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RHA2b介导的MYB30降解促进了拟南芥幼苗中MYB75调控的、蔗糖诱导的花青素生物合成。

RHA2b-mediated MYB30 degradation facilitates MYB75-regulated, sucrose-induced anthocyanin biosynthesis in Arabidopsis seedlings.

作者信息

Zhou Huapeng, He Jiaxian, Zhang Yiyi, Zhao Hongyun, Sun Xia, Chen Xi, Liu Xinrui, Zheng Yuan, Lin Honghui

机构信息

Key Laboratory of Bio-resource and Eco-environment of the Ministry of Education, College of Life Sciences, Sichuan University, Chengdu 610064, China.

Innovative Center of Molecular Genetics and Evolution, School of Life Sciences, Guangzhou University, Guangzhou 510642, China.

出版信息

Plant Commun. 2024 Mar 11;5(3):100744. doi: 10.1016/j.xplc.2023.100744. Epub 2023 Nov 10.

Abstract

Anthocyanins play diverse roles in plant physiology and stress adaptation. In Arabidopsis, the MYB-bHLH-WD40 (MBW) complex has a crucial role in the regulation of anthocyanin synthesis. Here, we report that the R2R3-MYB transcription factor MYB30 and the ubiquitin E3 ligase RHA2b participate in anthocyanin biosynthesis through regulation of the MBW complex. MYB30 was found to negatively regulate sucrose-induced anthocyanin biosynthesis in Arabidopsis seedlings. Expression of multiple genes involved in flavonoid or anthocyanin biosynthesis was affected in the myb30 mutant, and MYB30 directly repressed the expression of MYB75, which encodes a core component of the MBW complex, by binding to its promoter. Moreover, MYB30 physically interacted with MYB75 to inhibit its activity by repressing MBW complex assembly. In addition, sucrose treatment significantly promoted MYB30 degradation via the action of RHA2b. The ubiquitination and degradation of MYB30 were significantly attenuated in the rha2b mutant under high-sucrose treatment, and further analysis showed that MYB75 directly promoted RHA2b expression in response to high sucrose. Our work thus reveals an anthocyanin biosynthetic regulatory module, RHA2b-MYB30, that controls the function of the MBW complex via MYB75. The repression of MYB75 by MYB30 is released by MYB75-induced RHA2b expression, thus ensuring the self-activation of MYB75 when anthocyanin synthesis is needed.

摘要

花青素在植物生理和胁迫适应中发挥着多种作用。在拟南芥中,MYB-bHLH-WD40(MBW)复合体在花青素合成调控中起关键作用。在此,我们报道R2R3-MYB转录因子MYB30和泛素E3连接酶RHA2b通过调控MBW复合体参与花青素生物合成。我们发现MYB30负调控拟南芥幼苗中蔗糖诱导的花青素生物合成。在myb30突变体中,多个参与类黄酮或花青素生物合成的基因表达受到影响,并且MYB30通过结合其启动子直接抑制MYB75的表达,MYB75编码MBW复合体的一个核心组分。此外,MYB30与MYB75发生物理相互作用,通过抑制MBW复合体组装来抑制其活性。另外,蔗糖处理通过RHA2b的作用显著促进MYB30的降解。在高蔗糖处理下,rha2b突变体中MYB30的泛素化和降解显著减弱,进一步分析表明MYB75响应高蔗糖直接促进RHA2b的表达。因此,我们的研究揭示了一个花青素生物合成调控模块RHA2b-MYB30,其通过MYB75控制MBW复合体的功能。MYB75诱导的RHA2b表达解除了MYB30对MYB75的抑制,从而确保在需要花青素合成时MYB75的自我激活。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35f4/10943538/bcf56740720f/gr1.jpg

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