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首页> 外文期刊>Plant Molecular Biology >Comparative analysis of the pteridophyte Adiantum MFT ortholog reveals the specificity of combined FT/MFT C and N terminal interaction with FD for the regulation of the downstream gene AP1
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Comparative analysis of the pteridophyte Adiantum MFT ortholog reveals the specificity of combined FT/MFT C and N terminal interaction with FD for the regulation of the downstream gene AP1

机译:蕨类植物铁线蕨的MFT直系同源物的比较分析揭示了FT / MFT C和N末端与FD相互作用的组合对调控下游基因AP1的特异性

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摘要

To study the evolution of phosphatidylethanolamine-binding protein (PEBP) gene families in non-flowering plants, we performed a functional analysis of the PEBP gene AcMFT of the MFT clade in the pteridophyte Adiantum capillus-veneris. The expression of AcMFT was regulated by photoperiod similar to that for FT under both long day and short day conditions. Ectopic expression of AcMFT in Arabidopsis promotes the floral transition and partially complements the late flowering defect in transgenic Arabidopsis ft-1 mutants, suggesting that AcMFT functions similarly to FT in flowering plants. Interestingly, a similar partial compensation of the ft-1 late flowering phenotype was observed in Arabidopsis ectopically expressing only exon 4 of the C terminus of AcMFT and FT. This result indicated that the fourth exon of AcMFT and FT plays a similar and important role in promoting flowering. Further analysis indicated that exons 1-3 in the N terminus specifically enhanced the function of FT exon 4 in controlling flowering in Arabidopsis. Protein pull-down assays indicated that Arabidopsis FD proteins interact with full-length FT and AcMFT, as well as peptides encoded by 1-3 exon fragments or the 4th exon alone. Furthermore, similar FRET efficiencies for FT-FD and AcMFT-FD heterodimer in nucleus were observed. These results indicated that FD could form the similar complex with FT and AcMFT. Further analysis indicated that the expression of AP1, a gene downstream of FT, was up-regulated more strongly by FT than AcMFT in transgenic Arabidopsis. Our results revealed that AcMFT from a non-flowering plant could interact with FD to regulate the floral transition and that this function was reduced due to the weakened ability of AcMFT-FD to activate the downstream gene AP1.
机译:为了研究非开花植物中磷脂酰乙醇胺结合蛋白(PEBP)基因家族的进化,我们对翼状蕨类植物铁线蕨中MFT进化枝的PEBP基因AcMFT进行了功能分析。在长日和短日条件下,AcMFT的表达均受到类似于FT的光周期的调节。 AcMFT在拟南芥中的异位表达促进了花期过渡并部分补充了转基因拟南芥ft-1突变体中的晚期开花缺陷,表明AcMFT在开花植物中的功能类似于FT。有趣的是,在异位表达仅AcMFT和FT C末端外显子4的拟南芥中观察到了类似的ft-1晚开花表型的部分补偿。该结果表明,AcMFT和FT的第四外显子在促进开花中起着相似且重要的作用。进一步的分析表明,N末端的外显子1-3特别增强了FT外显子4在控制拟南芥中开花的功能。蛋白质下拉测定法表明拟南芥FD蛋白与全长FT和AcMFT以及由1-3个外显子片段或第4个外显子编码的肽相互作用。此外,观察到原子核中FT-FD和AcMFT-FD异二聚体的FRET效率相似。这些结果表明FD可以与FT和AcMFT形成类似的复合物。进一步的分析表明,在转基因拟南芥中,FT下游基因AP1的表达比AcMFT受到FT的上调程度更高。我们的结果表明,来自非开花植物的AcMFT可以与FD相互作用以调节花期,而由于AcMFT-FD激活下游基因AP1的能力减弱,因此该功能降低了。

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