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Long-distance movement of Arabidopsis FLOWERING LOCUS T RNA participates in systemic floral regulation

机译:拟南芥的远距离运动FLOERING LOCUS T RNA参与系统的花卉调控

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The finding of mRNA acting as a systemic information molecule is one of the most exciting discoveries in recent plant biology. However, evidence demonstrating the functional significance of non-cell autonomous RNA remains limited. Recent analyses of Arabidopsis and rice revealed FLOWERING LOCUS T (FT) protein as a systemic florigenic signal. However, whether the FT RNA also participates in systemic floral regulation remains controversial. By using Arabidopsis cleft-grafting experiments, we showed that the RNA of Arabidopsis FT undergoes long-distance movement from the stock to the scion apex in both FT transformants and non-transformants. In addition, the sequences of FT RNA are sufficient to target a cell-autonomous RNA for long-distance movement. Therefore, FT RNA is a bona fide non-cell autonomous RNA. To examine the systemic action of FT RNA, we uncoupled the movement of FT RNA from protein by fusing FT with RED FLUORESCENT PROTEIN (RFP). When RFP-FT protein was retained in companion cells, the detection of RFP-FT RNA correlates with floral promotion in the scion. Further depletion of the translocated RFP-FT RNA by RNAi or artificial miRNA against FT delayed the floral promotion, indicating that the translocated FT RNA acts as a part of the systemic floral signaling. Our results indicate that both FT RNA and protein move long distance and act redundantly to integrate the photoperiodic signals.
机译:作为系统信息分子的mRNA的发现是最近植物生物学中最令人兴奋的发现之一。但是,证明非细胞自主RNA的功能意义的证据仍然有限。最近对拟南芥和水稻的分析表明,FLOWERING LOCUS T(FT)蛋白是系统性的成色信号。但是,FT RNA是否也参与系统的花卉调控仍存在争议。通过使用拟南芥裂口嫁接实验,我们发现拟南芥FT的RNA在FT转化子和非转化子中都经历了从原种到接穗先端的长距离运动。此外,FT RNA的序列足以靶向长距离运动的细胞自治RNA。因此,FT RNA是真正的非细胞自主RNA。为了检查FT RNA的全身作用,我们通过将FT与RED荧光蛋白(RFP)融合来分离FT RNA与蛋白质的运动。当RFP-FT蛋白保留在陪伴细胞中时,RFP-FT RNA的检测与接穗中的花促进有关。 RNAi或人工miRNA对FT进一步清除了易位的RFP-FT RNA延迟了花序的促进,表明该易位的FT RNA充当了系统性花信号的一部分。我们的结果表明FT RNA和蛋白质都可以移动很长的距离,并且可以冗余地整合光周期信号。

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