Institute of Agricultural Engineering, Anhui Academy of Agricultural Sciences, Hefei, China.
Institute of Leisure Agriculture, Jiangsu Academy of Agricultural Sciences, Nanjing, China.
J Exp Bot. 2021 Sep 30;72(18):6319-6335. doi: 10.1093/jxb/erab213.
The v-myb avian myeloblastosis viral oncogene homolog (MYB) family of transcription factors is extensively distributed across the plant kingdom. However, the functional significance of red maple (Acer rubrum) MYB transcription factors remains unclear. Our research identified 393 MYB transcription factors in the Acer rubrum genome, and these ArMYB members were unevenly distributed across 34 chromosomes. Among them, R2R3 was the primary MYB sub-class, which was further divided into 21 sub-groups with their Arabidopsis homologs. The evolution of the ArMYB family was also investigated, with the results revealing several R2R3-MYB sub-groups with expanded membership in woody species. Here, we report on the isolation and characterization of ArMYB89 in red maple. Quantitative real-time PCR analysis revealed that ArMYB89 expression was significantly up-regulated in red leaves in contrast to green leaves. Sub-cellular localization experiments indicated that ArMYB89 was localized in the nucleus. Further experiments revealed that ArMYB89 could interact with ArSGT1 in vitro and in vivo. Overexpression of ArMYB89 in tobacco enhances the anthocyanin content of transgenic plants. In conclusion, our results contribute to the elucidation of a theoretical basis for the ArMYB gene family, and provide a foundation for further characterization of the biological roles of MYB genes in the regulation of Acer rubrum leaf color.
植物界广泛分布着 v-myb 禽成髓细胞瘤病毒癌基因同源物(MYB)家族转录因子。然而,红枫(Acer rubrum)MYB 转录因子的功能意义尚不清楚。我们的研究在红枫基因组中鉴定出 393 个 MYB 转录因子,这些 ArMYB 成员不均匀地分布在 34 条染色体上。其中,R2R3 是主要的 MYB 亚类,进一步分为 21 个亚组,与拟南芥同源。还研究了 ArMYB 家族的进化,结果表明几个 R2R3-MYB 亚组在木本物种中成员扩展。在此,我们报道了红枫中 ArMYB89 的分离和鉴定。定量实时 PCR 分析显示,与绿叶相比,ArMYB89 在红叶中的表达显著上调。亚细胞定位实验表明 ArMYB89 定位于细胞核。进一步的实验表明 ArMYB89 可以在体外和体内与 ArSGT1 相互作用。在烟草中过表达 ArMYB89 可提高转基因植物的花青素含量。总之,我们的结果为 ArMYB 基因家族的阐明提供了理论基础,并为进一步研究 MYB 基因在调控红枫叶片颜色中的生物学作用提供了基础。