Ministry of Education Key Laboratory of Cell Activities and Stress Adaptations, School of Life Sciences, Lanzhou University, Lanzhou, 730000, China.
Plant Cell Rep. 2023 Oct;42(10):1629-1649. doi: 10.1007/s00299-023-03057-y. Epub 2023 Aug 19.
AtHSPR forms a complex with KNAT5 and OFP1 to regulate primary root growth through GA-mediated root meristem activity. KNAT5-OFP1 functions as a negative regulator of AtHSPR in response to GA. Plant root growth is modulated by gibberellic acid (GA) signaling and depends on root meristem maintenance. ARABIDOPSIS THALIANA HEAT SHOCK PROTEIN-RELATED (AtHSPR) is a vital regulator of flowering time and salt stress tolerance. However, little is known about the role of AtHSPR in the regulation of primary root growth. Here, we report that athspr mutant exhibits a shorter primary root compared to wild type and that AtHSPR interacts with KNOTTED1-LIKE HOMEOBOX GENE 5 (KNAT5) and OVATE FAMILY PROTEIN 1 (OFP1). Genetic analysis showed that overexpression of KNAT5 or OFP1 caused a defect in primary root growth similar to that of the athspr mutant, but knockout of KNAT5 or OFP1 rescued the short root phenotype in the athspr mutant by altering root meristem activity. Further investigation revealed that KNAT5 interacts with OFP1 and that AtHSPR weakens the inhibition of GIBBERELLIN 20-OXIDASE 1 (GA20ox1) expression by the KNAT5-OFP1 complex. Moreover, root meristem cell proliferation and root elongation in 35S::KNAT5athspr and 35S::OFP1athspr seedlings were hypersensitive to GA treatment compared to the athspr mutant. Together, our results demonstrate that the AtHSPR-KNAT5-OFP1 module regulates root growth and development by impacting the expression of GA biosynthetic gene GA20ox1, which could be a way for plants to achieve plasticity in response to the environment.
AtHSPR 与 KNAT5 和 OFP1 形成复合物,通过 GA 介导的根分生组织活性调节主根生长。KNAT5-OFP1 作为 GA 响应下 AtHSPR 的负调节剂发挥作用。植物根生长受赤霉素 (GA) 信号调节,并依赖于根分生组织的维持。拟南芥热休克蛋白相关 (AtHSPR) 是开花时间和耐盐胁迫的重要调节剂。然而,关于 AtHSPR 在调节主根生长中的作用知之甚少。在这里,我们报告 athspr 突变体的主根比野生型短,并且 AtHSPR 与 KNOTTED1-LIKE HOMEOBOX GENE 5 (KNAT5) 和 OVATE FAMILY PROTEIN 1 (OFP1) 相互作用。遗传分析表明,KNAT5 或 OFP1 的过表达导致主根生长缺陷类似于 athspr 突变体,但 KNAT5 或 OFP1 的敲除通过改变根分生组织活性挽救了 athspr 突变体的短根表型。进一步的研究表明,KNAT5 与 OFP1 相互作用,并且 AtHSPR 削弱了 KNAT5-OFP1 复合物对 GIBBERELLIN 20-OXIDASE 1 (GA20ox1) 表达的抑制作用。此外,与 athspr 突变体相比,35S::KNAT5athspr 和 35S::OFP1athspr 幼苗的根分生组织细胞增殖和根伸长对 GA 处理更为敏感。总之,我们的结果表明,AtHSPR-KNAT5-OFP1 模块通过影响 GA 生物合成基因 GA20ox1 的表达来调节根的生长和发育,这可能是植物对环境实现可塑性的一种方式。