首页> 美国卫生研究院文献>Scientific Reports >Two IIIf Clade-bHLHs from Freesia hybrida Play Divergent Roles in Flavonoid Biosynthesis and Trichome Formation when Ectopically Expressed in Arabidopsis
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Two IIIf Clade-bHLHs from Freesia hybrida Play Divergent Roles in Flavonoid Biosynthesis and Trichome Formation when Ectopically Expressed in Arabidopsis

机译:当在拟南芥中异位表达时来自小苍兰的两个IIIf进化枝-bHLHs在类黄酮生物合成和Trichome形成中发挥不同的作用

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摘要

The MBW complex, comprised by R2R3-MYB, basic helix-loop-helix (bHLH) and WD40, is a single regulatory protein complex that drives the evolution of multiple traits such as flavonoid biosynthesis and epidermal cell differentiation in plants. In this study, two IIIf Clade-bHLH regulator genes, FhGL3L and FhTT8L, were isolated and functionally characterized from Freesia hybrida. Different spatio-temporal transcription patterns were observed showing diverse correlation with anthocyanin and proanthocyanidin accumulation. When overexpressed in Arabidopsis, FhGL3L could enhance the anthocyanin accumulation through up-regulating endogenous regulators and late structural genes. Unexpectedly, trichome formation was inhibited associating with the down-regulation of AtGL2. Comparably, only the accumulation of anthocyanins and proanthocyanidins was strengthened in FhTT8L transgenic lines. Furthermore, transient expression assays demonstrated that FhGL3L interacted with AtPAP1, AtTT2 and AtGL1, while FhTT8L only showed interaction with AtPAP1 and AtTT2. In addition, similar activation of the AtDFR promoter was found between AtPAP1-FhGL3L/FhTT8L and AtPAP1- AtGL3/AtTT8 combinations. When FhGL3L was fused with a strong activation domain VP16, it could activate the AtGL2 promoter when co-transfected with AtGL1. Therefore, it can be concluded that the functionality of bHLH factors may have diverged, and a sophisticated interaction and hierarchical network might exist in the regulation of flavonoid biosynthesis and trichome formation.
机译:MBW复合物由R2R3-MYB,基本螺旋-环-螺旋(bHLH)和WD40组成,是一个单一的调节蛋白复合物,可驱动植物中类黄酮生物合成和表皮细胞分化等多种性状的进化。在这项研究中,从小苍兰中分离了两个IIIf Clade-bHLH调节基因FhGL3L和FhTT8L,并对其功能进行了表征。观察到不同的时空转录模式,显示出与花青素和原花青素积累的多种相关性。当在拟南芥中过表达时,FhGL3L可通过上调内源性调节子和后期结构基因来增强花色苷的积累。出乎意料的是,毛状体的形成与AtGL2的下调相关联。相比之下,在FhTT8L转基因株系中,仅花色苷和原花色素的积累得到增强。此外,瞬时表达分析表明FhGL3L与AtPAP1,AtTT2和AtGL1相互作用,而FhTT8L仅显示与AtPAP1和AtTT2相互作用。此外,在AtPAP1-FhGL3L / FhTT8L和AtPAP1-AtGL3 / AtTT8组合之间发现了类似的AtDFR启动子激活。当FhGL3L与强大的激活域VP16融合时,当与AtGL1共转染时,它可以激活AtGL2启动子。因此,可以得出结论,bHLH因子的功能可能有所不同,并且在调节类黄酮生物合成和毛状体形成中可能存在复杂的相互作用和层次网络。

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