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拟南芥生长素反应因子基因家族的细胞表达图谱。

A cellular expression map of the Arabidopsis AUXIN RESPONSE FACTOR gene family.

机构信息

Laboratory of Biochemistry, Wageningen University, Dreijenlaan 3, 6703 HA Wageningen, The Netherlands.

出版信息

Plant J. 2011 Nov;68(4):597-606. doi: 10.1111/j.1365-313X.2011.04710.x. Epub 2011 Aug 30.

Abstract

The plant hormone auxin triggers a wide range of developmental and growth responses throughout a plant's life. Most well-known auxin responses involve changes in gene expression that are mediated by a short pathway involving an auxin-receptor/ubiquitin-ligase, DNA-binding auxin response factor (ARF) transcription factors and their interacting auxin/indole-3-acetic acid (Aux/IAA) transcriptional inhibitors. Auxin promotes the degradation of Aux/IAA proteins through the auxin receptor and hence releases the inhibition of ARF transcription factors. Although this generic mechanism is now well understood, it is still unclear how developmental specificity is generated and how individual gene family members of response components contribute to local auxin responses. We have established a collection of transcriptional reporters for the ARF gene family and used these to generate a map of expression during embryogenesis and in the primary root meristem. Our results demonstrate that transcriptional regulation of ARF genes generates a complex pattern of overlapping activities. Genetic analysis shows that functions of co-expressed ARFs converge on the same biological processes, but can act either antagonistically or synergistically. Importantly, the existence of an 'ARF pre-pattern' could explain how cell-type-specific auxin responses are generated. Furthermore, this resource can now be used to probe the functions of ARF in other auxin-dependent processes.

摘要

植物激素生长素在植物的一生中触发了广泛的发育和生长反应。最著名的生长素反应涉及基因表达的变化,这些变化是由涉及生长素受体/泛素连接酶、DNA 结合生长素反应因子 (ARF) 转录因子及其相互作用的生长素/吲哚-3-乙酸 (Aux/IAA) 转录抑制剂的短途径介导的。生长素通过生长素受体促进 Aux/IAA 蛋白的降解,从而释放 ARF 转录因子的抑制作用。尽管这种通用机制现在已经很清楚,但仍不清楚如何产生发育特异性,以及响应成分的个别基因家族成员如何有助于局部生长素反应。我们已经建立了 ARF 基因家族的转录报告基因集,并使用这些报告基因生成了胚胎发生和主根分生组织期间表达的图谱。我们的结果表明,ARF 基因的转录调控产生了复杂的重叠活性模式。遗传分析表明,共表达的 ARF 的功能集中在相同的生物学过程上,但可以表现出拮抗或协同作用。重要的是,“ARF 预模式”的存在可以解释如何产生细胞类型特异性的生长素反应。此外,现在可以使用此资源来探测 ARF 在其他生长素依赖性过程中的功能。

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