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中介体15使DELLA蛋白不稳定,以促进赤霉素介导的植物发育。

MEDIATOR15 destabilizes DELLA protein to promote gibberellin-mediated plant development.

作者信息

Ohama Naohiko, Moo Teck Lim, Chung KwiMi, Mitsuda Nobutaka, Boonyaves Kulaporn, Urano Daisuke, Chua Nam-Hai

机构信息

Temasek Life Sciences Laboratory, 1 Research Link, National University of Singapore, Singapore, 117604, Singapore.

Plant Gene Regulation Research Group, Bioproduction Research Institute, National Institute of Advanced Industrial Science and Technology, Central 6, 1-1-1 Higashi, Tsukuba, Ibaraki, 305-8566, Japan.

出版信息

New Phytol. 2025 Mar;245(6):2665-2680. doi: 10.1111/nph.20397. Epub 2025 Jan 14.

Abstract

Mediator, a transcriptional coactivator, regulates plant growth and development by interacting with various transcriptional regulators. MEDIATOR15 (MED15) is a subunit in the Mediator complex potentially involved in developmental control. To uncover molecular functions of Arabidopsis MED15 in development, we searched for its interactors. MED15 was found to interact with DELLA proteins, which negatively regulate gibberellic acid (GA) signaling and positively regulate GA biosynthesis. Mutants and overexpressors of MED15 exhibited multiple GA-related growth phenotypes, which resembled the phenotypes of the DELLA overexpressor and mutant, respectively. Consistent with this observation, DELLA protein levels were inversely correlated with MED15 protein levels, suggesting that MED15 activates GA signaling through DELLA degradation. MED15 was required not only for DELLA-mediated induction of GA-biosynthesis gene expression but also for GA-mediated degradation of DELLA. Therefore, MED15 facilitates DELLA destruction not only by promoting GA biosynthesis but also by accelerating DELLA turnover. Furthermore, MED15-mediated GA signaling was required for timely developmental responses to dark and warm conditions. Our results provide insight into developmental control by Mediator via precise regulation of DELLA stability. These findings are potentially useful for the generation of new crop cultivars with ideal body architecture.

摘要

中介体作为一种转录共激活因子,通过与多种转录调节因子相互作用来调控植物的生长和发育。中介体15(MED15)是中介体复合物中的一个亚基,可能参与发育调控。为了揭示拟南芥MED15在发育过程中的分子功能,我们寻找了它的相互作用蛋白。结果发现MED15与DELLA蛋白相互作用,DELLA蛋白对赤霉素(GA)信号传导起负调控作用,对GA生物合成起正调控作用。MED15的突变体和过表达体分别表现出多种与GA相关的生长表型,这些表型分别类似于DELLA过表达体和突变体的表型。与这一观察结果一致,DELLA蛋白水平与MED15蛋白水平呈负相关,这表明MED15通过降解DELLA来激活GA信号传导。MED15不仅是DELLA介导的GA生物合成基因表达诱导所必需的,也是GA介导的DELLA降解所必需的。因此,MED15不仅通过促进GA生物合成,还通过加速DELLA周转来促进DELLA的降解。此外,MED15介导的GA信号传导对于对黑暗和温暖条件的及时发育反应是必需的。我们的结果通过对DELLA稳定性的精确调控,为中介体对发育的调控提供了见解。这些发现可能有助于培育具有理想株型的新作物品种。

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