Characterization of two novel reassortant bluetongue virus serotype 1 strains isolated from farmed white-tailed deer (Odocoileus virginianus) in Florida, USA.

IF 1.9 4区 医学 Q3 GENETICS & HEREDITY Virus Genes Pub Date : 2023-10-01 Epub Date: 2023-07-13 DOI:10.1007/s11262-023-02019-6
Pedro H O Viadanna, Savannah G Grace, Tracey D Logan, Emily DeRuyter, Julia C Loeb, Kristen N Wilson, Zoe S White, Juan M C Krauer, John A Lednicky, Thomas B Waltzek, Samantha M Wisely, Kuttichantran Subramaniam
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Abstract

Hemorrhagic diseases caused by epizootic hemorrhagic disease virus or by bluetongue virus (BTV) are the most important orbivirus diseases affecting ruminants, including white-tailed deer (WTD). Bluetongue virus is of particular concern for farmed WTD in Florida, given its lethality and its wide distribution throughout the state. This study reports the clinical findings, ancillary diagnostics, and genomic characterization of two BTV serotype 1 strains isolated from two farmed WTD, from two different farms in Florida in 2019 and 2022. Phylogenetic and genetic analyses indicated that these two novel BTV-1 strains were reassortants. In addition, our analyses reveal that most genome segments of these strains were acquired from BTVs previously detected in ruminants in Florida, substantiating their endemism in the Southeastern U.S. Our findings underscore the need for additional research to determine the genetic diversity of BTV strains in Florida, their prevalence, and the potential risk of new BTV strains to WTD and other ruminants.

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从美国佛罗里达州养殖的白尾鹿(Odocoieus virginianus)中分离的两株新的蓝舌病毒血清型1重配株的特征。
由流行性出血性疾病病毒或蓝舌病毒(BTV)引起的出血性疾病是影响反刍动物(包括白尾鹿(WTD))的最重要的病毒性疾病。鉴于蓝舌病毒的致命性及其在全州的广泛分布,它尤其引起佛罗里达州养殖WTD的关注。本研究报告了2019年和2022年从佛罗里达州两个不同农场的两个养殖WTD中分离的两个BTV血清型1菌株的临床发现、辅助诊断和基因组特征。系统发育和遗传学分析表明,这两个新的BTV-1菌株是重组子。此外,我们的分析表明,这些菌株的大多数基因组片段是从以前在佛罗里达州反刍动物中检测到的BTV中获得的,这证明了它们在美国东南部的特有性,以及新的BTV菌株对WTD和其他反刍动物的潜在风险。
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来源期刊
Virus Genes
Virus Genes 医学-病毒学
CiteScore
3.30
自引率
0.00%
发文量
76
审稿时长
3 months
期刊介绍: Viruses are convenient models for the elucidation of life processes. The study of viruses is again on the cutting edge of biological sciences: systems biology, genomics, proteomics, metagenomics, using the newest most powerful tools. Huge amounts of new details on virus interactions with the cell, other pathogens and the hosts – animal (including human), insect, fungal, plant, bacterial, and archaeal - and their role in infection and disease are forthcoming in perplexing details requiring analysis and comments. Virus Genes is dedicated to the publication of studies on the structure and function of viruses and their genes, the molecular and systems interactions with the host and all applications derived thereof, providing a forum for the analysis of data and discussion of its implications, and the development of new hypotheses.
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