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首页> 外文期刊>Molecular Breeding >Overexpression of theRaphanus sativus RsMYB1using the flower-specific promoter (InMYB1) enhances anthocyanin accumulation in flowers of transgenic Petunia and their hybrids
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Overexpression of theRaphanus sativus RsMYB1using the flower-specific promoter (InMYB1) enhances anthocyanin accumulation in flowers of transgenic Petunia and their hybrids

机译:Theraphanus sativus rsmyb1的过度表达rsmyb1 using花特异性启动子(Inmyb1)增强了转基因培养皿和杂种花的花青素积累

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摘要

The generation of transgenic floricultural crops for flower color modification requires a transgene that enhances anthocyanin accumulation and a flower-specific promoter with stable expression throughout flowering stage. Here, the anthocyanin regulatory R2R3-MYB transcription factor (TF)RsMYB1was placed under the control of the stable flower-specific promoter (InMYB1) to enhance anthocyanin accumulation inPetunia hybridacv. Mirage Rose.RsMYB1overexpression with the flower-specific promoter enhanced anthocyanin accumulation only in floral tissues via the upregulation of key anthocyanin biosynthetic genes. The target gene introgression to anotherPetunia hybridacv. White Hawaiian lacking anthocyanins also changed the flower color from white to intense pink in the F(1)hybrids by upregulating the biosynthetic genes. Target gene inheritance in the F(2)hybrids also produced diverse flower colors, redder than those of non-inheritance F(2)hybrids.RsMYB1overexpression using the flower-specific promoter (InMYB1) enhanced anthocyanin levels in the petals of transgenic Petunia and its related hybrids. Thus, this system can be used as a promising tool for intensifying the flower color of other commercially important floricultural crops. In addition, the obtained F(2)MW11 and F(2)MW12 lines are potential commercial cultivars for the floriculture and landscape industries due to its attractive flower color pattern.
机译:用于花色修饰的转基因花卉作物的产生需要一种转基因,其增强了在开花阶段的稳定表达的花青素积累和花特异性启动子。这里,花青素调节R2R3-MYB转录因子(TF)RSMYB1Was置于稳定的花特异性启动子(INMYB1)的控制下,以增强花青素累积内培养杂交汞。 Mirage Rose.Rsmyb1overcrexpression与花特异性启动子通过关键的花青素生物合成基因的上调增强了花组织中的花青素积累。靶基因腹胀到Olexingpetunia hybridacv。缺乏花青素的白夏威夷也通过上调生物合成基因来改变F(1)杂种中的白色粉红色。 F(2)杂种中的靶基因遗传也产生了不同的花色,而不是非遗传F(2)杂交种的多种花色。使用花特异性启动子(INMYB1)增强转基因培养皿的花瓣中的花青素水平,其相关杂种。因此,该系统可以用作加强其他商业上重要的花卉作物的花色的有希望的工具。此外,所获得的F(2)MW11和F(2)MW12系列是粮食和景观产业的潜在商业品种,由于其具有吸引力的花色图案。

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