Kaleem Shaikh, Dahal Ujwal, Devi Shivani, Kour Bhumandeep, Kour Sharanpreet
Department of Biochemistry, School of Bioengineering and Biosciences, Lovely Professional University, Phagwara, Punjab, 144411, India.
Department of Forensic Science, School of Biomedical Science, Galgotias University, Greater Noida, Uttar Pradesh, 203201, India.
J Mol Evol. 2025 Sep 4. doi: 10.1007/s00239-025-10263-7.
Codon usage serves as a fundamental viral signature, influencing survival, adaptation, and pathogenicity. Viruses exhibit distinct codon usage patterns shaped by genome composition, host interactions, and evolutionary pressures. The differences between DNA and RNA viruses in codon usage reflect their replication strategies, host preferences, and genome constraints. Viral adaptation to host codon usage, genome size, and lifestyle further shapes translational efficiency and immune evasion mechanisms. Host tRNA abundance plays a crucial role in viral translation rates, while codon deoptimization is a strategy used by viruses to evade immune detection. Additionally, codon bias is linked to viral virulence, replication rates, and pathogenicity. Building on these concepts, this review synthesizes current knowledge on the interplay between virus-host translational interactions, codon bias-driven viral evolution, and their implications for pathogenesis, immune evasion, and epidemiology, while also outlining their practical applications in vaccine development, antiviral strategies, and viral diagnostics. We discuss current challenges in codon usage studies, including context-dependent variations and limited experimental validation, and propose future research directions that integrate computational and experimental approaches to deepen our understanding of viral codon bias and its role in evolution, host adaptation, and disease control.
密码子使用作为一种基本的病毒特征,影响着病毒的生存、适应和致病性。病毒表现出由基因组组成、宿主相互作用和进化压力所塑造的独特密码子使用模式。DNA病毒和RNA病毒在密码子使用上的差异反映了它们的复制策略、宿主偏好和基因组限制。病毒对宿主密码子使用、基因组大小和生活方式的适应进一步塑造了翻译效率和免疫逃避机制。宿主tRNA丰度在病毒翻译速率中起着关键作用,而密码子去优化是病毒用于逃避免疫检测的一种策略。此外,密码子偏好与病毒毒力、复制速率和致病性相关。基于这些概念,本综述综合了关于病毒-宿主翻译相互作用、密码子偏好驱动的病毒进化及其对发病机制、免疫逃避和流行病学的影响的现有知识,同时还概述了它们在疫苗开发、抗病毒策略和病毒诊断中的实际应用。我们讨论了密码子使用研究中的当前挑战,包括上下文依赖的变异和有限的实验验证,并提出了未来的研究方向,即整合计算和实验方法,以加深我们对病毒密码子偏好及其在进化、宿主适应和疾病控制中的作用的理解。