Sharif Rahat, Xie Chen, Wang Jin, Cao Zhen, Zhang Haiqiang, Chen Peng, Yuhong Li
College of Horticulture, Northwest A&F University, Yangling 712100, China.
College of Life Science, Northwest A&F University, Yangling 712100, China.
Int J Biol Macromol. 2020 May 3. doi: 10.1016/j.ijbiomac.2020.04.124.
Information retrieved from genomic assembly may provide important clues and various molecular aspects in plants. Our research identified 40 CsHDZ genes in the Cucumber genome database. Subsequently; we performed the conserved motif and domain analysis of CsHDZ proteins. The phylogeny of the CsHDZ proteins further divides into 4 subfamilies (HD-ZIP I, HD-ZIP II, HD-ZIP III, and HD-ZIP IV) based on the structural similarities and functional diversities. The GO (Gene ontology) analysis of CsHDZ proteins showed that they are responsive to environmental stimuli and involved in numerous growth and developmental processes. The qRT-PCR analysis of 11 CsHDZ genes showed that they are expressed in all the tested tissues of Cucumis sativus. The differential expression pattern of CsHDZ genes unfolded their possible involvement in responding to various abiotic stresses and powdery mildew stress. It has been found that the CsHDZ22 localized in the nucleus which possibly participates in the regulatory mechanisms of various biological and cellular processes. In the light of above-mentioned outcomes, it has been deducted that CsHDZ genes in the Cucumis sativus genome play an important role in mediating the resistance to various abiotic stresses and powdery mildew stress as well as provide significant clues for functional studies.
从基因组组装中检索到的信息可能为植物提供重要线索和各种分子层面的信息。我们的研究在黄瓜基因组数据库中鉴定出40个CsHDZ基因。随后,我们对CsHDZ蛋白进行了保守基序和结构域分析。基于结构相似性和功能多样性,CsHDZ蛋白的系统发育进一步分为4个亚家族(HD-ZIP I、HD-ZIP II、HD-ZIP III和HD-ZIP IV)。CsHDZ蛋白的基因本体(GO)分析表明,它们对环境刺激有反应,并参与众多生长和发育过程。对11个CsHDZ基因的qRT-PCR分析表明,它们在黄瓜的所有测试组织中均有表达。CsHDZ基因的差异表达模式揭示了它们可能参与对各种非生物胁迫和白粉病胁迫的响应。已发现CsHDZ22定位于细胞核,可能参与各种生物和细胞过程的调控机制。鉴于上述结果,可以推断黄瓜基因组中的CsHDZ基因在介导对各种非生物胁迫和白粉病胁迫的抗性中起重要作用,并为功能研究提供重要线索。