Zhao Xinhui, Wei Mengyi, Tang Qianying, Tang Lei, Fu Jun, Wang Kai, Zhou Yanbiao, Yang Yuanzhu
College of Agronomy, Hunan Agricultural University, Changsha 410128, China.
Key Laboratory of Southern Rice Innovation & Improvement, Ministry of Agriculture and Rural Affairs/Hunan Engineering Laboratory of Disease and Pest Resistant Rice Breeding, Yuan Longping High-Tech Agriculture Co., Ltd., Changsha 410001, China.
Plants (Basel). 2024 Dec 24;14(1):5. doi: 10.3390/plants14010005.
Glume-opening of thermosensitive genic male sterile (TGMS) rice ( L.) lines after anthesis is a serious problem that significantly reduces the yield and quality of hybrid seeds. However, the molecular mechanisms regulating the opening and closing of rice glumes remain largely unclear. In this study, we report the isolation and functional characterization of a glum-opening mutant after anthesis, named . exhibits dysfunctional lodicules that lead to open glumes following anthesis. Map-based cloning and subsequent complementation tests confirmed that GOM1 encodes a receptor-like kinase (RLK). was expressed in nearly all floral tissues, with the highest expression in the lodicule. Loss-of-function of resulted in a decrease in the expression of genes related to JA biosynthesis, JA signaling, and sugar transport. Compared with LK638S, the JA content in the mutant was significantly reduced, while the soluble sugar, sucrose, glucose, and fructose contents were significantly increased in lodicules after anthesis. Together, we speculated that GOM1 regulates carbohydrate transport in lodicules during anthesis through JA and JA signaling, maintaining a higher osmolality in lodicules after anthesis, which leads to glum-opening.
花期后温敏雄性不育(TGMS)水稻(L.)品系颖壳张开是一个严重问题,显著降低了杂交种子的产量和质量。然而,调控水稻颖壳开闭的分子机制仍 largely 不清楚。在本研究中,我们报道了一个花期后颖壳张开突变体的分离和功能表征,命名为 。 表现出浆片功能失调,导致花期后颖壳张开。基于图谱的克隆及随后的互补试验证实,GOM1 编码一种类受体激酶(RLK)。 在几乎所有花组织中表达,在浆片中表达量最高。 的功能丧失导致与茉莉酸(JA)生物合成、JA 信号传导和糖转运相关基因的表达下降。与 LK638S 相比, 突变体中的 JA 含量显著降低,而花期后浆片中的可溶性糖、蔗糖、葡萄糖和果糖含量显著增加。综合来看,我们推测 GOM1 通过 JA 和 JA 信号传导在花期调控浆片中的碳水化合物运输,在花期后维持浆片中较高的渗透压,从而导致颖壳张开。