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Regulation of FLOWERING LOCUS T by a microRNA in Brachypodium distachyon.

机译:短枝曲霉中的microRNA调控花的位置T。

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The highly conserved florigen gene FLOWERING LOCUS T (FT) functions at the core of the flowering pathways. Extensive studies have examined the transcriptional regulation of FT; however, other layers of FT regulation remain unclear. Here, we identified miR5200 a Pooideae-specific microRNA that is expressed in leaves and targets Brachypodium distachyon FT orthologs for mRNA cleavage. miR5200 was abundantly expressed in plants grown under short-day (SD) conditions but was dramatically repressed in plants transferred to long-day (LD) conditions. We also found that the epigenetic chromatin status, specifically the levels of histone methylation marks, at miR5200 precursor loci changed in response to daylength. Moreover, artificial interruption of miR5200 activity by target mimicry in B. distachyon altered flowering time in SD but not in LD conditions, suggesting that miR5200 functions in photoperiod-mediated flowering time regulation. Together, these findings illustrate a posttranscriptional regulation mechanism of FT and provide insights into understanding of the multiple concerted pathways for flowering time control in plants.
机译:高度保守的荧光原基因FLOWERING LOCUS T(FT)在开花途径的核心起作用。广泛的研究检查了FT的转录调控。但是,FT监管的其他层面仍不清楚。在这里,我们确定了miR5200,这是一种在叶片中表达的Pooideae特异的microRNA,并靶向Brachypodium distachyon FT直向同源物进行mRNA切割。 miR5200在短日(SD)条件下生长的植物中大量表达,但在转移到长日(LD)条件下的植物中受到显着抑制。我们还发现,miR5200前体位点的表观遗传染色质状态,特别是组蛋白甲基化标记的水平,随着日长的变化而变化。此外,在拟南芥中,靶拟态对miR5200活性的人工中断改变了SD的开花时间,但在LD条件下却没有改变,这表明miR5200在光周期介导的开花时间调节中起作用。这些发现共同说明了FT的转录后调控机制,并为深入理解植物开花时间控制的多种协同途径提供了见识。

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