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ATAF1 transcription factor directly regulates abscisic acid biosynthetic gene NCED3 in Arabidopsis thaliana.

机译:aTaF1转录因子直接调节拟南芥中脱落酸生物合成基因NCED3。

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摘要

ATAF1, an Arabidopsis thaliana NAC transcription factor, plays important roles in plant adaptation to environmental stress and development. To search for ATAF1 target genes, we used protein binding microarrays and chromatin-immunoprecipitation (ChIP). This identified T[A,C,G]CGT[A,G] and TT[A,C,G]CGT as ATAF1 consensus binding sequences. Co-expression analysis across publicly available microarray experiments identified 25 genes co-expressed with ATAF1. The promoter regions of ATAF1 co-expressors were significantly enriched for ATAF1 binding sites, and TTGCGTA was identified in the promoter of the key abscisic acid (ABA) phytohormone biosynthetic gene NCED3. ChIP-qPCR and expression analysis showed that ATAF1 binding to the NCED3 promoter correlated with increased NCED3 expression and ABA hormone levels. These results indicate that ATAF1 regulates ABA biosynthesis.
机译:ATAF1是拟南芥NAC转录因子,在植物适应环境胁迫和发育中起重要作用。要搜索ATAF1靶基因,我们使用了蛋白质结合微阵列和染色质免疫沉淀(ChIP)。这确定了T [A,C,G] CGT [A,G]和TT [A,C,G] CGT为ATAF1共有结合序列。跨公开可用的微阵列实验的共表达分析确定了与ATAF1共表达的25个基因。 ATAF1共表达子的启动子区域明显富集了ATAF1结合位点,并且在关键脱落酸(ABA)植物激素生物合成基因NCED3的启动子中鉴定出TTGCGTA。 ChIP-qPCR和表达分析表明,ATAAF1与NCED3启动子的结合与NCED3表达的增加和ABA激素水平相关。这些结果表明,ATAF1调节ABA的生物合成。

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