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A Systems Approach Reveals Regulatory Circuitry for Arabidopsis Trichome Initiation by the GL3 and GL1 Selectors

机译:一种系统方法揭示了通过GL3和GL1选择器启动拟南芥突触基因组的调控电路

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摘要

Position-dependent cell fate determination and pattern formation are unique aspects of the development of plant structures. The establishment of single-celled leaf hairs (trichomes) from pluripotent epidermal (protodermal) cells in Arabidopsis provides a powerful system to determine the gene regulatory networks involved in cell fate determination. To obtain a holistic view of the regulatory events associated with the differentiation of Arabidopsis epidermal cells into trichomes, we combined expression and genome-wide location analyses (ChIP-chip) on the trichome developmental selectors GLABRA3 (GL3) and GLABRA1 (GL1), encoding basic helix-loop-helix (bHLH) and MYB transcription factors, respectively. Meta-analysis was used to integrate genome-wide expression results contrasting wild type and gl3 or gl1 mutants with changes in gene expression over time using inducible versions of GL3 and GL1. This resulted in the identification of a minimal set of genes associated with the differentiation of epidermal cells into trichomes. ChIP-chip experiments, complemented by the targeted examination of factors known to participate in trichome initiation or patterning, identified about 20 novel GL3/GL1 direct targets. In addition to genes involved in the control of gene expression, such as the transcription factors SCL8 and MYC1, we identified SIM (SIAMESE), encoding a cyclin-dependent kinase inhibitor, and RBR1 (RETINOBLASTOMA RELATED1), corresponding to a negative regulator of the cell cycle transcription factor E2F, as GL3/GL1 immediate targets, directly implicating these trichome regulators in the control of the endocycle. The expression of many of the identified GL3/GL1 direct targets was specific to very early stages of trichome initiation, suggesting that they participate in some of the earliest known processes associated with protodermal cell differentiation. By combining this knowledge with the analysis of genes associated with trichome formation, our results reveal the architecture of the top tiers of the hierarchical structure of the regulatory network involved in epidermal cell differentiation and trichome formation.
机译:位置依赖性细胞命运的确定和模式的形成是植物结构发展的独特方面。在拟南芥中由多能表皮(原皮)细胞建立单细胞叶毛(毛状体)提供了一个强大的系统,可确定参与细胞命运确定的基因调控网络。为了获得与拟南芥表皮细胞分化为毛状体相关的调控事件的整体视图,我们在毛状体发育选择器GLABRA3(GL3)和GLABRA1(GL1)上结合了编码和全基因组位置分析(芯片)基本螺旋-环-螺旋(bHLH)和MYB转录因子。使用荟萃分析,使用诱导型的GL3和GL1,整合了野生型和gl3或gl1突变体与基因表达随时间变化的全基因组表达结果。这导致鉴定出与表皮细胞分化为毛状体相关的最小基因集。 ChIP芯片实验通过对已知参与毛状体引发或模式形成的因子进行有针对性的检查,确定了约20个新的GL3 / GL1直接靶标。除了涉及基因表达控制的基因(例如转录因子SCL8和MYC1)外,我们还鉴定了SIM(SIAMESE)和RBR1(RETINOBLASTOMA RELATED1),分别对应于SCL8和MYC1的负调控因子。细胞周期转录因子E2F作为GL3 / GL1的直接靶标,直接将这些毛状体调节剂牵连到内循环的控制中。许多已确定的GL3 / GL1直接靶标的表达特异于毛状体萌发的非常早期,这表明它们参与了一些与原皮细胞分化有关的最早已知过程。通过将这种知识与与毛状体形成相关的基因分析相结合,我们的结果揭示了参与表皮细胞分化和毛状体形成的调控网络层次结构的顶层结构。

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