College of Life Sciences, Sichuan Agricultural University, Yaan 625014, China.
Panxi Crops Research and Utilization Key Laboratory of Sichuan Province, Xichang University, Xichang 615013, China.
Biomed Res Int. 2023 Feb 14;2023:6051511. doi: 10.1155/2023/6051511. eCollection 2023.
The plant B3 gene superfamily contains a large number of transcription factors playing a vital role in both vegetative growth and reproductive development in plants. Although several B3 genes have been well studied, molecular functions of the B3 genes in olive are largely unknown. In our study, a total of 200 B3 genes were identified in olive genome based on RNA-seq and comparative genomic analyses and further classified into five groups (i.e., REM, RAV, LAV, HSI, and ARF) based on phylogenetic analysis. Results of gene structure and motif composition analyses revealed diversified functions among these five groups of B3 genes. Results of genomic duplication and syntenic analyses indicated the gene expansion in the B3 genes. Results of gene expression based on both transcriptomics and relative expression revealed the tissue-biased expression patterns in B3 genes. The results of the comparative expression analysis of B3 genes between two olive cultivars with high and low oil contents identified several potential REM genes which may be involved in oil biosynthesis in olive. Based on the comprehensive characterization of the molecular structures and functions of B3 genes in olive genome, our study provided novel insights into the potential roles of B3 transcription factors in oil biosynthesis in olive and lays the groundwork for the functional explorations into this research field.
植物 B3 基因超家族包含大量转录因子,在植物的营养生长和生殖发育中起着至关重要的作用。尽管已经对几个 B3 基因进行了深入研究,但橄榄中 B3 基因的分子功能在很大程度上仍是未知的。在我们的研究中,基于 RNA-seq 和比较基因组分析,在橄榄基因组中总共鉴定出 200 个 B3 基因,并进一步根据系统发育分析将其分为五个亚组(即 REM、RAV、LAV、HSI 和 ARF)。基因结构和基序组成分析的结果揭示了这五个亚组的 B3 基因之间具有多样化的功能。基因组复制和共线性分析的结果表明 B3 基因的扩张。基于转录组学和相对表达的基因表达结果表明 B3 基因在组织上具有偏表达模式。在两个含油量高和低的橄榄品种之间对 B3 基因进行比较表达分析的结果确定了几个可能参与橄榄油脂生物合成的 REM 基因。基于对橄榄基因组中 B3 基因的分子结构和功能的全面表征,本研究为 B3 转录因子在橄榄油脂生物合成中的潜在作用提供了新的见解,并为该研究领域的功能探索奠定了基础。