Mapping evolutionary paradigm of bovine viral diarrhea virus Npro associated with different organizations of nucleotide.

IF 5.4 1区 农林科学 Q1 IMMUNOLOGY
Virulence Pub Date : 2025-12-01 Epub Date: 2025-08-29 DOI:10.1080/21505594.2025.2550620
Xili Feng, Zeyu Liu, Xiaoting Ren, Lele An, Xiao-Xia Ma
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引用次数: 0

Abstract

The non-structural protein (Npro) of bovine viral diarrhea virus (BVDV) is a crucial virulence factor that impairs the host's antiviral immune response and facilitates virus production. This study establishes a foundation for understanding how different selective pressures influence the formation of nucleotide pairs, synonymous codon, and context-dependent codon bias (CDCB) in BVDV Npro. BVDV genotype 1 exhibits a greater number of subgenotypes compared to other genotypes, yet its overall nucleotide usage bias in Npro is stronger. Within Npro, certain dinucleotides, specifically CpG and UpA, are notably suppressed, while UpG is selected with high frequency across all genotypes. The BVDV Npro region exhibits a pronounced bias in synonymous codon usage and possesses a genetic capacity to distinguish between genotypes. Unlike the patterns of mononucleotide and synonymous codon usage associated with BVDV genotyping, nucleotide pair usage and CDCB show significant variability due to the high mutation rate in the Npro coding sequence. Despite this variation, both nucleotide architectures demonstrate a unique evolutionary paradigm that goes beyond genotype-specific models. Aside from nucleotide composition constraints imposed by the high mutation rate in the viral genome, natural selective pressures arising from translational selection and host immune response also significantly influence the formation of various nucleotide architectures in the BVDV Npro. By analyzing the genetic characterizations associated with the different nucleotide architectures in the Npro, the diverse repertoire of nucleotide pairs, synonymous codons and CDCB may provide BVDV mutants with ample opportunities for direct adaptation and exaptation, thereby overcoming the robust immune defenses of the host.

牛病毒性腹泻病毒Npro与不同核苷酸组织相关的进化模式图谱。
牛病毒性腹泻病毒(BVDV)的非结构蛋白(Npro)是一个重要的毒力因子,它损害宿主的抗病毒免疫反应,促进病毒的产生。本研究为了解不同选择压力如何影响BVDV Npro中核苷酸对、同义密码子和上下文依赖密码子偏倚(CDCB)的形成奠定了基础。与其他基因型相比,BVDV基因型1表现出更多的亚基因型,但其在Npro中的总体核苷酸使用偏倚更强。在Npro中,某些二核苷酸,特别是CpG和UpA,被明显抑制,而UpG在所有基因型中被高频率选择。BVDV Npro区域在同义密码子使用方面表现出明显的偏见,并具有区分基因型的遗传能力。与BVDV基因分型相关的单核苷酸和同义密码子使用模式不同,由于Npro编码序列的高突变率,核苷酸对使用和CDCB表现出显著的变异性。尽管存在这种差异,但这两种核苷酸结构都展示了一种独特的进化范式,超越了基因型特异性模型。除了病毒基因组高突变率对核苷酸组成的限制外,翻译选择和宿主免疫反应引起的自然选择压力也显著影响BVDV Npro中各种核苷酸结构的形成。通过分析与Npro中不同核苷酸结构相关的遗传特征,不同的核苷酸对、同义密码子和CDCB可能为BVDV突变体提供了充足的直接适应和捕获机会,从而克服宿主的强大免疫防御。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Virulence
Virulence IMMUNOLOGY-MICROBIOLOGY
CiteScore
9.20
自引率
1.90%
发文量
123
审稿时长
6-12 weeks
期刊介绍: Virulence is a fully open access peer-reviewed journal. All articles will (if accepted) be available for anyone to read anywhere, at any time immediately on publication. Virulence is the first international peer-reviewed journal of its kind to focus exclusively on microbial pathogenicity, the infection process and host-pathogen interactions. To address the new infectious challenges, emerging infectious agents and antimicrobial resistance, there is a clear need for interdisciplinary research.
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