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首页> 外文期刊>Scientia horticulturae >Comparison of anthocyanin components, expression of anthocyanin biosynthetic structural genes, and TfF3 ' H1 sequences between Tulipa fosteriana 'Albert heijn' and its reddish sport
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Comparison of anthocyanin components, expression of anthocyanin biosynthetic structural genes, and TfF3 ' H1 sequences between Tulipa fosteriana 'Albert heijn' and its reddish sport

机译:花郁金香'Albert heijn'及其红色运动花色苷成分,花色苷生物合成结构基因表达和TfF3'H1序列的比较。

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摘要

A reddish flower tulip sport Tulipa fosteriana 'SN09' was bred from a pink flower cultivar T. fosteriana 'Albert heijn' (AH). To investigate the molecular basis underlying this color difference, SN09 and AH were compared using biochemical and molecular approaches. Ultra performance liquid chromatography (UPLC) profiles revealed that major cyanidin 3-rutinoside and minor pelargonidin 3-rutinoside were accumulated in the petals of AH, whereas major pelargonidin anthocyanins (pelargonidin 3-acetylrutinoside and pelargonidin 3-rutinoside) and minor cyanidin 3-glucoside were detected in SN09. The total anthocyanin content in petals of AH and SN09 were not significantly different at Stage 4, and correlated with the expression patterns of dihydroflavonol 4-reductase (TfDFR1) and anthocyanidin synthase (TfANS1). In addition, more transcripts of chalcone synthase (TfCHS1), chalcone isomerase (TfCHI2), and flavanone 3-hydroxylase (TfF3H1) contributed to higher accumulation of flavone and flavonol in SNOB than in AH. The transcription of flavonoid 3'-hydroxylase (TfF3'H1) was significantly lower in SN09 than in AH throughout flower development. Accordingly, the nucleotide sequences of TfF3'H1 in AH and SN09 were compared. Results showed that the deduced amino acids of TfF3'H1 in AH and SN09 were not different, but an extra fragment (255 bp) was found in the promoter of 7:TfF3'H1 in SN09. Consequently, the promoters of TfF3'H1 in AH and SN09 were isolated, fused with the beta-glucuronidase (GUS), and then transformed to tobacco and Arabidopsis thaliana. Results demonstrated that the GUS activity in Arabidopsis with TfF3'H1 promoter from SN09 was only 5.4% of that from AH, suggesting that the insert mutation in the TfF3'H1 promoter hampered the accumulation of cyanidin anthocyanins in SNOB through the reduction of TfF3'H1 transcription
机译:一种红色的郁金香花运动郁金香郁金香'SN09'是从粉色的花朵栽培种'弗洛里亚娜'Albert heijn'(AH)繁殖而来的。为了研究这种颜色差异的分子基础,使用生化和分子方法比较了SN09和AH。超高效液相色谱(UPLC)谱图显示,主要的花青素3-芸香苷和次要的pelargonidin 3-芸香苷在AH的花瓣中积累,而主要的pelargonidin的花色苷(pelargonidin 3-乙酰芸香糖苷和pelargonidin 3-芸香苷)和次要的cyanidin 3-葡糖苷在SN09中被检测到。 AH和SN09花瓣中的总花色素苷含量在第4阶段没有显着差异,并且与二氢黄酮醇4-还原酶(TfDFR1)和花色素苷合酶(TfANS1)的表达模式相关。此外,与AH中相比,更多的查尔酮合酶(TfCHS1),查尔酮异构酶(TfCHI2)和黄烷酮3-羟化酶(TfF3H1)的转录本有助于SNOB中黄酮和黄酮醇的积累。在整个花朵发育过程中,SN09中的类黄酮3'-羟化酶(TfF3'H1)的转录均显着低于AH。因此,比较了AH和SN09中的TfF3'H1的核苷酸序列。结果表明,AH和SN09中TfF3'H1的推导氨基酸没有差异,但SN09中7:TfF3'H1的启动子中发现了一个额外的片段(255 bp)。因此,分离了AH和SN09中TfF3'H1的启动子,与β-葡糖醛酸糖苷酶(GUS)融合,然后转化为烟草和拟南芥。结果表明,带有来自SN09的TfF3'H1启动子的拟南芥中的GUS活性仅为来自AH的拟南芥中的GUS活性,这表明TfF3'H1启动子的插入突变通过减少TfF3'H1抑制了SNOB中花青素花色苷的积累。抄写

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