首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Enhancing Flower Color through Simultaneous Expression of the B-peru and mPAP1 Transcription Factors under Control of a Flower-Specific Promoter
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Enhancing Flower Color through Simultaneous Expression of the B-peru and mPAP1 Transcription Factors under Control of a Flower-Specific Promoter

机译:通过在花特定启动子的控制下同时表达B-peru和mPAP1转录因子来增强花的颜色

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摘要

Flower color is a main target for flower breeding. A transgenic approach for flower color modification requires a transgene and a flower-specific promoter. Here, we expressed the B-peru gene encoding a basic helix loop helix (bHLH) transcription factor (TF) together with the mPAP1 gene encoding an R2R3 MYB TF to enhance flower color in tobacco (Nicotiana tabacum L.), using the tobacco anthocyanidin synthase (ANS) promoter (PANS) to drive flower-specific expression. The transgenic tobacco plants grew normally and produced either dark pink (PANSBP_DP) or dark red (PANSBP_DR) flowers. Quantitative real time polymerase chain reaction (qPCR) revealed that the expression of five structural genes in the flavonoid biosynthetic pathway increased significantly in both PANSBP_DP and PANSBP_DR lines, compared with the non-transformed (NT) control. Interestingly, the expression of two regulatory genes constituting the active MYB-bHLH-WD40 repeat (WDR) (MBW) complex decreased significantly in the PANSBP_DR plants but not in the PANSBP_DP plants. Total flavonol and anthocyanin abundance correlated with flower color, with an increase of 1.6–43.2 fold in the PANSBP_DP plants and 2.0–124.2 fold in the PANSBP_DR plants. Our results indicate that combinatorial expression of B-peru and mPAP1 genes under control of the ANS promoter can be a useful strategy for intensifying flower color without growth retardation>.
机译:花的颜色是花卉育种的主要目标。用于花色修饰的转基因方法需要转基因和花特异性启动子。在这里,我们使用烟草花青素表达了编码基本螺旋环螺旋(bHLH)转录因子(TF)的B-peru基因以及编码R2R3 MYB TF的mPAP1基因,以增强烟草(Nicotiana tabacum L.)的花色。合酶(ANS)启动子(PANS)驱动花特异性表达。转基因烟草植物正常生长,并产生深粉红色(PANSBP_DP)或深红色(PANSBP_DR)花。实时定量聚合酶链反应(qPCR)显示,与未转化(NT)对照相比,在PANSBP_DP和PANSBP_DR品系中,类黄酮生物合成途径中五个结构基因的表达均显着增加。有趣的是,在PANSBP_DR植物中,构成活性MYB-bHLH-WD40重复序列(WDR)(MBW)复合物的两个调控基因的表达显着下降,而在PANSBP_DP植物中则没有。总黄酮醇和花青素的丰度与花色相关,在PANSBP_DP植物中增加了1.6–43.2倍,在PANSBP_DR植物中增加了2.0–124.2倍。我们的结果表明,在ANS启动子控制下,B-peru和mPAP1基因的组合表达可能是增强花色而无生长迟缓的有用策略。

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