Shimada Setsuko, Takahashi Kana, Sato Yuka, Sakuta Masaaki
Department of Biology, Ochanomizu University, Tokyo, 112-8610 Japan.
Plant Cell Physiol. 2004 Sep;45(9):1290-8. doi: 10.1093/pcp/pch156.
Two types of red pigment, anthocyanins and betacyanins, never occur together in the same plant. Although anthocyanins are widely distributed in higher plants as flower and fruit pigments, betacyanins have replaced anthocyanins in the Caryophyllales. We isolated cDNAs encoding dihydroflavonol 4-reductase (DFR), which is the first enzyme committed to anthocyanin biosynthesis in the flavonoid pathway, from Spinacia oleracea and Phytolacca americana, plants that belong to the Caryophyllales. The deduced amino acid sequence of Spinacia DFR and Phytolacca DFR revealed a high degree of homology with DFRs of anthocyanin-producing plants. The DFR of carnation, an exception in the Caryophyllales that synthesizes anthocyanin, showed the highest level of identity. In the phylogenetic tree, Spinacia DFR and Phytolacca DFR clustered with the DFRs of anthocyanin-synthesizing dicots. Recombinant Spinacia and Phytolacca DFRs expressed in Escherichia coli convert dihydroflavonol to leucoanthocyanidin. The expression and function of DFR in spinach and pokeweed are discussed in relation to the molecular evolution of red pigment biosynthesis in higher plants.
两种红色色素,即花青素和甜菜色素,从未在同一植物中同时出现。尽管花青素作为花和果实色素在高等植物中广泛分布,但在石竹目植物中,甜菜色素已取代了花青素。我们从属于石竹目的菠菜和美洲商陆中分离出了编码二氢黄酮醇4-还原酶(DFR)的cDNA,DFR是类黄酮途径中花青素生物合成的首个关键酶。菠菜DFR和美洲商陆DFR推导的氨基酸序列与产生花青素的植物的DFR具有高度同源性。石竹目中合成花青素的例外植物康乃馨的DFR显示出最高的同一性水平。在系统发育树中,菠菜DFR和美洲商陆DFR与合成花青素的双子叶植物的DFR聚在一起。在大肠杆菌中表达的重组菠菜和美洲商陆DFR将二氢黄酮醇转化为无色花青素。本文结合高等植物红色色素生物合成的分子进化,讨论了DFR在菠菜和商陆中的表达及功能。