Engineering of the Rose Flavonoid Biosynthetic Pathway Successfully Generated Blue-Hued Flowers Accumulating Delphinidin

飞燕草素 花瓣 花青素 类黄酮 植物 栽培 颜料 氰化物 花青素 生物 化学 生物化学 有机化学 抗氧化剂
作者
Yukihisa Katsumoto,Masako Fukuchi‐Mizutani,Yûkô Fukui,Filippa Brugliera,Timothy A. Holton,Mirko Karan,Noriko Nakamura,Keiko Yonekura‐Sakakibara,Junichi Togami,Alix Pigeaire,G. Q. Tao,N. S. Nehra,Caige Lu,Barry Dyson,Shinzo Tsuda,Toshihiko Ashikari,Takaaki Kusumi,John G. Mason,Yoshikazu Tanaka
出处
期刊:Plant and Cell Physiology [Oxford University Press]
卷期号:48 (11): 1589-1600 被引量:462
标识
DOI:10.1093/pcp/pcm131
摘要

Flower color is mainly determined by anthocyanins. Rosa hybrida lacks violet to blue flower varieties due to the absence of delphinidin-based anthocyanins, usually the major constituents of violet and blue flowers, because roses do not possess flavonoid 3',5'-hydoxylase (F3'5'H), a key enzyme for delphinidin biosynthesis. Other factors such as the presence of co-pigments and the vacuolar pH also affect flower color. We analyzed the flavonoid composition of hundreds of rose cultivars and measured the pH of their petal juice in order to select hosts of genetic transformation that would be suitable for the exclusive accumulation of delphinidin and the resulting color change toward blue. Expression of the viola F3'5'H gene in some of the selected cultivars resulted in the accumulation of a high percentage of delphinidin (up to 95%) and a novel bluish flower color. For more exclusive and dominant accumulation of delphinidin irrespective of the hosts, we down-regulated the endogenous dihydroflavonol 4-reductase (DFR) gene and overexpressed the Irisxhollandica DFR gene in addition to the viola F3'5'H gene in a rose cultivar. The resultant roses exclusively accumulated delphinidin in the petals, and the flowers had blue hues not achieved by hybridization breeding. Moreover, the ability for exclusive accumulation of delphinidin was inherited by the next generations.
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