Rr MYB 5‐ and Rr MYB 10‐regulated flavonoid biosynthesis plays a pivotal role in feedback loop responding to wounding and oxidation in Rosa rugosa

MYB公司 类黄酮 类黄酮生物合成 生物 转录组 生物合成 WRKY蛋白质结构域 结构基因 查尔酮合酶 细胞生物学 基因 转基因 基因表达 生物化学 黄酮类 花青素 酵母 转录因子 突变体 抗氧化剂
作者
Yuxiao Shen,Tingting Sun,Qi Pan,Nachaisin Anupol,Hai Chen,Jinhua Shi,Fang Liu,Deqiang Duanmu,Changquan Wang,Jian Zhao,Shuhua Yang,Caiyun Wang,Jihong Liu,Manzhu Bao,Guogui Ning
出处
期刊:Plant Biotechnology Journal [Wiley]
卷期号:17 (11): 2078-2095 被引量:59
标识
DOI:10.1111/pbi.13123
摘要

Flavonoids play critical roles in plant responses to various stresses. Few studies have been reported on what the mechanism of activating flavonoid biosynthesis in plant responses to wounding and oxidation is. In this study, flavonoid metabolites and many MYB transcript factors from Rosa rugosa were verified to be induced by wounding and oxidation. RrMYB5 and RrMYB10, which belong to PA1- and TT2-type MYB TFs, respectively, showed extremely high induction. Overexpression of RrMYB5 and RrMYB10 resulted in an increased accumulation of proanthocyanidins in R. rugosa and tobacco by promoting the expression of flavonoid structural genes. Transcriptomic analysis of the transgenic plants showed that most genes, involved in wounding and oxidation response and ABA signalling modulation, were up-regulated by the overexpression of RrMYB10, which was very much similar to that observed in RrANR and RrDFR overexpression transgenics. RrMYB5 and RrMYB10 physically interacted and mutually activated each other's expressions. They solely or synergistically activated the different sets of flavonoid pathway genes in a bHLH TF EGL3-independent manner. Eventually, the accumulation of proanthocyanidins enhanced plant tolerance to wounding and oxidative stresses. Therefore, RrMYB5 and RrMYB10 regulated flavonoid synthesis in feedback loop responding to wounding and oxidation in R. rugosa. Our study provides new insights into the regulatory mechanisms of flavonoid biosynthesis by MYB TFs and their essential physiological functions in plant responses to wounding and oxidative stresses.

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