首页> 外文期刊>Journal of Experimental Botany >The banana fruit Dof transcription factor MaDof23 acts as a repressor and interacts with MaERF9 in regulating ripening-related genes
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The banana fruit Dof transcription factor MaDof23 acts as a repressor and interacts with MaERF9 in regulating ripening-related genes

机译:香蕉果实自由度转录因子MaDof23充当阻遏物,并与MaERF9相互作用调控成熟相关基因

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摘要

The banana transcriptional repressor MaDof23 and transcriptional activator MaERF9 may act antagonistically in regulating 10 ripening-related genes associated with cell wall degradation and aroma formation.The DNA binding with one finger (Dof) proteins, a family of plant-specific transcription factors, are involved in a variety of plant biological processes. However, little information is available on their involvement in fruit ripening. We have characterized 25 MaDof genes from banana fruit (Musa acuminata), designated as MaDof1-MaDof25. Gene expression analysis in fruit subjected to different ripening conditions revealed that MaDofs were differentially expressed during different stages of ripening. MaDof10, 23, 24, and 25 were ethylene-inducible and nuclear-localized, and their transcript levels increased during fruit ripening. Moreover, yeast two-hybrid and bimolecular fluorescence complementation analyses demonstrated a physical interaction between MaDof23 and MaERF9, a potential regulator of fruit ripening reported in a previous study. We determined that MaDof23 is a transcriptional repressor, whereas MaERF9 is a transcriptional activator. We suggest that they might act antagonistically in regulating 10 ripening-related genes, including MaEXP1/2/3/5, MaXET7, MaPG1, MaPME3, MaPL2, MaCAT, and MaPDC, which are associated with cell wall degradation and aroma formation. Taken together, our findings provide new insight into the transcriptional regulation network controlling banana fruit ripening.
机译:香蕉转录阻遏蛋白MaDof23和转录激活因子MaERF9可能在调节与细胞壁降解和香气形成有关的10个与成熟相关的基因中起拮抗作用。涉及与植物特异性转录因子家族之一的手指(Dof)蛋白结合的DNA。在各种植物的生物过程中。但是,关于它们参与果实成熟的信息很少。我们已经表征了来自香蕉果实(Musa acuminata)的25个MaDof基因,命名为MaDof1-MaDof25。果实在不同成熟条件下的基因表达分析表明,MaDofs在不同成熟阶段表达差异。 MaDof10、23、24和25是乙烯诱导的且位于核内,其转录水平在果实成熟期间增加。此外,酵母双杂交和双分子荧光互补分析证明了MaDof23和MaERF9之间的物理相互作用,MaDof23和MaERF9是先前研究中报道的水果成熟的潜在调节剂。我们确定MaDof23是转录阻遏物,而MaERF9是转录激活物。我们建议它们可能在调节10个与成熟相关的基因中起拮抗作用,其中包括MaEXP1 / 2/3/5,MaXET7,MaPG1,MaPME3,MaPL2,MaCAT和MaPDC,这些基因与细胞壁降解和香气形成有关。综上所述,我们的发现为控制香蕉果实成熟的转录调控网络提供了新的见识。

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