Rice Research Institute, Key Laboratory of Crop Molecular Improvement, Academy of Agricultural Sciences, Ministry of Education, Southwest University, Chongqing, 400715, China.
Nat Commun. 2024 Oct 3;15(1):8565. doi: 10.1038/s41467-024-52928-9.
Seed size, a key determinant of rice yield, is regulated by brassinosteroid (BR); however, the BR pathway in rice has not been fully elucidated. Here, we report the cloning and characterization of the quantitative trait locus Rice Big Grain 1 (qRBG1) from single-segment substitution line Z499. Our data show that qRBG1 is an unselected rare promoter variation that reduces qRBG1 expression to increase cell number and size, resulting in larger grains, whereas qRBG1 overexpression causes smaller grains in recipient Nipponbare. We demonstrate that qRBG1 encodes a non-canonical BES1 (Bri1-EMS-Suppressor1)/BZR1(Brassinazole-Resistant1) family member, OsBZR5, that regulates grain size upon phosphorylation by OsGSK2 (GSK3-like Kinase2) and binding to D2 (DWARF2) and OFP1 (Ovate-Family-Protein1) promoters. qRBG1 interacts with OsBZR1 to synergistically repress D2, and to antagonistically mediate OFP1 for grain size. Our results reveal a regulatory network controlling grain size via OsGSK2-qRBG1-OsBZR1-D2-OFP1 module, providing a target for improving rice yield.
粒型是水稻产量的关键决定因素,受油菜素内酯(BR)调控;然而,水稻中的 BR 途径尚未完全阐明。在这里,我们报道了来自单片段替换系 Z499 的数量性状基因座 Rice Big Grain 1(qRBG1)的克隆和特性。我们的数据表明,qRBG1 是一种未经选择的罕见启动子变异,它降低了 qRBG1 的表达,从而增加细胞数量和大小,导致粒型更大,而 qRBG1 的过表达导致受体 Nipponbare 的粒型更小。我们证明 qRBG1 编码一个非典型的 BES1(Bri1-EMS-Suppressor1)/BZR1(Brassinazole-Resistant1)家族成员,OsBZR5,它通过 OsGSK2(GSK3 样激酶 2)的磷酸化和与 D2(DWARF2)和 OFP1(Ovate-Family-Protein1)启动子的结合来调节粒型。qRBG1 与 OsBZR1 相互作用,协同抑制 D2,并拮抗调节 OFP1 以控制粒型。我们的结果揭示了一个通过 OsGSK2-qRBG1-OsBZR1-D2-OFP1 模块控制粒型的调控网络,为提高水稻产量提供了一个目标。