首页> 外文期刊>Plant Growth Regulation: An International Journal on Natural and Synthetic Regulators >Transcriptome profiles reveal new regulatory factors of anthocyanin accumulation in a novel purple-colored cherry tomato cultivar Jinling Moyu
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Transcriptome profiles reveal new regulatory factors of anthocyanin accumulation in a novel purple-colored cherry tomato cultivar Jinling Moyu

机译:转录组型材揭示了新型紫色樱桃番茄品种金陵Moyu中的花青素积累的新调节因素

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Anthocyanins are important secondary metabolites with high nutraceutical value. They represent the major red, purple, violet and blue pigments in higher plants but are usually not present in the fruits of domesticated tomatoes. Recently, several genes that regulate anthocyanin accumulation have been identified in wild tomatoes or mutation lines; however, whether there are other new factors involved in the regulation of anthocyanin biosynthesis is still unknown. "Jinling Moyu" (MY) is a novel purple cherry tomato that accumulates considerable anthocyanins in its ripe fruit. A transcriptome comparison analysis of MY fruits with pink and green fruit revealed that several structural genes assigned to the anthocyanin biosynthetic pathway were highly expressed in MY tomato, but all six known regulatory genes of anthocyanin accumulation in tomato fruits were rarely expressed among the samples in this study. However, four other R2R3-MYB and five other bHLH transcription factors were highly correlated with the differentially expressed structural genes in the anthocyanin pathway, indicating that these transcription factors might regulate anthocyanin biosynthesis in MY tomato. Our study will aid in understanding the complex mechanism regulating anthocyanin pigmentation in tomato fruits .
机译:花青素是具有高营养素的重要次生代谢物。它们代表了高等植物中的主要红色,紫色,紫色和蓝色颜料,但通常不存在于驯化西红柿的水果中。最近,在野生西红柿或突变线中发现了调节花青素积累的几种基因;但是,是否还有其他涉及的涉及花青素生物合成的调控仍然未知。 “金陵Moyu”(我的)是一部新型紫色樱桃番茄,积累了其成熟的水果中相当大的花青素。用粉红色和绿色水果的水果的转录组比较分析显示,在我的番茄中,分配给花青素生物合成途径的几种结构基因在番茄中的所有六种已知的番茄素积累的六个已知的调控基因在此中很少表达学习。然而,另外四个R2R3-MYB和五种其他BHLH转录因子与花青素途径中的差异表达的结构基因高度相关,表明这些转录因子可能调节番茄中的花青素生物合成。我们的研究将有助于了解调节番茄水果中的花青素色素沉着的复杂机制。

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