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A chimeric repressor of petunia PH4 R2R3-MYB family transcription factor generates margined flowers in torenia

机译:矮牵牛PH4 R2R3-MYB家族转录因子的嵌合阻遏物在小to中产生边缘花

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摘要

The development of new phenotypes is key to the commercial development of the main floricultural species and cultivars. Important new phenotypes include features such as multiple-flowers, color variations, increased flower size, new petal shapes, variegation and distinctive petal margin colourations. Although their commercial use is not yet common, the transgenic technologies provide a potentially rapid means of generating interesting new phenotypes. In this report, we construct 5 vectors which we expected to change the color of the flower anthocyanins, from purple to blue, regulating vacuolar pH. When these constructs were transformed into purple torenia, we unexpectedly recovered some genotypes having slightly margined petals. These transgenic linesexpressed a chimeric repressor of the petunia PhPH4 gene under the control of Cauliflower mosaic virus 35 S RNA promoter. PhPH4 is an R2R3-type MYB transcription factor. The transgenic lines lacked pigmentation in the petal margin cells both on the adaxial and abaxial surfaces. Expressions of Flavanone 3-hydroxylase (F3H), Flavonoid 3'-hydroxylase (F3'H)and Flavonoid 3'5'-hydroxylase (F3'5'H) genes were reduced in the margins of these transgenic lines, suggesting an inhibitory effect of PhPH4 repressoron anthocyanin synthesis.
机译:新表型的发展是主要花卉种和栽培品种商业化发展的关键。重要的新表型包括多花,颜色变化,花朵尺寸增加,新的花瓣形状,杂色和独特的花瓣边缘颜色等特征。尽管它们的商业用途尚不普遍,但转基因技术提供了一种潜在的快速方式来产生有趣的新表型。在本报告中,我们构建了5个载体,我们期望它们可以改变花色花色苷的颜色,从紫色变为蓝色,从而调节液泡的pH。当这些构建体被转化为紫色鸟笼时,我们意外地发现了一些花瓣略微边缘化的基因型。这些转基因株系在花椰菜花叶病毒35 S RNA启动子的控制下表达了矮牵牛PhPH4基因的嵌合阻遏物。 PhPH4是R2R3型MYB转录因子。转基因品系在花瓣的边缘和背面都缺乏色素沉着。在这些转基因品系的边缘,黄烷酮3-羟化酶(F3H),类黄酮3'-羟化酶(F3'H)和类黄酮3'5'-羟化酶(F3'5'H)基因的表达降低,表明有抑制作用PhPH4阻遏物对花色苷合成的影响。

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