Key Laboratory for Forest Resource Conservation and Utilization in the Southwest Mountains of China (Ministry of Education), College of Forestry, Southwest Forestry University, Kunming 650224, China.
Int J Mol Sci. 2023 Aug 23;24(17):13101. doi: 10.3390/ijms241713101.
PEAR proteins are a type of plant-specific DNA binding with one finger (Dof) transcription factors that play a key role in the regulation of plant growth, especially during phloem cell growth and seed germination in . However, the identification, characteristics and function of PEAR proteins, particularly in woody plants, need to be further studied. In the present study, 43 candidate PEAR proteins harboring the conserved Zf-Dof domain were obtained in . Based on phylogenetic and structural analysis, 10 representative PEAR candidates were selected, belonging to different phylogenetic groups. The functions of PEAR proteins in the stress response, signal transduction, and growth regulation of stem cambium and roots undergoing vigorous cell division in were revealed based on their expression patterns as characterized by qRT-PCR analysis, in accordance with the results of cis-element analysis. In vitro experiments showed that the interaction of transcription factor (E2F) and cyclin indirectly reflects the growth regulation function of PEAR through light signaling and cell-cycle regulation. Therefore, our results provide new insight into the identity of PEAR proteins and their function in stress resistance and vigorous cell division regulation of tissues in , which may serve as a basis for further investigation of the functions and characteristics of PEAR proteins in other plants.
PEAR 蛋白是一类植物特异性 DNA 结合蛋白,具有一个手指(Dof)转录因子,在植物生长的调节中起着关键作用,特别是在韧皮细胞生长和种子萌发中。然而,PEAR 蛋白的鉴定、特征和功能,特别是在木本植物中,需要进一步研究。本研究在 中获得了 43 个含有保守 Zf-Dof 结构域的候选 PEAR 蛋白。基于系统发育和结构分析,选择了 10 个有代表性的 PEAR 候选蛋白,它们属于不同的系统发育群。根据 qRT-PCR 分析的表达模式,揭示了 PEAR 蛋白在 中茎形成层和根系的胁迫响应、信号转导以及生长调节中的功能,这些组织正在进行旺盛的细胞分裂,顺式元件分析的结果与之相符。体外实验表明,转录因子(E2F)和细胞周期蛋白的相互作用通过光信号和细胞周期调节间接反映了 PEAR 的生长调节功能。因此,我们的结果为 中 PEAR 蛋白的身份及其在组织胁迫抗性和旺盛细胞分裂调节中的功能提供了新的见解,这可能为进一步研究其他植物中 PEAR 蛋白的功能和特征提供依据。