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Tyrosine Hydroxylation in Betalain Pigment Biosynthesis Is Performed by Cytochrome P450 Enzymes in Beets (Beta vulgaris)

机译:甜菜碱(Beta vulgaris)中的细胞色素P450酶进行甜菜碱色素生物合成中的酪氨酸羟化反应。

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摘要

Yellow and red-violet betalain plant pigments are restricted to several families in the order Caryophyllales, where betacyanins play analogous biological roles to anthocyanins. The initial step in betalain biosynthesis is the hydroxylation of tyrosine to form L-DOPA. Using gene expression experiments in beets, yeast, and Arabidopsis, along with HPLC/MS analysis, the present study shows that two novel cytochrome P450 (CYP450) enzymes, CYP76AD6 and CYP76AD5, and the previously described CYP76AD1 can perform this initial step. Co-expressing these CYP450s with DOPA 4,5-dioxygenase in yeast, and overexpression of these CYP450s in yellow beets show that CYP76AD1 efficiently uses L-DOPA leading to red betacyanins while CYP76AD6 and CYP76AD5 lack this activity. Furthermore, CYP76AD1 can complement yellow beetroots to red while CYP76AD6 and CYP76AD5 cannot. Therefore CYP76AD1 uniquely performs the beet R locus function and beets appear to be genetically redundant for tyrosine hydroxylation. These new functional data and ancestral character state reconstructions indicate that tyrosine hydroxylation alone was the most likely ancestral function of the CYP76AD alpha and beta groups and the ability to convert L-DOPA to cyclo-DOPA evolved later in the alpha group.
机译:黄色和红色紫色甜菜碱植物色素按叶绿素顺序限制在几个家族中,其中甜菊苷与花青素具有相似的生物学作用。 Betalain生物合成的第一步是酪氨酸羟基化形成L-DOPA。使用甜菜,酵母和拟南芥中的基因表达实验,以及HPLC / MS分析,本研究表明两种新型细胞色素P450(CYP450)酶CYP76AD6和CYP76AD5,以及先前描述的CYP76AD1可以执行此初始步骤。在酵母中将这些CYP450与DOPA 4,5-双加氧酶共表达,并在黄色甜菜中过量表达这些CYP450,表明CYP76AD1有效利用L-DOPA导致产生红色的花青素,而CYP76AD6和CYP76AD5则缺乏这种活性。此外,CYP76AD1可以使黄色甜菜根补充红色,而CYP76AD6和CYP76AD5不能。因此CYP76AD1独特地执行甜菜R基因座功能,甜菜似乎是酪氨酸羟基化的遗传冗余。这些新的功能数据和祖先状态重建表明,酪氨酸羟化是CYP76ADα和β组最可能的祖先功能,而将L-DOPA转化为环DOPA的能力在α组中逐渐发展。

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