Department of Plant Sciences, University of Hyderabad, Hyderabad, 500046, India.
Department of Plant Molecular Biology, University of Delhi South Campus, New Delhi, India.
Plant Physiol Biochem. 2021 May;162:349-362. doi: 10.1016/j.plaphy.2021.03.002. Epub 2021 Mar 6.
F-box genes are an integral component of the Skp1-cullin-F-box (SCF) complex in eukaryotes. These genes are primarily involved in determining substrate specificities during cellular proteolysis. Here we report that 410 members constitute the F-box superfamily in tomato. Based on the incidence of C-terminal domains, these genes fell into ten subfamilies, leucine-rich repeat domain-containing F-box members constituting the largest subfamily. The F-box genes are present on all 12 chromosomes with varying gene densities. Both segmental and tandem duplication events contribute significantly to their expansion in the tomato genome. The syntenic analysis revealed close relationships among F-box homologs within Solanaceae species genomes. Transcript profiling of F-box members identified several ripening-associated genes with altered expression in the ripening mutants. RNA-sequencing data analysis showed that phosphate (Pi) deficiency affected 55 F-box transcripts in the Pi-deficient seedlings compared to their control seedlings. The persistent up-regulation of eight members, including two phloem protein 2B (PP2-B) genes, PP2-B15, and MATERNAL EFFECT EMBRYO ARREST 66 (MEE66) homologs, at multiple time-points in the roots, shoot, and seedling, point towards their pivotal roles in Pi starvation response in tomato. The attenuation of such upregulation in sucrose absence revealed the necessity of this metabolite for robust activation of these genes in the Pi-deficient seedlings. Altogether, this study identifies novel F-box genes with potential roles in fruit ripening and Pi starvation response and unlocks new avenues for functional characterization of candidate genes in tomato and other related species.
F-box 基因是真核生物 Skp1-cullin-F-box(SCF)复合物的一个组成部分。这些基因主要参与在细胞蛋白水解过程中确定底物特异性。在这里,我们报告在番茄中有 410 个成员构成 F-box 超家族。根据 C 端结构域的发生率,这些基因分为十个亚家族,富含亮氨酸重复结构域的 F-box 成员构成最大的亚家族。F-box 基因存在于所有 12 条染色体上,基因密度不同。片段和串联重复事件对它们在番茄基因组中的扩张有重要贡献。共线性分析揭示了茄科物种基因组中 F-box 同源物之间的密切关系。F-box 成员的转录谱分析确定了一些与成熟相关的基因,它们在成熟突变体中的表达发生了改变。RNA-seq 数据分析显示,与对照幼苗相比,缺磷(Pi)幼苗中 55 个 F-box 转录本受到影响。在根、茎和幼苗中,八个成员的持续上调,包括两个韧皮部蛋白 2B(PP2-B)基因 PP2-B15 和 MATERNAL EFFECT EMBRYO ARREST 66(MEE66)同源物,在多个时间点上调,表明它们在番茄 Pi 饥饿反应中起着关键作用。在蔗糖缺乏时,这种上调的减弱表明该代谢物对于这些基因在 Pi 缺乏幼苗中的强烈激活是必要的。总之,这项研究鉴定了在果实成熟和 Pi 饥饿反应中具有潜在作用的新的 F-box 基因,并为番茄和其他相关物种中候选基因的功能特征开辟了新的途径。