Pandiaraj S, Titus Gershom Ann, Nair Smita, Mathew Deepu, Valsalan Ravisankar
Centre for Plant Biotechnology and Molecular Biology, College of Agriculture, Kerala Agricultural University, Vellanikkara, Thrissur, Kerala, 680656, India.
Mol Biotechnol. 2024 Dec 23. doi: 10.1007/s12033-024-01337-w.
Plant viruses need host factors to complete their life cycle. The eukaryotic translation initiation factor 4E (eIF4E) and its isoforms are the host factors essential for infection by plant viruses in the genus Potyvirus. The present study describes the characterization of eIF4E gene in banana cultivar Nendran, and its interaction with the viral genome-linked protein (VPg) of banana bract mosaic virus (BBrMV). The in-silico analysis of 853 bp coding mRNA region of eIF4E revealed the presence of five exons. The deduced amino acid sequence had 99.58% identity with the predicted protein sequence of the eIF4E-1 in Musa acuminata subspecies malaccensis. Expression profiling of eIF4E gene in banana cultivar Nendran using qRT-PCR revealed up to 16.9-fold up-regulation of the gene in response to BBrMV infection, indicating its role in disease development. The three-dimensional models of the eIF4E and VPg proteins were generated to deduce the precise interaction between the two proteins. Using the online server ZDOCK, ten interaction complexes were obtained. In nine out of the ten complexes, the maximum number of residues of the eIF4E interacted with the Tyrosine-63rd residue of VPg. The corresponding nucleotides were identified as the potential targets for editing the host eIF4E gene to impart potyvirus resistance.
植物病毒需要宿主因子来完成其生命周期。真核生物翻译起始因子4E(eIF4E)及其异构体是马铃薯Y病毒属植物病毒感染所必需的宿主因子。本研究描述了香蕉品种Nendran中eIF4E基因的特征,以及它与香蕉苞片花叶病毒(BBrMV)的病毒基因组连接蛋白(VPg)的相互作用。对eIF4E的853 bp编码mRNA区域进行的电子分析显示存在五个外显子。推导的氨基酸序列与尖叶蕉亚种马六甲eIF4E-1的预测蛋白序列具有99.58%的同一性。使用qRT-PCR对香蕉品种Nendran中的eIF4E基因进行表达谱分析,结果显示该基因在受到BBrMV感染后上调了16.9倍,表明其在疾病发展中的作用。生成了eIF4E和VPg蛋白的三维模型,以推断这两种蛋白之间的精确相互作用。使用在线服务器ZDOCK获得了十个相互作用复合物。在十个复合物中的九个中,eIF4E的最大残基数与VPg的第63位酪氨酸残基相互作用。相应的核苷酸被确定为编辑宿主eIF4E基因以赋予马铃薯Y病毒抗性的潜在靶点。