The MYB Activator WHITE PETAL1 Associates with MtTT8 and MtWD40-1 to Regulate Carotenoid-Derived Flower Pigmentation in Medicago truncatula

Author:

Meng Yingying1,Wang Zuoyi1,Wang Yiqin2,Wang Chongnan1,Zhu Butuo1,Liu Huan1,Ji Wenkai1,Wen Jiangqi3,Chu Chengcai2,Tadege Million4,Niu Lifang1,Lin Hao1

Affiliation:

1. Biotechnology Research Institute, Chinese Academy of Agricultural Sciences, Beijing 100081, China

2. The State Key Laboratory of Plant Genomics, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing 100101, China

3. Noble Research Institute, Ardmore, Oklahoma 73401

4. Department of Plant and Soil Sciences, Institute for Agricultural Biosciences, Oklahoma State University, Ardmore, Oklahoma 73401

Abstract

Abstract Carotenoids are a group of natural tetraterpenoid pigments with indispensable roles in the plant life cycle and the human diet. Although the carotenoid biosynthetic pathway has been well characterized, the regulatory mechanisms that control carotenoid metabolism, especially in floral organs, remain poorly understood. In this study, we identified an anthocyanin-related R2R3-MYB protein, WHITE PETAL1 (WP1), that plays a critical role in regulating floral carotenoid pigmentation in Medicago truncatula. Carotenoid analyses showed that the yellow petals of the wild-type M. truncatula contained high concentrations of carotenoids that largely consisted of esterified lutein and that disruption of WP1 function via Tnt1 insertion led to substantially reduced lutein accumulation. WP1 mainly functions as a transcriptional activator and directly regulates the expression of carotenoid biosynthetic genes including MtLYCe and MtLYCb through its C-terminal acidic activation motif. Further molecular and genetic analyses revealed that WP1 physically interacts with MtTT8 and MtWD40-1 proteins and that this interaction facilitates WP1’s function in the transcriptional activation of both carotenoid and anthocyanin biosynthetic genes. Our findings demonstrate the molecular mechanism of WP1-mediated regulation of floral carotenoid pigmentation and suggest that the conserved MYB-basic-helix-loop-helix-WD40 regulatory module functions in carotenoid biosynthesis in M. truncatula, with specificity imposed by the MYB partner.

Funder

National Transgenic Science and Technology Program

National Key R&D Program of China

National Natural Science Foundation of China

Beijing Municipal Science and Technology Commission

Scientific Research Project for Major Achievements of the Agricultural Science and Technology Innovation Program

The Scientific Research Project for Major Achievements of the Agricultural Science and Technology Innovation Program

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Plant Science

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