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首页> 外文期刊>The Plant Cell >TCP transcription factors control the morphology of shoot lateral organs via negative regulation of the expression of boundary-specific genes in Arabidopsis
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TCP transcription factors control the morphology of shoot lateral organs via negative regulation of the expression of boundary-specific genes in Arabidopsis

机译:TCP转录因子通过负调节拟南芥中边界特异性基因的表达来控制枝条侧器官的形态

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Plants form shoot meristems in the so-called boundary region, and these meristems are necessary for normal morphogenesis of aerial parts of plants. However, the molecular mechanisms that regulate the formation of shoot meristems are not fully understood. We report here that expression of a chimeric repressor from TCP3 (TCP3SRDX), a member of TEOSINTE BRANCHED1, CYCLOIDEA, and PCF (TCP) transcription factors in Arabidopsis thaliana, resulted in the formation of ectopic shoots on cotyledons and various defects in organ development. Expression of TCP3SRDX induced ectopic expression of boundary-specific genes, namely the CUP-SHAPED COTYLEDON (CUC) genes, and suppressed the expression of miR164, whose product cleaves the transcripts of CUC genes. This abnormal phenotype was substantially reversed on the cuc1 mutant background. By contrast, gain of function of TCP3 suppressed the expression of CUC genes and resulted in the fusion of cotyledons and defects in formation of shoots. The pattern of expression of TCP3 did not overlap with that of the CUC genes. In addition, we found that eight TCPs had functions similar to that of TCP3. Our results demonstrate that the TCP transcription factors play a pivotal role in the control of morphogenesis of shoot organs by negatively regulating the expression of boundary-specific genes.
机译:植物在所谓的边界区域形成芽分生组织,而这些分生组织是植物空中部分正常形态发生所必需的。但是,调节芽分生组织形成的分子机制尚未完全了解。我们在这里报告说,拟南芥中来自TCP3(TCP3SRDX),TEOSINTE BRANCHED1,CYCLOIDEA和PCF(TCP)转录因子的成员的嵌合阻遏物的表达导致子叶上异位芽的形成以及器官发育中的各种缺陷。 TCP3SRDX的表达诱导边界特异性基因,即杯形子叶(CUC)基因的异位表达,并抑制miR164的表达,miR164的产物可切割CUC基因的转录本。该异常表型在cuc1突变体背景上基本逆转。相反,TCP3功能的获得抑制了CUC基因的表达,并导致子叶融合和芽形成中的缺陷。 TCP3的表达模式与CUC​​基因没有重叠。另外,我们发现八个TCP具有类似于TCP3的功能。我们的结果表明,TCP转录因子通过负调控边界特异性基因的表达,在控制芽器官的形态发生中起关键作用。

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