Generation of purple-violet chrysanthemums via anthocyanin B-ring hydroxylation and glucosylation introduced from Osteospermum hybrid F3'5'H and Clitoria ternatea A3'5'GT

Xiaoying Han, Yuting Luo, Jia-Ni Lin, Huiying Wu, Hao Sun, Lijie Zhou, Sumei Chen, Z. Guan, W. Fang, Fei Zhang, Fadi Chen, Jiafu Jiang
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引用次数: 5

Abstract

Chrysanthemums possess no metabolic pathway to synthesize delphinidin because of the lack of endogenous F3'5'H gene encoding the key enzyme in its biosynthetic pathway; therefore, there are no blue or blue-purple chrysanthemums occurring naturally. Currently, the introduction of exogenous F3'5'H into chrysanthemums is an efficient method for breeding bluish chrysanthemums. In this study, we explored the effects of the introduction of mutant CmF3'H (generated via site-directed mutagenesis, T485S, CmF3'Hm) and exogenous Osteospermum hybrid F3'5'H (OhF3'5'H) genes combined with Clitoria ternatea A3'5'GT (CtA3'5'GT) on delphinidin synthesis in chrysanthemum. Among the F3'5'H transgenic lines, those overexpressing endogenous CmF3'Hm could not generate blue flower color, although red color was changed to light pink due to CtA3'5'GT function. Meanwhile, OhF3'5'H introduction promoted the accumulation of delphinidin and its derivatives in chrysanthemum, changing the flower color from red-purple to purple-violet. These results indicate the applicability of exogenous OhF3'5'H and CtA3'5'GT transformation for promoting delphinidin synthesis during the molecular breeding of violet/blue chrysanthemums.
从骨精杂交品种F3’5’h和阴蒂A3’5’gt中获得花青素b环羟基化和糖基化代紫菊花
由于缺乏内源性编码飞飞蓟苷生物合成途径关键酶的F3’5’h基因,菊花不具备合成飞飞蓟苷的代谢途径;因此,自然界中没有蓝色或蓝紫色的菊花。目前,在菊花中引入外源F3’5’h是培育淡蓝色菊花的有效方法。在本研究中,我们探讨了引入突变体CmF3'H(通过位点定向诱变、T485S、CmF3'Hm产生)和外源骨精子杂交基因F3'5'H (OhF3'5'H)与阴蒂A3'5'GT (CtA3'5'GT)结合对菊花飞鸡苷合成的影响。在F3’5’h转基因株系中,过表达内源cmf3’hm的株系,虽然由于CtA3’5’gt的作用,红色变为浅粉色,但不能产生蓝色的花色。同时,OhF3'5'H的引入促进了飞燕素及其衍生物在菊花中的积累,使花的颜色由红紫色变为紫紫色。这些结果表明,在紫/蓝菊花分子育种过程中,外源OhF3’5’h和CtA3’5’gt转化促进飞鸽苷合成的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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