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首页> 外文期刊>Plant physiology >The tomato MADS-box transcription factor RIPENING INHIBITOR interacts with promoters involved in numerous ripening processes in a COLORLESS NONRIPENING-dependent manner
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The tomato MADS-box transcription factor RIPENING INHIBITOR interacts with promoters involved in numerous ripening processes in a COLORLESS NONRIPENING-dependent manner

机译:番茄MADS-box转录因子RIPENING INHIBITOR与无成熟过程中依赖于许多成熟过程的启动子相互作用

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Fruit ripening is a complex developmental process responsible for the transformation of the seed-containing organ into a tissue attractive to seed dispersers and agricultural consumers. The coordinated regulation of the different biochemical pathways necessary to achieve this change receives considerable research attention. The MADS-box transcription factor RIPENING INHIBITOR (RIN) is an essential regulator of tomato (Solanum lycopersicum) fruit ripening but the exact mechanism by which it influences the expression of ripening-related genes remains unclear. Using a chromatin immunoprecipitation approach, we provide evidence that RIN interacts with the promoters of genes involved in the major pathways associated with observed and well-studied ripening phenotypes and phenomena, including the transcriptional control network involved in overall ripening regulation, ethylene biosynthesis, ethylene perception, downstream ethylene response, cell wall metabolism, and carotenoid biosynthesis. Furthermore, in the cases of ethylene and carotenoid biosynthesis, RIN interacts with the promoters of genes encoding rate-limiting activities.We also show that RIN recruitment to target loci is dependent on a normally functioning allele at the ripening-specific transcription factor COLORLESS NONRIPENING gene locus, further clarifying the relationship between these two ripening regulators.
机译:果实成熟是一个复杂的发育过程,负责将含种子的器官转化为对种子分散剂和农业消费者有吸引力的组织。实现这一变化所必需的不同生化途径的协调调控受到了相当多的研究关注。 MADS-box转录因子RIPENING INHIBITOR(RINPE)是番茄(Solanum lycopersicum)果实成熟的重要调节剂,但其影响成熟相关基因表达的确切机制仍不清楚。使用染色质免疫沉淀方法,我们提供了证据,表明RIN与参与观察和研究成熟的表型和现象相关的主要途径的基因的启动子相互作用,包括参与总体成熟调节,乙烯生物合成,乙烯感知的转录控制网络。 ,下游乙烯反应,细胞壁代谢和类胡萝卜素的生物合成。此外,在乙烯和类胡萝卜素的生物合成情况下,RIN与编码限速活性的基因的启动子相互作用。我们还表明,RIN募集到靶位点取决于成熟特异性转录因子COLORLESS NONRIPENING基因的正常功能等位基因位置,进一步阐明了这两个成熟调节因子之间的关系。

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