Jung W, Yu O, Lau S M, O'Keefe D P, Odell J, Fader G, McGonigle B
Agricultural Biotechnology, The Dupont Company, Experimental Station; Wilmington, DE 19880-0402, USA.
Nat Biotechnol. 2000 Feb;18(2):208-12. doi: 10.1038/72671.
Isoflavones have drawn much attention because of their benefits to human health. These compounds, which are produced almost exclusively in legumes, have natural roles in plant defense and root nodulation. Isoflavone synthase catalyzes the first committed step of isoflavone biosynthesis, a branch of the phenylpropanoid pathway. To identify the gene encoding this enzyme, we used a yeast expression assay to screen soybean ESTs encoding cytochrome P450 proteins. We identified two soybean genes encoding isoflavone synthase, and used them to isolate homologous genes from other leguminous species including red clover, white clover, hairy vetch, mung bean, alfalfa, lentil, snow pea, and lupine, as well as from the nonleguminous sugarbeet. We expressed soybean isoflavone synthase in Arabidopsis thaliana, which led to production of the isoflavone genistein in this nonlegume plant. Identification of the isoflavone synthase gene should allow manipulation of the phenylpropanoid pathway for agronomic and nutritional purposes.
异黄酮因其对人体健康有益而备受关注。这些化合物几乎仅在豆科植物中产生,在植物防御和根瘤形成中发挥天然作用。异黄酮合酶催化异黄酮生物合成的第一步,这是苯丙烷类途径的一个分支。为了鉴定编码该酶的基因,我们使用酵母表达试验筛选编码细胞色素P450蛋白的大豆EST。我们鉴定出两个编码异黄酮合酶的大豆基因,并利用它们从包括红三叶草、白三叶草、毛苕子、绿豆、苜蓿、小扁豆、荷兰豆和羽扇豆在内的其他豆科物种以及非豆科甜菜中分离同源基因。我们在拟南芥中表达大豆异黄酮合酶,这导致这种非豆科植物中产生了异黄酮染料木黄酮。异黄酮合酶基因的鉴定应该能够为了农艺和营养目的而对苯丙烷类途径进行调控。