Nazir Nimra, Iqbal Azhar, Hussain Hadia, Ali Faisal, Almaary Khalid S, Aktar Most Nazmin, Sajid Muhammad, Bourhia Mohammed, Salamatullah Ahmad Mohammad
Department of Biotechnology, Faculty of Life Sciences, University of Okara, Okara, Punjab, 56300, Pakistan.
Department of Botany and Microbiology, College of Science, King Saud University, P. O. BOX 2455, Riyadh, 11451, Saudi Arabia.
Cell Biochem Biophys. 2025 Mar;83(1):1207-1221. doi: 10.1007/s12013-024-01554-9. Epub 2024 Nov 1.
Growth regulatory factors (GRFs) are transcription factors that encode the proteins involved in plant growth and development. However, no comprehensive analysis of Vitis vinifera GRF genes has yet been conducted. In the current study, we performed a genome-wide analysis of the GRF gene family to explore the VvGRF gene's role in Vitis vinifera. We identified 30 VvGRF genes in the Vitis vinifera genome, localized over 20 chromosomes. Based on evolutionary analysis, 49 GRF genes (nine AtGRF, ten FvGRF, and 30 VvGRF) were clustered into six groups. Many cis-elements involved in light control, defense, and plant growth have been identified in the promoter region of VvGRF genes, and multiple miRNAs have been predicted to be involved in regulating VvGRF gene expression. Protein-protein interaction analysis showed that nine VvGRF proteins formed a complex protein interaction network. Furthermore, the gene expression analysis of VvGRF revealed that VvGRF-5 and VvGRF-6 were highly upregulated suggesting that these genes are involved in biotic responses. This study provides comprehensive insights into the functional characteristics and occurrence of the VvGRF gene family in Vitis vinifera, which may be applied in breeding programs to enhance the growth of Vitis vinifera varieties under stress and growth changes.
生长调节因子(GRFs)是一类转录因子,其编码参与植物生长和发育的蛋白质。然而,尚未对葡萄(Vitis vinifera)的GRF基因进行全面分析。在本研究中,我们对GRF基因家族进行了全基因组分析,以探究VvGRF基因在葡萄中的作用。我们在葡萄基因组中鉴定出30个VvGRF基因,分布在20多条染色体上。基于进化分析,49个GRF基因(9个拟南芥AtGRF、10个草莓FvGRF和30个VvGRF)被聚类为六组。在VvGRF基因的启动子区域鉴定出许多参与光调控、防御和植物生长的顺式作用元件,并且预测多个miRNA参与调控VvGRF基因表达。蛋白质-蛋白质相互作用分析表明,9个VvGRF蛋白形成了一个复杂的蛋白质相互作用网络。此外,VvGRF的基因表达分析显示,VvGRF-5和VvGRF-6高度上调,表明这些基因参与生物反应。本研究为葡萄中VvGRF基因家族的功能特性和存在情况提供了全面的见解,这些见解可能应用于育种计划,以增强葡萄品种在胁迫和生长变化下的生长。