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首页> 外文期刊>HortTechnology >Fagopyrum tataricum FtWD40 Functions as a Positive Regulator of Anthocyanin Biosynthesis in Transgenic Tobacco
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Fagopyrum tataricum FtWD40 Functions as a Positive Regulator of Anthocyanin Biosynthesis in Transgenic Tobacco

机译:Fagopyrum tataricum ftwd40用作转基因烟草中的花青素生物合成的正稳压器

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摘要

Tartary buckwheat (Fagopyrum tataricum Gaertn.) contains high concentration of flavonoids, which are mainly represented by rutin, anthocyanins, and proanthocyanidins. WD40 transcription factors (TFs) play significant roles in the transcriptional regulation of the anthocyanin biosynthetic pathway. In this study, a WD40-repeat protein gene (designated as FtWD40) was identified and characterized from tartary buckwheat. The bioinformatics analyses showed that the putative FtWD40 shared a high level of similarity with MtWD40-1, which is a positive regulator in anthocyanin biosynthesis of Medicago truncatula. The yeast one-hybrid assay indicated that FtWD40 had transcriptional activation activities. During florescence, FtWD40 was highly expressed in flowers compared to other organs. Furthermore, its overexpression in tobacco resulted in a remarkable deepening of petal pigmentation in flowers due to a significant increase in anthocyanins accumulation. Meanwhile, the expression of dihydroflavonol-4-reductase (DFR) and anthocyanin synthase (ANS) was upregulated 1.95- and 1.56-fold, respectively. In contrast, the expression level was lower for flavonol synthase (FLS) in the transgenic lines. To the best of our knowledge, this is the first functional characterization of a WD40 transcription factor (FtWD40) from tartary buckwheat that controls the anthocyanin pathway.
机译:Tartary Buckwheat(Fagopyrum Tataricum Gaertn。)含有高浓度的黄酮类化合物,其主要由芦丁,花青素和原花青素代表。 WD40转录因子(TFS)在花青素生物合成途径的转录调节中起显着作用。在该研究中,鉴定了WD40重复蛋白基因(指定为FTWD40),并用季后荞麦特征。生物信息学分析表明,推定的FTWD40与MTWD40-1共享高水平的相似性,这是Medicago Truncatula的花青素生物合成中的阳性调节因子。酵母单杂交检测表明,FTWD40具有转录激活活动。在繁殖期间,与其他器官相比,FTWD40以花朵高度表达。此外,由于花青素的积累显着增加,其在烟草中的过度表达导致花瓣色素沉积的卓越深化。同时,二氢烷醇-4-还原酶(DFR)和花青素合酶(ANS)的表达分别上调1.95-1.56倍。相反,转基因系中黄酮合酶(FL)的表达水平降低。据我们所知,这是从控制花青素途径的季节荞麦的WD40转录因子(FTWD40)的第一次功能表征。

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