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首页> 外文期刊>The Plant Cell >Establishing a framework for the ad/abaxial regulatory network of Arabidopsis: ascertaining targets of class III HOMEODOMAIN LEUCINE ZIPPER and KANADI regulation.
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Establishing a framework for the ad/abaxial regulatory network of Arabidopsis: ascertaining targets of class III HOMEODOMAIN LEUCINE ZIPPER and KANADI regulation.

机译:为拟南芥的广告/背面调控网络建立框架:确定III类同源核酸拉链和KANADI调控的目标。

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摘要

The broadly conserved Class III HOMEODOMAIN LEUCINE ZIPPER (HD-ZIPIII) and KANADI transcription factors have opposing and transformational effects on polarity and growth in all tissues and stages of the plant's life. To obtain a comprehensive understanding of how these factors work, we have identified transcripts that change in response to induced HD-ZIPIII or KANADI function. Additional criteria used to identify high-confidence targets among this set were presence of an adjacent HD-ZIPIII binding site, expression enriched within a subdomain of the shoot apical meristem, mutant phenotype showing defect in polar leaf and/or meristem development, physical interaction between target gene product and HD-ZIPIII protein, opposite regulation by HD-ZIPIII and KANADI, and evolutionary conservation of the regulator-target relationship. We find that HD-ZIPIII and KANADI regulate tissue-specific transcription factors involved in subsidiary developmental decisions, nearly all major hormone pathways, and new actors (such as INDETERMINATE DOMAIN4) in the ad/abaxial regulatory network. Multiple feedback loops regulating HD-ZIPIII and KANADI are identified, as are mechanisms through which HD-ZIPIII and KANADI oppose each other. This work lays the foundation needed to understand the components, structure, and workings of the ad/abaxial regulatory network directing basic plant growth and development.
机译:广泛保存的III类HOMEODOMAIN LEUCINE ZIPPER(HD-ZIPIII)和KANADI转录因子对植物生命中所有组织和阶段的极性和生长具有相反和转化的影响。为了全面了解这些因素的工作原理,我们确定了转录物,这些转录物会随着诱导的HD-ZIPIII或KANADI功能而变化。在该组中用于鉴定高可信度靶标的其他标准是存在相邻的HD-ZIPIII结合位点,在芽顶分生组织亚域内富集的表达,突变型表型显示极叶和/或分生组织发育缺陷,靶基因产物和HD-ZIPIII蛋白,与HD-ZIPIII和KANADI相反的调控,以及调控子与靶标关系的进化保守性。我们发现,HD-ZIPIII和KANADI调节着ad /背面调控网络中辅助发育决定,几乎所有主要激素途径以及新的参与者(例如INDETERMINATE DOMAIN4)中涉及的组织特异性转录因子。确定了调节HD-ZIPIII和KANADI的多个反馈回路,以及HD-ZIPIII和KANADI彼此相对的机制。这项工作为理解指导基本植物生长和发育的广告/背面监管网络的组成,结构和工作奠定了基础。

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