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Transcriptional control of anthocyanin biosynthesis genes and transcription factors associated with flower coloration patterns in Gerbera hybrida

机译:非洲菊花色苷生物合成基因及与花色模式相关的转录因子的转录调控

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摘要

We analyzed the expression of anthocyanin biosynthesis genes and transcription factors (TFs) in the Gerbera hybrida cultivars ‘Bintang’ and ‘Alliance’ that exhibit different coloration patterns. Differential expression of biosynthesis genes and TFs was associated with variable anthocyanin content at different flower developmental stages (S1–S3) in both cultivars; higher anthocyanin content was correlated with higher levels of gene expression. Exposure to different temperatures (6 and 22 °C) also resulted in different anthocyanin content levels: the lower temperature (6 °C) enhanced anthocyanin content compared to the higher temperature (22 °C). However, the increased anthocyanin content of ‘Bintang’ compared to ‘Alliance’ was the result of higher levels of expression of all detected genes, regardless of flower stage and temperature conditions. Therefore, we conclude that transcriptional control of the detected genes is associated with the mechanisms of anthocyanin biosynthesis and coloration patterns in gerberas; however, further studies of the key genes are needed.
机译:我们分析了非洲菊品种'Bintang'和'Alliance'中花色苷生物合成基因和转录因子(TFs)的表达,它们表现出不同的着色模式。两个品种在不同的花发育阶段(S1-S3),生物合成基因和TFs的差异表达与花青素含量的变化有关。花青素含量越高,基因表达水平越高。暴露于不同温度(6和22°C)也会导致花青素含量水平不同:与较高温度(22°C)相比,较低温度(6°C)增加的花色苷含量。但是,与“联盟”相比,“ Bintang”花色苷含量增加的原因是所有检测到的基因的表达水平较高,而与花期和温度条件无关。因此,我们得出结论,检测到的基因的转录控制与非洲菊中花色苷的生物合成和着色模式有关。但是,还需要进一步研究关键基因。

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