State Key Laboratory of Tree Genetics and Breeding, Northeast Forestry University, Harbin 150040, China.
Bamboo Research Institute, Nanjing Forestry University, 159 Longpan Road, Nanjing 210037, China.
Int J Mol Sci. 2022 Sep 18;23(18):10934. doi: 10.3390/ijms231810934.
The F-box family exists in a wide variety of plants and plays an extremely important role in plant growth, development and stress responses. However, systematic studies of F-box family have not been reported in . In the present study, 245 proteins in total were identified, and a phylogenetic tree was constructed on the basis of their C-terminal conserved domains, which was divided into 16 groups (A-P). F-box proteins were located in 19 chromosomes and six scaffolds, and segmental duplication was main force for the evolution of the F-box family in poplar. Collinearity analysis was conducted between poplar and other species including , , Buch, and , which indicated that poplar has a relatively close relationship with . The promoter regions of genes mainly contain two kinds of -elements, including hormone-responsive elements and stress-related elements. Transcriptome analysis indicated that there were 82 differentially expressed genes (DEGs), among which 64 DEGs were in the roots, 17 in the leaves and 26 in the stems. In addition, a co-expression network analysis of four representative genes indicated that their co-expression gene sets were mainly involved in abiotic stress responses and complex physiological processes. Using bioinformatic methods, we explored the structure, evolution and expression pattern of F-box genes in poplar, which provided clues to the molecular function of F-box family members and the screening of salt-tolerant genes.
F-box 家族广泛存在于各种植物中,在植物的生长、发育和应激反应中起着极其重要的作用。然而,在 中尚未对 F-box 家族进行系统研究。本研究共鉴定到 245 个 F-box 蛋白,并基于其 C 端保守结构域构建了系统进化树,分为 16 个组(A-P)。F-box 蛋白定位于 19 条染色体和 6 个支架上,片段复制是杨树 F-box 家族进化的主要动力。杨树与包括 、 、 、 和 在内的其他物种之间进行了共线性分析,表明杨树与 具有较近的亲缘关系。 基因的启动子区主要含有两种 - 元件,包括激素响应元件和应激相关元件。转录组分析表明,有 82 个差异表达的 基因(DEGs),其中 64 个在根中,17 个在叶中,26 个在茎中。此外,对四个代表性 基因的共表达网络分析表明,它们的共表达基因集主要参与非生物胁迫反应和复杂的生理过程。本研究采用生物信息学方法研究了杨树 F-box 基因的结构、进化和表达模式,为 F-box 家族成员的分子功能和耐盐 基因的筛选提供了线索。