Plant Molecular Biology and Biotechnology Division, CSIR-National Botanical Research Institute, Rana Pratap Marg, Lucknow, 226001, India.
Department of Botany, University of Lucknow, Lucknow, 226007, India.
Planta. 2023 Mar 29;257(5):89. doi: 10.1007/s00425-023-04122-2.
Transcript isoform dynamics, spatiotemporal expression, and mutational analysis uncover that Arabidopsis RabC1 GTPase is required for root length, flowering time, seed size, and seed mucilage. Rab GTPases are crucial regulators for moving different molecules to their specific compartments according to the needs of the cell. In this work, we illustrate the role of RabC1 GTPase in Arabidopsis growth and seed development. We identify and analyze the expression pattern of three transcript isoforms of RabC1 in different development stages, along with their tissue-specific transcript abundance. The promoter activity of RabC1 using promoter-GUS fusion shows that it is widely expressed during the growth of Arabidopsis, particularly in seed tissues such as chalazal seed coat and chalazal endosperm. Lack of RabC1 function led to shorter roots, lesser biomass, delayed flowering, and sluggish plant development. The mutants had smaller seeds than the wildtype, less seed mass, and lower seed coat permeability. Developing seeds also revealed a smaller endosperm cavity and shorter integument cells. Additionally, we found that the knock-out mutant had downregulated expression of genes implicated in the transit of sugars and amino acids from maternal tissue to developing seed. The seeds of the loss-of-function mutant had reduced seed mucilage. All the observed mutant phenotypes were restored in the complemented lines confirming the function of RabC1 in seed development and plant growth.
转录本异构体动态、时空表达和突变分析揭示,拟南芥 RabC1 GTP 酶对于根长、开花时间、种子大小和种子粘液是必需的。Rab GTPases 是根据细胞的需要将不同分子运送到其特定隔室的关键调节剂。在这项工作中,我们说明了 RabC1 GTPase 在拟南芥生长和种子发育中的作用。我们鉴定和分析了 RabC1 的三种转录本异构体在不同发育阶段的表达模式,以及它们在组织中的转录丰度。利用启动子-GUS 融合研究 RabC1 的启动子活性表明,它在拟南芥生长过程中广泛表达,特别是在种子组织中,如合点珠被和合点内胚乳。RabC1 功能缺失导致根变短、生物量减少、开花延迟和植物发育迟缓。突变体的种子比野生型小,种子质量小,种皮渗透性低。发育中的种子还显示出较小的胚乳腔和较短的珠被细胞。此外,我们发现敲除突变体中涉及糖和氨基酸从母体组织向发育中的种子转运的基因表达下调。功能丧失型突变体的种子粘液减少。互补系中恢复了所有观察到的突变体表型,证实了 RabC1 在种子发育和植物生长中的功能。