The PrFRS2-PrMYB75a module regulates petal coloration in flare tree peony (Paeonia rockii)
Fang-Ting Qi, Jia-Ning Han, Fang-Yun Cheng, Yuan Zhong, Lei Zhang, Yi-Fan Zhao, Xiao-Fang Liu

TL;DR
This study identifies a new genetic module that controls petal color in tree peonies, offering insights into flower color variation and potential for ornamental plant improvement.
Contribution
The discovery of the PrFRS2-PrMYB75a regulatory module provides a novel mechanism for petal background coloration in tree peonies.
Findings
PrMYB75a promotes anthocyanin accumulation by activating structural genes PrCHS1 and PrANS.
PrFRS2 acts as an upstream regulator, activating both PrMYB75a and PrANS through promoter binding.
Modulating PrFRS2 expression alters flower pigmentation in tree peonies and tobacco.
Abstract
Flower color is an essential biological and ornamental trait in plants. Paeonia rockii (flare tree peony, FTP) exhibits diverse flower colors, characterized by a distinctive basal flare in petals, which enhances its ornamental and ecological value. However, while previous research has mainly focused on flare formation, the regulatory mechanisms controlling the background color of petals remain unclear. This study identifies a novel regulatory module governing petal background coloration in FTP. Within this module, PrMYB75a acts as the central regulator to promote anthocyanin accumulation, as evidenced by stable transformation in Arabidopsis thaliana and tobacco (Nicotiana tabacum), as well as virus-induced gene silencing in FTP. Furthermore, yeast one-hybrid, dual-luciferase reporter, and electrophoretic mobility shift assays collectively demonstrated that PrMYB75a directly activates…
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Taxonomy
TopicsPlant Gene Expression Analysis · Plant Molecular Biology Research · Postharvest Quality and Shelf Life Management
