首页> 外文期刊>The Plant Cell >Arabidopsis KANADI1 acts as a transcriptional repressor by interacting with a specific cis-element and regulates auxin biosynthesis, transport, and signaling in opposition to HD-ZIPIII factors.
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Arabidopsis KANADI1 acts as a transcriptional repressor by interacting with a specific cis-element and regulates auxin biosynthesis, transport, and signaling in opposition to HD-ZIPIII factors.

机译:拟南芥KANADI1通过与特定的顺式元件相互作用来充当转录阻遏物,并调节植物生长素的生物合成,转运和信号传导,从而对抗HD-ZIPIII因子。

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摘要

The formation of leaves and other lateral organs in plants depends on the proper specification of adaxial-abaxial (upper-lower) polarity. KANADI1 (KAN1), a member of the GARP family of transcription factors, is a key regulator of abaxial identity, leaf growth, and meristem formation in Arabidopsis thaliana. Here, we demonstrate that the Myb-like domain in KAN1 binds the 6-bp motif GNATA(A/T) and that this motif alone is sufficient to squelch transcription of a linked reporter in vivo. In addition, we report that KAN1 acts as a transcriptional repressor. Among its targets are genes involved in auxin biosynthesis, auxin transport, and auxin response. Furthermore, we find that the adaxializing HD-ZIPIII transcription factor REVOLUTA has opposing effects on multiple components of the auxin pathway. We hypothesize that HD-ZIPIII and KANADI transcription factors pattern auxin accumulation and responsiveness in the embryo. Specifically, we propose the opposing actions of KANADI and HD-ZIPIII factors on cotyledon formation (KANADI represses and HD-ZIPIII promotes cotyledon formation) occur through their opposing actions on genes acting at multiple steps in the auxin pathway.
机译:植物中的叶子和其他侧向器官的形成取决于正反极性(上-下)极性的适当规范。 KANADI1(KAN1)是GARP转录因子家族的成员,是拟南芥中背面身份,叶片生长和分生组织形成的关键调节剂。在这里,我们证明,KAN1中的Myb样域结合6 bp的基序GNATA(A / T),并且仅该基序足以抑制体内连接的报告基因的转录。此外,我们报告说,KAN1充当转录阻遏物。其靶标中有涉及植物生长素生物合成,植物生长素转运和植物生长素应答的基因。此外,我们发现加同轴的HD-ZIPIII转录因子REVOLUTA对生长素途径的多个组成部分具有相反的影响。我们假设,HD-ZIPIII和KANADI转录因子可在胚胎中形成生长素的积累和响应。具体来说,我们提出了KANADI和HD-ZIPIII因子对子叶形成的相反作用(KANADI抑制和HD-ZIPIII促进子叶形成)是通过它们对生长素途径中多个步骤的基因的相反作用而发生的。

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