Department of Biotechnology, School of Life Sciences and Technology, University of Electronic Science and Technology of China, Chengdu, China.
Department of Biotechnology, Shaheed Benazir Bhutto University, Sheringal, K.P, Pakistan.
Planta. 2021 Apr 15;253(5):101. doi: 10.1007/s00425-021-03627-y.
Exhaustive searches of the rice genome have revealed 30 different potential OsDof (Oryza sativa DNA binding with One Finger) genes. Their subcellular localization, phylogenetic relationship, conserved motifs identification, chromosomal allocation, expression patterns, and interaction networks were analyzed. The Dof (DNA binding with One Finger) family of transcription factors represents a particular class of plant-specific transcriptional regulators, contain a highly conserved region of 50-52 amino acids (Dof domain) and involved in various plant developmental processes and response to various environmental stresses. Few (Oryza sativa) OsDof genes have been demonstrated previously for their biological functions but there is no comprehensive study on most of the Dof genes of rice. In the current study, exhaustive searches of the rice genome revealed 30 different potential OsDof genes, and then their subcellular localization, phylogenetic relationship, conserved motifs identification, chromosomal allocation, expression patterns, and interaction networks were analyzed. Phylogenetic analysis of Dof proteins in rice showed that they are distributed in 4 groups. By genome-wide observation of gene expression profiles, we found that OsDof genes showed significant variances in expression levels in different tissues across multiple developmental stages. Protein-protein correlation network analysis, shows a statically significant overlap of some OsDofs, suggesting their similar functions and a high degree of co-expression. The Dof family transcription factors have been reported for their involvement in the regulation of various gene expression processes in rice but still, most of the Dof genes are not characterized for their specific physiological functions. This study revealed useful information and clues about predicting the potential roles of OsDofs in rice by combining their genome-wide characterization, expression profiling, protein-protein interactions, and for further studies to develop high-quality rice varieties.
对水稻基因组的全面搜索揭示了 30 个不同的潜在 OsDof(与一个手指结合的水稻 DNA)基因。分析了它们的亚细胞定位、系统发育关系、保守基序鉴定、染色体分配、表达模式和相互作用网络。Dof(与一个手指结合的 DNA)家族转录因子代表一类特殊的植物特异性转录调控因子,含有一个高度保守的 50-52 个氨基酸(Dof 结构域)区域,参与各种植物发育过程和对各种环境胁迫的反应。先前已经证明少数(水稻)OsDof 基因具有生物学功能,但对水稻大多数 Dof 基因没有进行全面研究。在本研究中,对水稻基因组进行了全面搜索,揭示了 30 个不同的潜在 OsDof 基因,然后分析了它们的亚细胞定位、系统发育关系、保守基序鉴定、染色体分配、表达模式和相互作用网络。水稻 Dof 蛋白的系统发育分析表明,它们分布在 4 个组中。通过全基因组观察基因表达谱,我们发现 OsDof 基因在不同组织和多个发育阶段的表达水平存在显著差异。蛋白质-蛋白质相关网络分析显示,一些 OsDofs 存在静态显著重叠,表明它们具有相似的功能和高度的共表达。已经报道 Dof 家族转录因子参与水稻中各种基因表达过程的调节,但大多数 Dof 基因的特定生理功能仍未得到描述。本研究通过全基因组特征描述、表达谱分析、蛋白质-蛋白质相互作用以及进一步研究来开发高质量水稻品种,揭示了有关预测 OsDofs 在水稻中潜在作用的有用信息和线索。