Purple Rehmannia: Investigation of the activation of R2R3‐MYB transcription factors involved in anthocyanin biosynthesis

Author:

Zuo Xin1,Miao Chunyan1,Li Mingming1,Gu Li2,Yang Xu1,Song Ci1,Li Mingjie2,Du Jiafang1,Xie Caixia3,Liu Xiangyang1,Sun Hongzheng1,Li Lianzhen1,Zhang Zhongyi2,Wang Fengqing1ORCID

Affiliation:

1. College of Agronomy Henan Agricultural University Zhengzhou China

2. College of Agriculture Fujian Agriculture and Forestry University Fuzhou China

3. School of Medicine Henan University of Chinese Medicine Zhengzhou China

Abstract

AbstractEngineering anthocyanin biosynthesis in herbs could provide health‐promoting foods for improving human health. Rehmannia glutinosa is a popular medicinal herb in Asia, and was a health food for the emperors of the Han Dynasty (59 B.C.). In this study, we revealed the differences in anthocyanin composition and content between three Rehmannia species. On the 250, 235 and 206 identified MYBs in the respective species, six could regulate anthocyanin biosynthesis by activating the ANTHOCYANIDIN SYNTHASE (ANS) gene expression. Permanent overexpression of the Rehmannia MYB genes in tobacco strongly promoted anthocyanin content and expression levels of NtANS and other genes. A red appearance of leaves and tuberous/roots was observed, and the total anthocyanin content and the cyanidin‐3‐O‐glucoside content were significantly higher in the lines overexpressing RgMYB41, RgMYB42, and RgMYB43 from R. glutinosa, as well as RcMYB1 and RcMYB3 in R. chingii and RhMYB1 from R. henryi plants. Knocking out of RcMYB3 by CRISPR/Cas9 gene editing resulted in the discoloration of the R. chingii corolla lobes, and decreased the content of anthocyanin. R. glutinosa overexpressing RcMYB3 displayed a distinct purple color in the whole plants, and the antioxidant activity of the transgenic plants was significantly enhanced compared to WT. These results indicate that Rehmannia MYBs can be used to engineer anthocyanin biosynthesis in herbs to improve their additional value, such as increased antioxidant contents.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Cell Biology,Plant Science,Genetics,General Medicine,Physiology

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