Park Kyungmin, Kim Kijin, Kim Jongwoo, Noh Juyoung, Kim Seong-Gyu, Cho Hee-Kyung, Seo Ye-Rin, Kim Jin Il, Park Man-Seong, Kim Won-Keun, Song Jin-Won
Department of Microbiology, Korea University College of Medicine, Seoul, Republic of Korea.
BK21 Graduate Program, Department of Biomedical Sciences, Korea University College of Medicine, Seoul, Republic of Korea.
Am J Trop Med Hyg. 2025 Jan 28;112(4):871-874. doi: 10.4269/ajtmh.24-0432. Print 2025 Apr 2.
The phylogeographic inference approach aims to connect genomic data with epidemiology to understand the spread and evolution of pathogens using visualization of spatiotemporal reconstructions. Orthohantavirus hantanense (HTNV), the causative agent of hemorrhagic fever with renal syndrome (HFRS), represents a significant global public health concern. Here, we introduce a localized Nextstrain platform for HTNV, offering a comprehensive resource for facilitating spatiotemporal genomic surveillance and the study of evolutionary dynamics of viral genomes. Nextstrain enables web-based visualization and simple sharing of graphic and numeric data through unique web addresses. The Nextstrain build for HTNV stands out for its user-friendly interface and is readily accessible online at https://nextstrain.org/community/KU-MV/Hantavirus. This study provides valuable insights into genomic surveillance, viral phylodynamics, and the evolutionary history of orthohantaviruses for the development of public health policies against endemic HFRS outbreaks.
系统发育地理学推断方法旨在将基因组数据与流行病学联系起来,通过时空重建可视化来了解病原体的传播和进化。汉坦病毒(HTNV)是肾综合征出血热(HFRS)的病原体,是全球重大公共卫生问题。在此,我们推出了一个针对HTNV的本地化Nextstrain平台,为促进时空基因组监测和病毒基因组进化动力学研究提供了全面资源。Nextstrain通过独特的网址实现基于网络的可视化以及图形和数值数据的简单共享。针对HTNV构建的Nextstrain以其用户友好的界面脱颖而出,可通过https://nextstrain.org/community/KU-MV/Hantavirus在线轻松访问。本研究为制定针对地方性HFRS疫情的公共卫生政策提供了有关基因组监测、病毒系统发育动力学和正汉坦病毒进化史的宝贵见解。