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与BRAHMA相关的SWI/SNF染色质重塑复合体调控拟南芥种子质量和生理。

The BRAHMA-associated SWI/SNF chromatin remodeling complex controls Arabidopsis seed quality and physiology.

作者信息

Wrona Magdalena, Zinsmeister Julia, Krzyszton Michal, Villette Claire, Zumsteg Julie, Mercier Pierre, Neveu Martine, Sacharowski Sebastian P, Archacki Rafał, Collet Boris, Buitink Julia, Schaller Hubert, Swiezewski Szymon, Yatusevich Ruslan

机构信息

Institute of Biochemistry and Biophysics PAS, Warsaw 02-106, Poland.

Institut de Biologie Moléculaire des Plantes, Université de Strasbourg, Strasbourg 67084, France.

出版信息

Plant Physiol. 2024 Dec 24;197(1). doi: 10.1093/plphys/kiae642.

Abstract

The SWI/SNF (SWItch/Sucrose Non-Fermentable) chromatin remodeling complex is involved in various aspects of plant development and stress responses. Here, we investigated the role of BRM (BRAHMA), a core catalytic subunit of the SWI/SNF complex, in Arabidopsis thaliana seed biology. brm-3 seeds exhibited enlarged size, reduced yield, increased longevity, and enhanced secondary dormancy, but did not show changes in primary dormancy or salt tolerance. Some of these phenotypes depended on the expression of DOG1, a key regulator of seed dormancy, as they were restored in the brm-3 dog1-4 double mutant. Transcriptomic and metabolomic analyses revealed that BRM and DOG1 synergistically modulate the expression of numerous genes. Some of the changes observed in the brm-3 mutant, including increased glutathione levels, depended on a functional DOG1. We demonstrated that the BRM-containing chromatin remodeling complex directly controls secondary dormancy through DOG1 by binding and remodeling its 3' region, where the promoter of the long noncoding RNA asDOG1 is located. Our results suggest that BRM and DOG1 cooperate to control seed physiological properties and that BRM regulates DOG1 expression through asDOG1. This study reveals chromatin remodeling at the DOG1 locus as a molecular mechanism controlling the interplay between seed viability and dormancy.

摘要

SWI/SNF(开关/蔗糖非发酵)染色质重塑复合体参与植物发育和应激反应的各个方面。在此,我们研究了SWI/SNF复合体的核心催化亚基BRM(BRAHMA)在拟南芥种子生物学中的作用。brm-3种子表现出体积增大、产量降低、寿命延长和次生休眠增强,但在初生休眠或耐盐性方面没有变化。其中一些表型依赖于种子休眠的关键调节因子DOG1的表达,因为它们在brm-3 dog1-4双突变体中得以恢复。转录组学和代谢组学分析表明,BRM和DOG1协同调节众多基因的表达。在brm-3突变体中观察到的一些变化,包括谷胱甘肽水平升高,依赖于功能性的DOG1。我们证明,含BRM的染色质重塑复合体通过结合并重塑其3'区域(长链非编码RNA asDOG1的启动子所在区域)直接通过DOG1控制次生休眠。我们的结果表明,BRM和DOG1协同控制种子生理特性,并且BRM通过asDOG1调节DOG1的表达。这项研究揭示了DOG1基因座处的染色质重塑是控制种子活力和休眠之间相互作用的分子机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba64/11668257/358ed49c4b5a/kiae642f1.jpg

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