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首页> 外文期刊>Scientia horticulturae >The ROSEA1 and DELILA transcription factors control anthocyanin biosynthesis in Nicotiana benthamiana and Lilium flowers
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The ROSEA1 and DELILA transcription factors control anthocyanin biosynthesis in Nicotiana benthamiana and Lilium flowers

机译:Rosea1和Delila转录因子在尼累累南·宾夕法尼亚州尼尼沙米亚纳和百合花中控制花青素生物合成

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The activity of anthocyanin biosynthesis genes is regulated at the transcriptional level, thus manipulation of transcription factors (TFs) is an ideal strategy to alter the expression of multiple target genes. In this study, we investigated the effect of introducing ROSEA1 (ROS1, a MYB-type) and DELILA (DEL, a bHLH-type) TFs from snapdragon under control of a flower specific promoter, Floral Binding Protein 1 (FBP1) from petunia into Nicotiana benthamiana flowers and Lilium tepals. The usefulness of the FBP1 promoter was demonstrated by the generation of purplish flowers in otherwise normal-growing plants of N. bentharniana, while the expression by the 35S promoter led to the development of stunted plants with anthocyanins in all parts. N. benthamiana was successfully transformed by ROS1 alone and by a combination of ROS1 + DEL. The observed accumulation of delphinidin corresponded to the expression of NbCHS, NbF3H, NbDFR and NbANS. The effect of ROS1 + DEL on Lilium flower colour was investigated using agroinflltration. A higher cyanidin accumulation was observed in tepals of the Oriental hybrid lily cv. 'Perth', resulting in deeper pink colouration at the infiltrated area. Nevertheless, the introduction of ROS1 + DEL did not produce any phenotypic changes to the white-flowered L longiflorwn cv. 'Lincoln' and the white Oriental hybrid lily cv. 'Rialto' due to other deficiencies in their anthocyanin biosynthetic pathway. Co-expression of ROS1 + DEL under control of the FBP1 promoter together with active structural anthocyanin biosynthetic genes can result in modification of Lillian flower colour.
机译:在转录水平下调节花青素生物合成基因的活性,从而操纵转录因子(TFS)是改变多种靶基因表达的理想策略。在这项研究中,我们研究了将Rosea1(ROS1,MYB型)和Delila(Del,A BHLH型)TFS从Snapdragon从培养物(FBP1)的控制中引入Snapdragon中的效果尼古利亚娜·宾夕法尼亚州花和百合毛皮。通过在N.Nentharniana的其他正常生长的植物中产生紫色花卉的紫色花卉的用途证明了FBP1启动子的有用性,而35S启动子的表达导致在所有零件中具有花青素的发育不良植物的发育。 N. Benthamiana单独通过ROS1和ROS1 + Del的组合成功转型。观察到的Delphinidin积累对应于NBCHS,NBF3H,NBDFR和NBAns的表达。使用Agroinflltration研究了ROS1 + Del对百合花颜色的影响。在东方杂交百合CV的纹体中观察到更高的Cyanidin积累。 '珀斯',导致渗透区域深入着色。然而,ROS1 + DEL的引入没有对白花L Longiflorwn CV产生任何表型变化。 '林肯'和白色东方杂交百合CV。由于其花青素生物合成途径的其他缺陷,“Rialto”。 ROS1 + Del在FBP1启动子的控制下与活性结构的花青素生物合成基因的共同表达可导致Lillian花的颜色改变。

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