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该物种(马尔堡病毒和拉文病毒)的基因组进化与系统动力学,以了解病毒适应性和马尔堡病毒病的传播动态。

Genomic Evolution and Phylodynamics of the Species (Marburg and Ravn Viruses) to Understand Viral Adaptation and Marburg Virus Disease's Transmission Dynamics.

作者信息

Muvunyi Claude Mambo, Mohamed Nouh Saad, Siddig Emmanuel Edwar, Ahmed Ayman

机构信息

Rwanda Biomedical Center (RBC), Kigali 11KG St 644, Rwanda.

Pan-Africa One Health Institute (PAOHI), Kigali 11KG St 203, Rwanda.

出版信息

Pathogens. 2024 Dec 14;13(12):1107. doi: 10.3390/pathogens13121107.

Abstract

In this review, we investigated the genetic diversity and evolutionary dynamics of the species that includes both Marburg virus (MARV) and Ravn virus (RAVV). Using sequence data from natural reservoir hosts and human cases reported during outbreaks, we conducted comprehensive analyses to explore the genetic variability, constructing haplotype networks at both the genome and gene levels to elucidate the viral dynamics and evolutionary pathways. Our results revealed distinct evolutionary trajectories for MARV and RAVV, with MARV exhibiting higher adaptability across different ecological regions. MARV showed substantial genetic diversity and evidence of varied evolutionary pressures, suggesting an ability to adapt to diverse environments. In contrast, RAVV demonstrated limited genetic diversity, with no detected recombination events, suggesting evolutionary stability. These differences indicate that, while MARV continues to diversify and adapt across regions, RAVV may be constrained in its evolutionary potential, possibly reflecting differing roles within the viral ecology of the species. Our analysis explains the evolutionary mechanisms of these viruses, highlighting that MARV is going through evolutionary adaptation for human-to-human transmission, alarmingly underscoring the global concern about MARV causing the next pandemic. However, further transdisciplinary One Health research is warranted to answer some remaining questions including the host range and genetic susceptibility of domestic and wildlife species as well as the role of the biodiversity network in the disease's ecological dynamics.

摘要

在本综述中,我们研究了包括马尔堡病毒(MARV)和拉文病毒(RAVV)在内的该物种的遗传多样性和进化动态。利用自然宿主以及疫情期间报告的人类病例的序列数据,我们进行了全面分析以探索遗传变异性,在基因组和基因水平构建单倍型网络以阐明病毒动态和进化途径。我们的结果揭示了MARV和RAVV不同的进化轨迹,MARV在不同生态区域表现出更高的适应性。MARV显示出丰富的遗传多样性以及不同进化压力的证据,表明其具有适应多样环境的能力。相比之下,RAVV的遗传多样性有限,未检测到重组事件,表明其进化稳定性。这些差异表明,虽然MARV在不同区域持续多样化和适应,但RAVV的进化潜力可能受到限制,这可能反映了该物种在病毒生态学中的不同作用。我们的分析解释了这些病毒的进化机制,突出表明MARV正在经历向人际传播的进化适应,令人担忧地凸显了全球对MARV引发下一场大流行的担忧。然而,有必要开展进一步的跨学科“同一健康”研究,以回答一些尚存的问题,包括家养和野生动物物种的宿主范围和遗传易感性,以及生物多样性网络在该疾病生态动态中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/75d9/11728648/67d3c64bcdf1/pathogens-13-01107-g001.jpg

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