Miyahara Taira, Hamada Arisa, Okamoto Mitsutoshi, Hirose Yukio, Sakaguchi Kimitoshi, Hatano Shoji, Ozeki Yoshihiro
Department of Biotechnology, Tokyo University of Agriculture and Technology, Koganei, Tokyo 184-8588, Japan.
Department of Biotechnology, Tokyo University of Agriculture and Technology, Koganei, Tokyo 184-8588, Japan.
J Plant Physiol. 2016 Sep 1;202:92-6. doi: 10.1016/j.jplph.2016.07.013. Epub 2016 Jul 25.
The flowers of delphinium cultivars owe their coloration to anthocyanins such as delphinidin or pelargonidin derivatives. To date, no delphinium cultivars have been found with red flowers due to the presence of cyanidin derivatives. This suggests that delphiniums do not have cyanidin biosynthesis ability because of the loss of function of flavonoid 3' hydroxylase (F3'H). Here, we show that the wild delphinium species Delphinium zalil (synonym semibarbatum) can accumulate quercetin 3-glucosides in its sepals, presumably through F3'H activity. We isolated F3'H cDNA from D. zalil (DzF3'H) and produced a recombinant enzyme from a yeast transformant. The recombinant DzF3'H protein could convert naringenin, apigenin, dihydrokaempferol and kaempferol to eriodictyol, luteolin, dihydroquercetin and quercetin, respectively. An expression analysis confirmed that blue flowered D. grandiflorum does not express F3'H, and also showed that flavonoid 3',5'-hydroxylase and anthocyanidin synthase do not function in D. zalil sepals. DzF3'H can act as a flavonoid hydroxylase to produce cyanidin accumulation. The introduction of the DzF3'H gene into other delphinium species by conventional breeding may enable development of cultivars with novel flower colors.
翠雀属栽培品种的花朵颜色归因于花青素,如飞燕草色素或天竺葵色素衍生物。迄今为止,由于矢车菊素衍生物的存在,尚未发现开红花的翠雀属栽培品种。这表明翠雀属植物由于类黄酮3'羟化酶(F3'H)功能丧失而没有矢车菊素生物合成能力。在这里,我们表明野生翠雀属物种紫花翠雀(同义词半髯毛翠雀)可以在其萼片中积累槲皮素3-葡萄糖苷,推测是通过F3'H活性。我们从紫花翠雀中分离出F3'H cDNA(DzF3'H),并从酵母转化体中产生重组酶。重组DzF3'H蛋白可以分别将柚皮素、芹菜素、二氢山奈酚和山奈酚转化为圣草酚、木犀草素、二氢槲皮素和槲皮素。表达分析证实,开蓝色花的大花翠雀不表达F3'H,并且还表明类黄酮3',5'-羟化酶和花青素合酶在紫花翠雀萼片中不起作用。DzF3'H可以作为类黄酮羟化酶来产生矢车菊素积累。通过常规育种将DzF3'H基因引入其他翠雀属物种可能会培育出具有新颖花色的栽培品种。