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鹅细小病毒的密码子使用偏性及其对宿主的适应。

Codon usage bias of goose circovirus and its adaptation to host.

机构信息

Scientific Research and Experiment Center, Fujian Police College, Fuzhou 350007, China.

College of Animal Science, Fujian Agriculture and Forestry University, Fuzhou 350002, China.

出版信息

Poult Sci. 2024 Jul;103(7):103775. doi: 10.1016/j.psj.2024.103775. Epub 2024 Apr 17.

Abstract

Goose circovirus (GoCV), a potential immunosuppressive virus possessing a circular single-stranded DNA genome, is widely distributed in both domesticated and wild geese. This virus infection causes significant economic losses in the waterfowl industry. The codon usage patterns of viruses reflect the evolutionary history and genetic architecture, allowing them to adapt quickly to changes in the external environment, particularly to their hosts. In this study, we retrieved the coding sequences (Rep and Cap) and the genome of GoCV from GenBank, conducting comprehensive research to explore the codon usage patterns in 144 GoCV strains. The overall codon usage of the GoCV strains was relatively similar and exhibited a slight bias. The effective number of codons (ENC) indicated a low overall extent of codon usage bias (CUB) in GoCV. Combined with the base composition and relative synonymous codon usage (RSCU) analysis, the results revealed a bias toward A- and G-ending codons in the overall codon usage. Analysis of the ENC-GC plot and neutrality plot suggested that natural selection plays an important role in shaping the codon usage pattern of GoCV, with mutation pressure having a minor influence. Furthermore, the correlations between ENC and relative indices, as well as correspondence analysis (COA), showed that hydrophobicity and geographical distribution also contribute to codon usage variation in GoCV, suggesting the possible involvement of natural selection. In conclusion, GoCV exhibits comparatively slight CUB, with natural selection being the major factor shaping the codon usage pattern of GoCV. Our research contributes to a deeper understanding of GoCV evolution and its host adaptation, providing valuable insights for future basic studies and vaccine design related to GoCV.

摘要

鹅圆环病毒(Goose circovirus,GoCV)是一种潜在的免疫抑制性病毒,具有环状单链 DNA 基因组,广泛分布于家养和野生鹅中。这种病毒感染会给水禽产业造成重大经济损失。病毒的密码子使用模式反映了其进化历史和遗传结构,使它们能够快速适应外部环境的变化,特别是适应其宿主。在本研究中,我们从 GenBank 中检索了 GoCV 的编码序列(Rep 和 Cap)和基因组,对 144 株 GoCV 株的密码子使用模式进行了全面研究。GoCV 株的整体密码子使用情况相对相似,表现出轻微的偏好性。有效密码子数(ENC)表明 GoCV 的整体密码子使用偏好程度较低(CUB)。结合碱基组成和相对同义密码子使用(RSCU)分析,结果表明 GoCV 的整体密码子使用偏好 A 和 G 结尾的密码子。ENC-GC 图和中性分析表明,自然选择在塑造 GoCV 密码子使用模式方面发挥着重要作用,突变压力的影响较小。此外,ENC 与相对指数的相关性以及对应分析(COA)表明,疏水性和地理分布也对 GoCV 的密码子使用变异有影响,这表明可能存在自然选择。总之,GoCV 的 CUB 相对较小,自然选择是塑造 GoCV 密码子使用模式的主要因素。本研究有助于深入了解 GoCV 的进化及其对宿主的适应,为未来与 GoCV 相关的基础研究和疫苗设计提供了有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e499/11091504/e1108ef89b91/gr1.jpg

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