首页> 美国卫生研究院文献>Journal of Experimental Botany >Genome-wide analysis of the auxin-responsive transcriptome downstream of iaa1 and its expression analysis reveal the diversity and complexity of auxin-regulated gene expression
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Genome-wide analysis of the auxin-responsive transcriptome downstream of iaa1 and its expression analysis reveal the diversity and complexity of auxin-regulated gene expression

机译:iaa1下游生长素应答转录组的全基因组分析及其表达分析揭示了生长素调节基因表达的多样性和复杂性

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摘要

The AUXIN RESPONSE FACTORs (ARFs) and the Aux/IAA proteins regulate various auxin responses through auxin perception mediated by the F-box proteins TIR1/AFBs. ARFs are transcription factors that modulate expression of auxin response genes and are negatively regulated by the Aux/IAA proteins. To gain insight into the regulatory mechanisms of Aux/IAA-ARF action at the genome level, the transcriptome regulated downstream of iaa1, a stabilized IAA1 mutant protein, was identified using dexamethasone (DEX)-controlled nuclear translocation of iaa1 during the auxin response. The expression of the iaa1-regulated auxin-responsive genes selected from microarray data was analysed with RNA-gel blot analysis and it was shown that auxin-regulated expression of these genes was significantly inhibited by DEX treatment. While cycloheximide-inducible expression of a majority of these genes was also DEX-suppressible, expression of some genes could not be suppressed by treatment with DEX. Expression analysis in a variety of arf mutant backgrounds suggested that all iaa1-regulated auxin-response genes examined are controlled by ARFs to different extents and that the same ARF protein can regulate the expression of these genes in response to auxin in a positive or a negative manner. However, arf mutations did not affect auxin-mediated down-regulation, indicating that ARFs might not play a critical role in down-regulation. The decrease in auxin-responsive gene expression in arf7 arf19 mutants was more severe than that of tir1/afb quadruple mutants. These results show the diversity and complexity of mechanisms of Aux/IAA-ARF- and auxin-regulated gene expression. These data also provide the opportunity for functional analysis of genes mediating the auxin-response downstream of Aux/IAA-ARFs.
机译:AUXIN响应因子(ARF)和Aux / IAA蛋白通过F-box蛋白TIR1 / AFBs介导的生长素感知调节各种生长素响应。 ARF是调节生长素应答基因表达的转录因子,并受到Aux / IAA蛋白的负调控。为了深入了解Aux / IAA-ARF在基因组水平上的作用调控机制,在生长素应答过程中使用地塞米松(DEX)控制的iaa1核易位,鉴定了iaa1(稳定的IAA1突变蛋白)下游的转录组。通过RNA-凝胶印迹分析对选自微阵列数据的iaa1调节的生长素应答基因的表达进行了分析,结果表明,DEX处理显着抑制了生长素调节的这些基因的表达。虽然大多数这些基因的环己酰亚胺诱导的表达也是DEX可抑制的,但是某些基因的表达不能通过DEX处理而被抑制。在各种arf突变体背景中的表达分析表明,所检查的所有iaa1调节的生长素应答基因均受到ARF的不同程度控制,并且相同的ARF蛋白可以调节这些基因在生长素阳性或阴性时的表达方式。但是,arf突变不会影响生长素介导的下调,这表明ARF可能在下调中不发挥关键作用。与tir1 / afb四倍体突变体相比,arf7 arf19突变体中生长素应答基因表达的下降更为严重。这些结果表明Aux / IAA-ARF和生长素调节基因表达机制的多样性和复杂性。这些数据也为介导Aux / IAA-ARF下游植物生长素应答基因的功能分析提供了机会。

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