School of Grassland Science, Beijing Forestry University, Beijing, 100083, China.
School of Grassland Science, Beijing Forestry University, Beijing, 100083, China.
Plant Physiol Biochem. 2024 Nov;216:109154. doi: 10.1016/j.plaphy.2024.109154. Epub 2024 Sep 25.
Gibberellin (GAs) is an important plant hormone that plays a key role in plant growth and development. Gibberellin 2-oxidase (GA2ox) catalyzes the inactivation of biologically active GA or their direct precursors. In this study, five GA2ox genes were isolated from the wild type Poa pratensis 'Baron', named PpGA2ox3, PpGA2ox4, PpGA2ox5, PpGA2ox8, and PpGA2ox9. Phylogenetic tree analysis showed that PpGA2ox3, PpGA2ox4, PpGA2ox5, and PpGA2ox8 belong to class I GA2ox genes, while PpGA2ox9 belongs to class III GA2ox genes. They expressed in all tissues of Poa pratensis, in each plant tissue and growth stage, the expression patterns were different. After GA spraying treatment, the expression of each gene showed different patterns. Subcellular localization showed that PpGA2ox3 was located in chloroplasts, while PpGA2ox5 and PpGA2ox9 were located in the cytoplasm. When PpGA2ox3 and PpGA2ox9 were overexpressed in Arabidopsis thaliana, they all led to a typical dwarf phenotype, as well as low plant height, small leaves and late flowering. Similarly, when they overexpressed in P. pratensis, the transgenic plants also exhibited a dwarf phenotype with a lower leaf length/width ratio. Hormone analysis suggested that these dwarfing traits might be caused by a decrease in GA content. These studies indicated that the PpGA2ox gene family played an important role in studying the mechanism of plant dwarfism and also had the potential to become important genes for the breeding of P. pratensis.
赤霉素(GAs)是一种重要的植物激素,在植物生长发育中起着关键作用。赤霉素 2-氧化酶(GA2ox)催化生物活性 GA 或其直接前体失活。本研究从野生型草地早熟禾‘Baron’中分离得到 5 个 GA2ox 基因,命名为 PpGA2ox3、PpGA2ox4、PpGA2ox5、PpGA2ox8 和 PpGA2ox9。系统进化树分析表明,PpGA2ox3、PpGA2ox4、PpGA2ox5 和 PpGA2ox8 属于 I 类 GA2ox 基因,而 PpGA2ox9 属于 III 类 GA2ox 基因。它们在草地早熟禾的所有组织中表达,在每个植物组织和生长阶段,表达模式不同。经 GA 喷施处理后,各基因表达呈现不同的模式。亚细胞定位表明 PpGA2ox3 定位于叶绿体,而 PpGA2ox5 和 PpGA2ox9 定位于细胞质。当 PpGA2ox3 和 PpGA2ox9 在拟南芥中过表达时,它们都导致典型的矮化表型,表现为植株矮小、叶片小、开花晚。同样,当它们在草地早熟禾中过表达时,转基因植株也表现出矮化表型,叶片长度/宽度比降低。激素分析表明,这些矮化特征可能是由于 GA 含量降低所致。这些研究表明,PpGA2ox 基因家族在研究植物矮化机制方面发挥着重要作用,并且有可能成为培育草地早熟禾的重要基因。