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OsCOL5 通过调控 Ghd7 和 Ehd2 抑制穗分化,提高水稻产量。

OsCOL5 suppresses heading through modulation of Ghd7 and Ehd2, enhancing rice yield.

机构信息

China National Center for Rice Improvement and State Key Laboratory of Rice Biology and Breeding, China National Rice Research Institute, Hangzhou, 311400, China.

National Key Laboratory of Crop Genetic Improvement, Huazhong Agricultural University, Wuhan, 430070, Hubei, China.

出版信息

Theor Appl Genet. 2024 Jun 17;137(7):162. doi: 10.1007/s00122-024-04674-1.

Abstract

OsCOL5, an ortholog of Arabidopsis COL5, is involved in photoperiodic flowering and enhances rice yield through modulation of Ghd7 and Ehd2 and interactions with OsELF3-1 and OsELF3-2. Heading date, also known as flowering time, plays a crucial role in determining the adaptability and yield potential of rice (Oryza sativa L.). CONSTANS (CO)-like is one of the most critical flowering-associated gene families, members of which are evolutionarily conserved. Here, we report the molecular functional characterization of OsCOL5, an ortholog of Arabidopsis COL5, which is involved in photoperiodic flowering and influences rice yield. Structural analysis revealed that OsCOL5 is a typical member of CO-like family, containing two B-box domains and one CCT domain. Rice plants overexpressing OsCOL5 showed delayed heading and increases in plant height, main spike number, total grain number per plant, and yield per plant under both long-day (LD) and short-day (SD) conditions. Gene expression analysis indicated that OsCOL5 was primarily expressed in the leaves and stems with a diurnal rhythm expression pattern. RT-qPCR analysis of heading date genes showed that OsCOL5 suppressed flowering by up-regulating Ghd7 and down-regulating Ehd2, consequently reducing the expression of Ehd1, Hd3a, RFT1, OsMADS14, and OsMADS15. Yeast two-hybrid experiments showed direct interactions of OsCOL5 with OsELF3-1 and OsELF3-2. Further verification showed specific interactions between the zinc finger/B-box domain of OsCOL5 and the middle region of OsELF3-1 and OsELF3-2. Yeast one-hybrid assays revealed that OsCOL5 may bind to the CCACA motif. The results suggest that OsCOL5 functions as a floral repressor, playing a vital role in rice's photoperiodic flowering regulation. This gene shows potential in breeding programs aimed at improving rice yield by influencing the timing of flowering, which directly impacts crop productivity.

摘要

OsCOL5 是拟南芥 COL5 的同源基因,参与光周期开花,并通过调节 Ghd7 和 Ehd2 以及与 OsELF3-1 和 OsELF3-2 的相互作用来提高水稻产量。抽穗期,又称开花时间,在决定水稻(Oryza sativa L.)的适应性和产量潜力方面起着至关重要的作用。CONSTANS(CO)类似物是最关键的开花相关基因家族之一,其成员在进化上是保守的。在这里,我们报告了 OsCOL5 的分子功能特征,它是拟南芥 COL5 的同源基因,参与光周期开花并影响水稻产量。结构分析表明,OsCOL5 是 CO 类似物家族的典型成员,含有两个 B 盒结构域和一个 CCT 结构域。在长日(LD)和短日(SD)条件下,过表达 OsCOL5 的水稻植株表现出抽穗期延迟、株高增加、主穗数增加、单株总粒数增加和产量增加。基因表达分析表明,OsCOL5 在叶片和茎中表达,具有昼夜节律表达模式。抽穗期基因的 RT-qPCR 分析表明,OsCOL5 通过上调 Ghd7 和下调 Ehd2 来抑制开花,从而降低 Ehd1、Hd3a、RFT1、OsMADS14 和 OsMADS15 的表达。酵母双杂交实验表明 OsCOL5 与 OsELF3-1 和 OsELF3-2 直接相互作用。进一步验证表明,OsCOL5 与 OsELF3-1 和 OsELF3-2 的中区域存在特异性相互作用。酵母单杂交测定表明 OsCOL5 可能与 CCACA 基序结合。结果表明,OsCOL5 作为花的阻遏物发挥作用,在水稻光周期开花调控中起着至关重要的作用。该基因在通过影响开花时间来提高水稻产量的育种计划中具有潜力,而开花时间直接影响作物生产力。

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