Engineered native pathways for high kaempferol and caffeoylquinate production in potato

生物 苯丙素 黄酮醇 山奈酚 绿原酸 生物化学 转基因 茉莉酸甲酯 花青素 基因 查尔酮合酶 类黄酮 植物 生物合成 抗氧化剂
作者
Caius M. Rommens,Craig Richael,Yan Hua,Duroy A. Navarre,Jingsong Ye,Michele Krucker,Kathy Swords
出处
期刊:Plant Biotechnology Journal [Wiley]
卷期号:6 (9): 870-886 被引量:82
标识
DOI:10.1111/j.1467-7652.2008.00362.x
摘要

Flavonols and caffeoylquinates represent important groups of phenolic antioxidants with health-promoting activities. The genetic potential of potato (Solanum tuberosum) to produce high levels of these dietary compounds has not been realized in currently available commodity varieties. In this article, it is demonstrated that tuber-specific expression of the native and slightly modified MYB transcription factor gene StMtf1(M) activates the phenylpropanoid biosynthetic pathway. Compared with untransformed controls, transgenic tubers contained fourfold increased levels of caffeoylquinates, including chlorogenic acid (CGA) (1.80 mg/g dry weight), whilst also accumulating various flavonols and anthocyanins. Subsequent impairment of anthocyanin biosynthesis through silencing of the flavonoid-3',5'-hydroxylase (F3'5'h) gene resulted in the accumulation of kaempferol-rut (KAR) to levels that were approximately 100-fold higher than in controls (0.12 mg/g dry weight). The biochemical changes were associated with increased expression of both the CGA biosynthetic hydroxycinnamoyl-CoA quinate hydroxycinnamoyl transferase (Hqt) gene and the upstream chorismate mutase (Cm) and prephenate dehydratase (Pdh) genes. Field trials indicated that transgenic lines produced similar tuber yields to the original potato variety Bintje. Processed products of these lines retained most of their phenylpropanoids and were indistinguishable from untransformed controls in texture and taste.

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