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The identification of a vacuolar iron transporter involved in the blue coloration of cornflower petals

机译:鉴定了矢车菊花瓣蓝色着色的液泡铁转运蛋白

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摘要

The blue petal color of the cornflower (Centaurea cyanus) is caused by protocyanin, a kind of metalloanthocyanin, which is a self-assembled supramolecular metal complex pigment. Protocyanin is composed of six molecules of anthocyanin, six molecules of flavone, one ferric ion, and one magnesium ion. The ferric ion is essential for blue color development. Here, we identify the vacuolar iron transporter gene (CcVIT) from the blue petals of C cyanus and its function is identified and characterized. The CcVIT transcript was observed only in the petals. Its amino acid sequence is highly homologous to the Arabidopsis thaliana (AtVIT1) and Tulipa gesneriana (TgVit1) vacuolar iron transporters. Heterologous expression of the CcVIT gene in yeast indicated that the corresponding gene product transports ferrous ion into vacuoles. Analysis of purple mutant-line petals clarified that the anthocyanin and flavone components were the same as those found in plants with blue petals, but the amount of iron ions in the colored cells decreased, and consequently the amount of blue protocyanin was reduced. The CcVIT gene was expressed even in purple mutant petals, however, an amino acid substitution (A236E) occurred in that case. This change in the CcVIT gene sequence also resulted in loss of iron transport activity. The CcVIT protein thus plays a critical role in the blue coloration of cornflower petals
机译:矢车菊(Centaurea cyanus)的蓝色花瓣颜色是由原花青素引起的,原花青素是一种金属花青素,是一种自组装的超分子金属络合物颜料。原花青素由六分子的花青素,六分子的黄酮,一个铁离子和一个镁离子组成。铁离子对于蓝色显影至关重要。在这里,我们从蓝花的蓝色花瓣中鉴定出液泡铁转运蛋白基因(CcVIT),并对其功能进行了鉴定和表征。 CcVIT成绩单仅在花瓣中观察到。它的氨基酸序列与拟南芥(AtVIT1)和郁金香(TgVit1)液泡铁转运蛋白高度同源。 CcVIT基因在酵母中的异源表达表明相应的基因产物将亚铁离子转运到液泡中。对紫色突变体花瓣的分析表明,花色苷和黄酮的成分与带有蓝色花瓣的植物中的相同,但是有色细胞中铁离子的含量减少,因此蓝色原花青素的含量减少。 CcVIT基因即使在紫色突变花瓣中也表达,但是在这种情况下发生了氨基酸置换(A236E)。 CcVIT基因序列的这种变化也导致铁转运活性的丧失。因此,CcVIT蛋白在矢车菊的蓝色着色中起关键作用

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