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MicroRNA-mediated establishment of transcription factor gradients controlling developmental phase transitions

机译:MicroRNA介导的控制发育相变的转录因子梯度的建立

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摘要

The juvenile-to-adult phase transition is an important and critical step during plant development to ensure maximum reproductivity. This transition is regulated by different pathways, in some of which microRNAs are considered to be essential key components. In seed plants, miR156 and miR172 act sequentially in well characterized pathways to induce the vegetative phase change and floral formation by the establishment of spatiotemporal gradients of their cognate target transcripts that encode master regulators of development. Recently, we reported on an unrelated, moss-specific miRNA that acts similarly in the control of the juvenile-to-adult phase transition in Physcomitrella patens. Physcomitrella miR534a defines the spatial expression of two transcripts encoding BLADE-ON-PETIOLE (BOP) transcriptional coactivators in a cytokinin-dependent manner. We propose that this miRNA-mediated control is a major mechanism underlying the cytokinin-induced formation of the gametophore meristem in Physcomitrella. Furthermore, it suggests a convergent evolution of miRNA-controlled pathways regulating phase transitions in seed and non-seed plants.
机译:从幼年到成年的相变是植物发育过程中重要且关键的一步,以确保最大程度的繁殖。这种转变受不同途径的调控,在某些途径中,微小RNA被认为是必不可少的关键成分。在种子植物中,miR156和miR172在特征明确的途径中依次发挥作用,通过建立编码目标发育调控因子的同源靶转录本的时空梯度,诱导营养相变和花的形成。最近,我们报道了一种不相关的,苔藓特异的miRNA,其在小立碗藓(Commcomitrella patens)的幼体到成人相变的控制中起类似作用。 Physcomitrella miR534a以细胞分裂素依赖性方式定义了编码BLADE-ON-PETIOLE(BOP)转录共激活因子的两个转录本的空间表达。我们建议,这种miRNA介导的控制是根瘤菌中细胞分裂素诱导分生组织分生组织形成的主要机制。此外,这表明miRNA控制的途径在种子和非种子植物中的相变的趋同演化。

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