首页> 外文期刊>Plant and Cell Physiology >Alternative Expression of Vacuolar Iron Transporter and Ferritin Genes Leads to Blue/Purple Coloration of Flowers in Tulipn cv. ‘Murasakizuisho’
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Alternative Expression of Vacuolar Iron Transporter and Ferritin Genes Leads to Blue/Purple Coloration of Flowers in Tulipn cv. ‘Murasakizuisho’

机译:液泡铁转运蛋白和铁蛋白基因的另类表达导致郁金香cv中花的蓝色/紫色着色。 ‘Murasakizuisho’

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Flowers of tulip cv. ‘Murasakizuisho’ have a purple perianth except for the bottom region, which is blue in color even though it has the same anthocyanin, delphinidin 3-O-rutinoside, as the entire perianth. The development of the blue coloration in the perianth bottom is due to complexation by anthocyanin, flavonol and iron (Fe), as well as a vacuolar iron transporter, TgVit1. Although transient expression of TgVit1 in the purple cells led to a color change to light blue, the coloration of the transformed cells did not coincide with the dark blue color of the cells of the perianth bottom. We thought that another factor is required for the blue coloration of the cells of perianth bottom. To examine the effect of ferritin (FER), an Fe storage protein, on blue color development, we cloned an FER gene (TgFER1) and performed expression analyses. TgFER1 transcripts were found in the cells located in the upper region of the petals along with purple color development by anthocyanin and were not found in the blue cells of the perianth bottom. This gene expression is in contrast to that of TgVit1, expressed only in the cells of the perianth bottom. Co-expression of TgVIT1 and TgFER-RNAi, constructed for suppressing endogenous TgFER1 by RNA interference (RNAi), changed the purple petal cells to a dark blue color similar to that of the natural perianth bottom. These results strongly suggest that TgVit1 expression and TgFER1 suppression are critical for the development of blue color in the perianth bottom.
机译:郁金香简历的花。 “ Murasakizuisho”的花被膜除底部区域外均呈紫色,即使整个花被膜都具有相同的花色苷,花青素3-O-芸香糖苷,其花色也是蓝色的。花被底部的蓝色的发展是由于花青素,黄酮醇和铁(Fe)以及液泡铁转运体TgVit1的络合所致。尽管TgVit1在紫色细胞中的瞬时表达导致颜色变为浅蓝色,但转化细胞的颜色与花被底部细胞的深蓝色不一致。我们认为花被素底部细胞的蓝色需要另一个因素。为了检查铁蛋白(Fe存储蛋白)对蓝色显影的作用,我们克隆了一个FER基因(TgFER1)并进行了表达分析。在花的上部区域的细胞中发现了TgFER1转录本,同时花青素产生了紫色,而在花被底部的蓝色细胞中未发现TgFER1转录物。该基因表达与仅在花被底部细胞中表达的TgVit1相反。 TgVIT1和TgFER-RNAi的共表达可通过RNA干扰(RNAi)抑制内源性TgFER1,将紫色的花瓣细胞变成深蓝色,类似于天然的花被底部。这些结果强烈表明,TgVit1的表达和TgFER1的抑制对于在花被底部出现蓝色至关重要。

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