首页> 美国卫生研究院文献>Genes >Color Intensity of the Red-Fleshed Berry Phenotype of Vitis vinifera Teinturier Grapes Varies Due to a 408 bp Duplication in the Promoter of VvmybA1
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Color Intensity of the Red-Fleshed Berry Phenotype of Vitis vinifera Teinturier Grapes Varies Due to a 408 bp Duplication in the Promoter of VvmybA1

机译:由于VVMYBA1的启动子中的408bp重复葡萄核浆果葡萄葡萄牙蛋白酶的红色肉体表型的颜色强度因vvmyba1的启动子而异

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摘要

Grapevine ( ) teinturier cultivars are characterized by their typical reddish leaves and red-fleshed berries due to ectopic anthocyanin formation. Wines of these varieties have economic importance as they can be used for blending to enhance the color of red wines. The unique and heritable mutation has been known for a long time but the underlying genetic mechanism still is not yet understood. Here we describe the association of the red-fleshed berry phenotype with a 408 bp repetitive DNA element in the promoter of the gene (grapevine color enhancer, GCE). Three different clones of ‘Teinturier’ were discovered with two, three and five allelic GCE repeats ( , and ). All three clones are periclinal chimeras; these clones share the same L1 layer, but have distinct L2 layers with different quantities of GCE repeats. Quantitative real time PCR and HPLC analysis of leaf and berry samples showed that the GCE repeat number strongly correlates with an increase of the expression of itself and the gene regulated by it and the anthocyanin content. A model is proposed based on autoregulation of to explain the red phenotype which is similar to that of red-fleshed apples. This study presents results about the generation and modes of action of three alleles responsible for the red-fleshed berry phenotype of teinturier grapevines.
机译:Grapevine()Teinturier品种的特点是由于其典型的红叶和由于异位的花青素形成而具有红色肉体浆果。这些品种的葡萄酒具有经济重视,因为它们可用于混合以增强红葡萄酒的颜色。在很长一段时间内已知独特而遗传的突变,但仍尚未理解潜在的遗传机制。在这里,我们描述了红肉浆果表型与基因启动子中的408bp重复DNA元素(葡萄颜色增强剂,GCE)的关联。用两种,三个和五个等位基因GCE重复(和)发现了三个不同的'Teinturier'克隆。所有三个克隆都是蠕虫嵌合体;这些克隆共享相同的L1层,但具有不同数量的GCE重复的不同L2层。定量实时PCR和浆果样品的HPLC分析表明,GCE重复数与本身表达的增加和由其调节的基因的增加强烈关联,以及花青素含量。提出了一种基于自动调节来解释类似于红肉苹果的红色表型的模型。本研究提出了对Teinturier葡萄藤红肉浆果表型负责的三位等位基因的产生和作用方式。

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