Li Junhua, Yuan Jinhong, Li Mingjun
College of Life Sciences, Henan Normal University, Xinxiang, Henan 453007, China.
College of Life Sciences, Henan Normal University, Xinxiang, Henan 453007, China ; Institute of Vegetables and Flowers, Chinese Academy of Agricultural Sciences, Beijing 100081, China.
Biomed Res Int. 2014;2014:708364. doi: 10.1155/2014/708364. Epub 2014 Aug 27.
Meiosis is essential for plant reproduction because it is the process during which homologous chromosome pairing, synapsis, and meiotic recombination occur. The meiotic transcriptome is difficult to investigate because of the size of meiocytes and the confines of anther lobes. The recent development of isolation techniques has enabled the characterization of transcriptional profiles in male meiocytes of Arabidopsis. Gene expression in male meiocytes shows unique features. The direct interaction of transcription factors (TFs) with DNA regulatory sequences forms the basis for the specificity of transcriptional regulation. Here, we identified putative cis-regulatory elements (CREs) associated with male meiocyte-expressed genes using in silico tools. The upstream regions (1 kb) of the top 50 genes preferentially expressed in Arabidopsis meiocytes possessed conserved motifs. These motifs are putative binding sites of TFs, some of which share common functions, such as roles in cell division. In combination with cell-type-specific analysis, our findings could be a substantial aid for the identification and experimental verification of the protein-DNA interactions for the specific TFs that drive gene expression in meiocytes.
减数分裂对于植物繁殖至关重要,因为它是同源染色体配对、联会和减数分裂重组发生的过程。由于减数分裂细胞的大小和花药叶的限制,减数分裂转录组很难进行研究。分离技术的最新发展使得对拟南芥雄性减数分裂细胞中的转录谱进行表征成为可能。雄性减数分裂细胞中的基因表达具有独特的特征。转录因子(TFs)与DNA调控序列的直接相互作用构成了转录调控特异性的基础。在这里,我们使用计算机工具鉴定了与雄性减数分裂细胞表达基因相关的假定顺式调控元件(CREs)。拟南芥减数分裂细胞中优先表达的前50个基因的上游区域(1 kb)具有保守基序。这些基序是转录因子的假定结合位点,其中一些具有共同功能,例如在细胞分裂中的作用。结合细胞类型特异性分析,我们的发现对于驱动减数分裂细胞中基因表达的特定转录因子的蛋白质-DNA相互作用的鉴定和实验验证可能有很大帮助。