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首页> 外文期刊>Plant Biotechnology >Flower color modification of gentian plants by RNAi-mediated gene silencing
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Flower color modification of gentian plants by RNAi-mediated gene silencing

机译:RNAi介导的基因沉默修饰龙胆植物的花色

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RNA interference (RNAi) is an efficient and powerful technique for gene silencing compared with antisense and sense suppression. Here we report adaptation of RNAi technology to modify flower colors in gentian, targeted for suppression of three anthocyanin biosynthetic genes; chalcone synthase (CHS), anthocyanidin synthase (ANS) and flavonoid 3',5'-hydroxylase (F3'5'H). The petals of transgenic gentian plants with a suppressed CHS gene exhibited pure white to pale-blue color, while those with a suppressed ANS gene showed only pale-blue. The suppression of the F3'5'H gene decreased delphinidin derivatives and increased cyanidin derivatives, and led to magenta flower colors. Northern blot analyses confirmed that all transgenic gentian plants showing typical phenotypes had strongly suppressed transcriptions of the targeted genes, corresponding with a change in anthocyanin accumulation and composition in their petals. Some rolCpro-CHSir transgenic gentians exhibited bicolor phenotypes with reduced anthocyanin accumulation along the vascular bundles. These data demonstrated that the suppression of anthocyanin biosynthetic genes by RNAi was successfully applied to gentian plants to change flower color, and this could be useful for designing novel flower color and patterns. Transgenic gentian plants produced in this study might be utilized as elite materials in the breeding of gentian plants in the near future.
机译:与反义和有义抑制相比,RNA干扰(RNAi)是一种有效而强大的基因沉默技术。在这里,我们报告了RNAi技术的应用,以修改龙胆中的花色,目标是抑制三种花色苷生物合成基因;查尔酮合酶(CHS),花青素合酶(ANS)和类黄酮3',5'-羟化酶(F3'5'H)。 CHS基因被抑制的转基因龙胆植物的花瓣表现出纯白色至淡蓝色,而ANS基因被抑制的植物的花瓣仅表现出淡蓝色。 F3'5'H基因的抑制减少了delphinidin衍生物和cyanidin衍生物,并导致了洋红色的花色。 Northern印迹分析证实,所有显示出典型表型的转基因龙胆植物都强烈抑制了目标基因的转录,这与花色苷在其花瓣中的积累和组成发生了变化。一些rolCpro-CHSir转基因龙胆表现出双色表型,沿血管束的花色苷积累减少。这些数据表明,RNAi对花色苷生物合成基因的抑制已成功地应用于龙胆植物以改变花的颜色,这对于设计新颖的花的颜色和样式可能有用。在不久的将来,这项研究中产生的转基因龙胆植物可以用作龙胆植物育种的优良材料。

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