbe-associated molecular pattern-responsive synthetic promoter
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A cis-regulatory sequence from a short intergenic region gives rise to a strong microbe-associated molecular pattern-responsive synthetic promoter

机译:来自短基因间隔区的顺式调控序列产生了强大的微生物相关分子模式响应性合成启动子

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摘要

The high gene density in Arabidopsis thaliana leaves only relatively short intergenic regions for potential cis-regulatory sequences. To learn more about the regulation of genes harbouring only very short upstream intergenic regions, this study investigates a recently identified novel microbe-associated molecular pattern (MAMP)-responsive cis-sequence located within the 101 bp long intergenic region upstream of the At1g13990 gene. It is shown that the cis-regulatory sequence is sufficient for MAMP-responsive reporter gene activity in the context of its native promoter. The 3' UTR of the upstream gene has a quantitative effect on gene expression. In context of a synthetic promoter, the cis-sequence is shown to achieve a strong increase in reporter gene activity as a monomer, dimer and tetramer. Mutation analysis of the cis-sequence determined the specific nucleotides required for gene expression activation. In transgenic A. thaliana the synthetic promoter harbouring a tetramer of the cis-sequence not only drives strong pathogen-responsive reporter gene expression but also shows a high background activity. The results of this study contribute to our understanding how genes with very short upstream intergenic regions are regulated and how these regions can serve as a source for MAMP-responsive cis-sequences for synthetic promoter design.
机译:拟南芥中的高基因密度只留下相对短的潜在顺式调控序列的基因间区域。为了更多地了解仅上游上游基因间区域非常短的基因的调控,本研究调查了最近鉴定出的新型微生物相关分子模式(MAMP)响应顺式序列,该基因位于At1g13990基因上游101 bp长的基因间区域内。结果表明,在其天然启动子的背景下,顺式调控序列足以实现MAMP响应的报道基因活性。上游基因的3'UTR对基因表达具有定量作用。在合成启动子的背景下,顺式序列显示出报告基因作为单体,二聚体和四聚体的活性大大增强。顺式序列的突变分析确定了基因表达激活所需的特定核苷酸。在转基因拟南芥中,具有顺式序列四聚体的合成启动子不仅驱动强烈的病原体反应性报告基因表达,而且显示出很高的背景活性。这项研究的结果有助于我们理解上游调控基因间区域非常短的基因是如何被调控的,以及这些区域如何作为合成启动子设计的MAMP响应顺式序列的来源。

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