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首页> 外文期刊>Plant Physiology and Biochemistry >A functional homologue of Arabidopsis TTG1 from Freesia interacts with bHLH proteins to regulate anthocyanin and proanthocyanidin biosynthesis in both Freesia hybrida and Arabidopsis thaliana
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A functional homologue of Arabidopsis TTG1 from Freesia interacts with bHLH proteins to regulate anthocyanin and proanthocyanidin biosynthesis in both Freesia hybrida and Arabidopsis thaliana

机译:来自Freesia的拟南芥TTG1的功能同源物与BHLH蛋白相互作用,以调节花青素和花青蛋白生物合成,在弗雷西娅·雪茄和拟南芥底栖

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摘要

The MBW complex, consisting of MYB, basic helix-loop-helix (bHLH) and WD40 proteins, regulates multiple traits in plants, such as anthocyanin and proanthocyanidin biosynthesis and cell fate determination. The complex has been widely identified in dicot plants, whereas few studies are concentrated on monocot plants which are of crucial importance to decipher its functional diversities among angiosperms during evolution. In present study, a WD40 gene from Freesia hybrida, designated as FhTTG1, was cloned and functionally characterized. Real-time PCR analysis indicated that it was expressed synchronously with the accumulation of both proanthocyanidins and anthocyanins in Freesia flowers. Transient protoplast transfection and biomolecular fluorescence complementation (BiFC) assays demonstrated that FhTTG1 could interact with FhbHLH proteins (FhTT8L and FhGL3L) to constitute the MBW complex. Moreover, the transportation of FhTTG1 to nucleus was found to rely on FhbHLH factors. Outstandingly, FhTTG1 could highly activate the anthocyanin or proanthocyanidin biosynthesis related gene promoters when co-transfected with MTh and bHLH partners, implying that FhTTG1 functioned as a member of MBW complex to control the anthocyanin or proanthocyanidin biosynthesis in Freesia hybrida. Further ectopic expression assays in Arabidopsis ttg1-1 showed the defective phenotypes of trg1-1 were partially restored. Molecular biological assays validated FhTTG1 might interact with the endogenous bHLH factors to up-regulate genes responsible for anthocyanin and proanthocyanidin biosynthesis and trichome formation, indicating that FhTTG1 might perform exchangeable roles with AtTTG1. These results will not only contribute to the characterization of FhTTG1 in Freesia but also shed light on the establishment of flavonoid regulatory system in monocot plants, especially in Freesia hybrida.
机译:由MYB,基本螺旋环 - 螺旋(BHLH)和WD40蛋白组成的MBW复合物调节植物中的多种性状,例如花青素和原霉素生物合成和细胞命运测定。该综合体已被广泛鉴定在Dicot植物中,而少量的研究集中在单码植物上,这在进化期间被缓解中的心血管中的功能多样性至关重要。在目前的研究中,克隆和功能表征了来自Freesia Hybrida的WD40基因,称为FHTTG1。实时PCR分析表明它与苍兰花的白花蛋白和花青素的积累同步表达。瞬态原生质体转染和生物分子荧光互补(BIFC)测定表明FHTTG1可以与FHBHLH蛋白(FHTT8L和FHGL31)相互作用以构成MBW复合物。此外,发现FHTTG1对核的运输依赖于FHBHLH因子。突出的是,在用MtH和BHLH合作伙伴共转染时,FHTTG1可以高度激活花青素或花青蛋白生物合成相关基因启动子,这意味着FHTTG1用作MBW复合物的成员,以控制野生植物中的花青素或花青蛋白生物合成。拟南芥TTG1-1中的其他异位表达测定显示TRG1-1的缺陷表型部分恢复。分子生物学测定验证的FHTTG1可能与内源性BHLH因子相互作用,其上调原因负责花青素和原花青素生物合成和滴毛瘤的形成,表明FHTTG1可以使用ATTTG1进行可交换的作用。这些结果不仅会有助于FHTTG1在小野草中的表征,而且还涉及在单胶质植物中建立黄酮类化调控体系的揭示,尤其是在小苍兰·雪茄中。

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