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首页> 外文期刊>Nature Plants >Nonsense-mediated mRNA decay modulates FLM-dependent thermosensory flowering response in Arabidopsis
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Nonsense-mediated mRNA decay modulates FLM-dependent thermosensory flowering response in Arabidopsis

机译:无意义介导的mRNA衰减调节拟南芥中FLM依赖的热感开花反应。

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Increasing global temperatures have an impact on flowering, and the underlying mechanisms are just beginning to be unravelled(1,2). Elevated temperatures can induce flowering, and different mechanisms that involve either activation or de-repression of FLOWERING LOCUS T (FT) by transcription factor PHYTOCHROME INTERACTING FACTOR 4 (PIF4) or the FLOWERING LOCUS M (FLM)-SHORT VEGETATIVE PHASE (SVP) complex, respectively, have been suggested to be involved(3-6). Thermosensitivity in flowering has been mapped to FLM5, which encodes a floral repressor(7,8). FLM undergoes alternative splicing(8) and it has been suggested that temperature-dependent alternative splicing leads to differential accumulation of the FLM-beta and FLM-delta transcripts, encoding proteins with antagonistic effects, and that their ratio determines floral transition(4). Here we show that high temperatures downregulate FLM expression by alternative splicing coupled with nonsense-mediated mRNA decay (AS-NMD). We identify thermosensitive splice sites in FLM and show that the primary effect of temperature is explained by an increase in NMD target transcripts. We also show that flm is epistatic to pif4, which suggests that most of the PIF4 effects are FLM dependent. Our findings suggest a model in which the loss of the floral repressor FLM occurs through mRNA degradation in response to elevated temperatures, signifying a role for AS-NMD in conferring environmental responses in plants.
机译:全球气温升高对开花有影响,其潜在机制才刚刚开始阐明(1,2)。升高的温度可以诱导开花,并且不同的机制涉及通过转录因子植物染色体相互作用因子4(PIF4)或开花部位M(FLM)-植物营养期(SVP)复合体激活或抑制开花部位T(FT)。分别被建议参与(3-6)。开花中的热敏性已被映射到FLM5上,该FLM5编码一种花卉阻遏物(7,8)。 FLM经历了选择性剪接(8),并且有人提出,温度依赖性的选择性剪接导致FLM-beta和FLM-delta转录本的差异积累,编码具有拮抗作用的蛋白质,并且它们的比率决定了花的过渡(4)。在这里,我们显示高温通过选择性剪接结合无义介导的mRNA衰变(AS-NMD)下调FLM表达。我们确定了FLM中的热敏剪接位点,并表明温度的主要影响是由NMD目标转录本的增加所解释的。我们还显示flm对pif4而言是上位性的,这表明大多数PIF4效应是FLM依赖性的。我们的发现提出了一个模型,其中,花卉抑制基因FLM的丧失是由于响应高温引起的mRNA降解而发生的,这表明AS-NMD在赋予植物环境响应中起作用。

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