茶树 CsMYB4a 通过与植物生长素信号转导抑制因子 CsAUX/IAA4 相互作用参与调节雄蕊生长

Guoliang Ma, Mingzhuo Li, Yingling Wu, Changjuan Jiang, Yifan Chen, Dawei Xing, Yue Zhao, Yajun Liu, Xiaolan Jiang, Tao Xia, Liping Gao
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摘要

众所周知,R2R3-MYB的第4亚群(Sg4)成员是植物中苯丙类途径的负调控因子。我们之前的研究表明,来自茶树的R2R3-MYB Sg4成员(CsMYB4a)可抑制苯丙类途径中一些基因的表达,但其在茶树中的生理功能仍然未知。本文发现CsMYB4a在花药和花丝中高表达,并参与调控花丝的生长。转录组分析和外源辅助素处理表明,CsMYB4a的靶标可能是辅助素信号通路。以 CsMYB4a 为诱饵进行的酵母双杂交筛选发现,AUX/吲哚-3-乙酸 4(Auxin/indole-3-acetic acid 4,AUX/IAA4)是辅助素信号转导的抑制因子。基因沉默分析表明,CsIAA4 和 CsMYB4a 都能调节花丝的生长。过表达 CsIAA4 的烟草植株对外源 α-NAA 不敏感,这与 CsMYB4a 的过表达一致。蛋白-蛋白相互作用实验表明,CsMYB4a 与 CsIAA4 的 N 端相互作用,阻止了 CsIAA4 的降解。在烟草中敲除内源 NtIAA4 基因(CsIAA4 的同源物)可减轻过表达 CsMYB4a 植物的花丝生长抑制和对α-NAA 的不敏感性。所有结果都有力地表明,CsMYB4a 与 CsIAA4 协同作用,参与调控雄蕊中的辅助素途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Camellia sinensis CsMYB4a participates in regulation of stamen growth by interaction with auxin signaling transduction repressor CsAUX/IAA4

Subgroup 4 (Sg4) members of the R2R3-MYB are generally known as negative regulators of the phenylpropanoid pathway in plants. Our previous research showed that a R2R3-MYB Sg4 member from Camellia sinensis (CsMYB4a) inhibits expression of some genes in the phenylpropanoid pathway, but its physiological function in the tea plant remained unknown. Here, CsMYB4a was found to be highly expressed in anther and filaments, and participated in regulating filament growth. Transcriptome analysis and exogenous auxin treatment showed that the target of CsMYB4a might be the auxin signal pathway. Auxin/indole-3-acetic acid 4 (AUX/IAA4), a repressor in auxin signal transduction, was detected from a yeast two-hybrid screen using CsMYB4a as bait. Gene silencing assays showed that both CsIAA4 and CsMYB4a regulate filament growth. Tobacco plants overexpressing CsIAA4 were insensitive to exogenous α-NAA, consistent with overexpression of CsMYB4a. Protein-protein interaction experiments revealed that CsMYB4a interacts with N-terminal of CsIAA4 to prevent CsIAA4 degradation. Knock out of the endogenous NtIAA4 gene, a CsIAA4 homolog, in tobacco alleviated filament growth inhibition and α-NAA insensitivity in plants overexpressing CsMYB4a. All results strongly suggest that CsMYB4a works synergistically with CsIAA4 and participates in regulation of the auxin pathway in stamen.

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