Chatti Khaled, Kmeli Narjes, Bettaieb Inchirah, Hamdi Jihen, Gaaied Sonia, Mlouka Rania, Mars Messaoud, Bouktila Dhia
Laboratory of Genetics, Biodiversity and Bioressources Exploitation (LR11ES41), Higher Institute of Biotechnology of Monastir, University of Monastir, 5000, Monastir, Tunisia.
Laboratory of Agrobiodiversity and Ecotoxicology (LR02AGR21), Higher Institute of Agronomy of Chott-Mariem, University of Sousse, 4042, Sousse, Tunisia.
Biochem Genet. 2024 Nov 7. doi: 10.1007/s10528-024-10960-w.
The R2R3-MYB transcription factor (TF) family is crucial for regulating plant growth, stress response, and fruit ripening. Although this TF family has been examined in a multitude of plants, the R2R3-MYB TFs in Ficus carica, a Mediterranean fruit species, have yet to be characterized. This study identified and classified 63 R2R3-MYB genes (FcMYB1 to FcMYB63) in the F. carica genome. We analyzed these genes for physicochemical properties, conserved motifs, phylogenetic relationships, gene architecture, selection pressure, and gene expression profiles and networks. The genes were classified into 29 clades, with members of the same clade showing similar exon-intron structures and motif compositions. Of the 54 orthologous gene pairs shared with mulberry (Morus notabilis), 52 evolved under negative selection, while two pairs (FcMYB55/MnMYB20 and FcMYB59/MnMYB31) experienced diversifying selection. RNA-Seq analysis showed that FcMYB26, FcMYB33, and FcMYB34 were significantly overexpressed in fig fruit peel during maturation phase III. Weighted gene co-expression network analysis (WGCNA) indicated that these genes are part of an expression module associated with the anthocyanin pathway. RT-qPCR validation confirmed these findings and revealed that the Tunisian cultivars 'Zidi' and 'Soltani' have cultivar-specific R2R3-FcMYB genes highly overexpressed during the final stage of fruit maturation and color acquisition. These genes likely influence cultivar-specific pigment synthesis. This study provides a comprehensive overview of the R2R3-MYB TF family in fig, offering a framework for selecting genes related to fruit peel color in breeding programs.
R2R3-MYB转录因子(TF)家族对于调控植物生长、应激反应和果实成熟至关重要。尽管该TF家族已在多种植物中进行了研究,但地中海水果品种无花果中的R2R3-MYB TF尚未得到表征。本研究在无花果基因组中鉴定并分类了63个R2R3-MYB基因(FcMYB1至FcMYB63)。我们分析了这些基因的理化性质、保守基序、系统发育关系、基因结构、选择压力以及基因表达谱和网络。这些基因被分为29个进化枝,同一进化枝的成员具有相似的外显子-内含子结构和基序组成。在与桑树(Morus notabilis)共有的54对直系同源基因对中,52对在负选择下进化,而两对(FcMYB55/MnMYB20和FcMYB59/MnMYB31)经历了多样化选择。RNA测序分析表明,FcMYB26、FcMYB33和FcMYB34在果实成熟第三阶段的无花果果皮中显著过表达。加权基因共表达网络分析(WGCNA)表明,这些基因是与花青素途径相关的表达模块的一部分。RT-qPCR验证证实了这些发现,并揭示突尼斯品种“Zidi”和“Soltani”具有品种特异性的R2R3-FcMYB基因,在果实成熟和颜色形成的最后阶段高度过表达。这些基因可能影响品种特异性色素合成。本研究全面概述了无花果中的R2R3-MYB TF家族,为育种计划中选择与果皮颜色相关的基因提供了框架。