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油菜素类固醇信号传导相关的ILI-OsAIF-OsbHLH92转录因子模块对水稻叶角和粒型起着拮抗调控作用。

The brassinosteroid signaling-related ILI-OsAIF-OsbHLH92 transcription factor module antagonistically controls leaf angle and grain size in rice.

作者信息

Lu Mingmin, Liu Mingqian, Luo Qin, He Yubing, Tian Yanan, Zhan Huadong

机构信息

State Key Laboratory of Crop Genetics & Germplasm Enhancement and Utilization, Nanjing Agricultural University, Nanjing 210095, China.

State Key Laboratory of Crop Gene Resources and Breeding, Institute of Crop Sciences (ICS), Chinese Academy of Agricultural Sciences (CAAS), Beijing 100081, China.

出版信息

Plant Physiol. 2024 Dec 24;197(1). doi: 10.1093/plphys/kiae668.

Abstract

Atypical basic helix-loop-helix (bHLH) transcription factors, which lack the basic region for DNA binding, are important elements of brassinosteroid (BR) signaling. Recently, our systematic characterization of the rice (Oryza sativa) INCREASED LEAF INCLINATION (ILI) subfamily of atypical bHLHs revealed their indispensable roles in BR-mediated growth and development. Here, we reported the isolation of two additional rice ILI-interacting atypical bHLHs, ATBS1-INTERACTING FACTOR 1 (OsAIF1)/OsbHLH176 and OsAIF2/OsbHLH178. Genetic and cytological analyses of the OsAIFs knockout mutants and overexpression lines revealed that OsAIF1 and OsAIF2 negatively regulate rice leaf inclination and grain size in a synergistic and redundant manner. Compared to the wild-type, osaif knockout mutants exhibited hypersensitivity to BR, while OsAIF1 and OsAIF2 overexpression lines showed greatly reduced sensitivity or complete insensitivity to BR, indicating that these two OsAIFs act as major negative regulators of rice BR signaling. As ILI-interacting negative atypical HLHs, OsAIF1 and OsAIF2 genetically counteracted the positive ILI subfamily of atypical HLHs. Moreover, OsAIF1 and OsAIF2 physically interacted with and antagonized OsbHLH92, a positive regulator of BR signaling, thereby modulating rice development and gene transcription. These findings suggested that the atypical HLHs (ILIs and OsAIF1/OsAIF2) and the bHLH (OsbHLH92) transcription factors form a triantagonistic cascade in rice, counteracting each other to fine-tune leaf angle and grain size through BR signaling. Our results provide insights into the mechanisms balancing BR signaling and growth in rice.

摘要

缺乏DNA结合基本区域的非典型碱性螺旋-环-螺旋(bHLH)转录因子是油菜素内酯(BR)信号传导的重要组成部分。最近,我们对水稻(Oryza sativa)非典型bHLH的叶片倾斜度增加(ILI)亚家族进行了系统表征,揭示了它们在BR介导的生长和发育中不可或缺的作用。在此,我们报道了另外两个与水稻ILI相互作用的非典型bHLH,即ATBS1相互作用因子1(OsAIF1)/OsbHLH176和OsAIF2/OsbHLH178的分离。对OsAIFs基因敲除突变体和过表达系的遗传和细胞学分析表明,OsAIF1和OsAIF2以协同和冗余的方式负调控水稻叶片倾斜度和籽粒大小。与野生型相比,osaif基因敲除突变体对BR表现出超敏反应,而OsAIFs1和OsAIF2过表达系对BR的敏感性大大降低或完全不敏感,这表明这两个OsAIFs作为水稻BR信号的主要负调控因子。作为与ILI相互作用的负性非典型HLH,OsAIF1和OsAIF2在遗传上抵消了非典型HLH的正性ILI亚家族。此外,OsAIF1和OsAIF2与BR信号的正调控因子OsbHLH92发生物理相互作用并拮抗,从而调节水稻发育和基因转录。这些发现表明,非典型HLH(ILIs和OsAIF1/OsAIF2)和bHLH(OsbHLH92)转录因子在水稻中形成了一个三拮抗级联,相互抵消,通过BR信号传导微调叶角和籽粒大小。我们的结果为平衡水稻BR信号传导和生长的机制提供了见解。

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