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一个转录枢纽整合赤霉素-油菜素信号以促进拟南芥种子萌发。

A transcriptional hub integrating gibberellin-brassinosteroid signals to promote seed germination in Arabidopsis.

机构信息

College of Forestry and Landscape Architecture, South China Agricultural University, Guangzhou, China.

Department of Plant and Soil Sciences, Kentucky Tobacco Research and Development Center, University of Kentucky, Lexington, KY, USA.

出版信息

J Exp Bot. 2021 Jun 22;72(13):4708-4720. doi: 10.1093/jxb/erab192.

Abstract

Seed germination is regulated by multiple phytohormones, including gibberellins (GAs) and brassinosteroids (BRs); however, the molecular mechanism underlying GA and BR co-induced seed germination is not well elucidated. We demonstrated that BRs induce seed germination through promoting testa and endosperm rupture in Arabidopsis. BRs promote cell elongation, rather than cell division, at the hypocotyl-radicle transition region of the embryonic axis during endosperm rupture. Two key basic helix-loop-helix transcription factors in the BR signaling pathway, HBI1 and BEE2, are involved in the regulation of endosperm rupture. Expression of HBI1 and BEE2 was induced in response to BR and GA treatment. In addition, HBI1- or BEE2-overexpressing Arabidopsis plants are less sensitive to the BR biosynthesis inhibitor, brassinazole, and the GA biosynthesis inhibitor, paclobutrazol. HBI1 and BEE2 promote endosperm rupture and seed germination by directly regulating the GA-Stimulated Arabidopsis 6 (GASA6) gene. Expression of GASA6 was altered in Arabidopsis overexpressing HBI1, BEE2, or SRDX-repressor forms of the two transcription factors. In addition, HBI1 interacts with BEE2 to synergistically activate GASA6 expression. Our findings define a new role for GASA6 in GA and BR signaling and reveal a regulatory module that controls GA and BR co-induced seed germination in Arabidopsis.

摘要

种子萌发受多种植物激素调控,包括赤霉素(GA)和油菜素内酯(BR);然而,GA 和 BR 共同诱导种子萌发的分子机制尚不清楚。我们证明 BR 通过促进拟南芥种皮和胚乳破裂来诱导种子萌发。BR 在胚轴胚根-胚芽过渡区促进细胞伸长,而不是细胞分裂,从而促进胚乳破裂。BR 信号通路中的两个关键碱性螺旋-环-螺旋转录因子 HBI1 和 BEE2 参与调控胚乳破裂。HBI1 和 BEE2 的表达受到 BR 和 GA 处理的诱导。此外,过表达 HBI1 或 BEE2 的拟南芥植物对 BR 生物合成抑制剂油菜素唑和 GA 生物合成抑制剂多效唑的敏感性降低。HBI1 和 BEE2 通过直接调节 GA 诱导的拟南芥 6(GASA6)基因促进胚乳破裂和种子萌发。过表达 HBI1、BEE2 或这两个转录因子的 SRDX 抑制形式的 GASA6 基因的表达发生改变。此外,HBI1 与 BEE2 相互作用以协同激活 GASA6 的表达。我们的研究结果定义了 GASA6 在 GA 和 BR 信号转导中的新作用,并揭示了一个调控模块,该模块控制拟南芥中 GA 和 BR 共同诱导的种子萌发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26dd/8219041/3bb598397103/erab192f0001.jpg

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