Hantavirus in rodents in the United States: Temporal and spatial trends and report of new hosts

白足鼠 汉坦病毒 血清流行率 汉坦病毒肺综合征 田鼠 生物 汉坦病毒感染 鹿鼠 啮齿动物 动物 Puumala病毒 兽医学 病毒学 生态学 病毒 抗体 血清学 医学 免疫学
作者
Francisca Astorga,Abdelghafar Alkishe,Paanwaris Paansri,Gabriel Mantilla,Luis E. Escobar
出处
期刊:Ecosphere [Wiley]
卷期号:16 (3)
标识
DOI:10.1002/ecs2.70209
摘要

Abstract In North America, the rodent‐borne hantavirus pulmonary syndrome is predominantly caused by the Sin Nombre virus, typically associated with the deer mouse Peromyscus maniculatus . Utilizing data from the National Ecological Observatory Network (NEON) hantavirus program, we assessed factors that may influence the spatial and temporal distribution of hantavirus in rodent populations across the United States. Between 2014 and 2019, the NEON hantavirus program conducted 104,379 small mammal captures and collected 14,004 blood samples from 49 species at 45 field sites. Our study identified 296 seropositive samples across 15 rodent species, including 8 Peromyscus species. We describe six new species with hantavirus seropositive samples not previously reported as hantavirus hosts. The highest number of seropositive samples was obtained from Pe. maniculatus ( n = 116; 2.9% seroprevalence), followed by Peromyscus leucopus ( n = 96; 2.8%) and Microtus pennsylvanicus ( n = 33; 4.2%). Hantavirus seroprevalence showed an uneven spatial distribution, with the highest seroprevalence found in Virginia (7.8%, 99 seropositive samples), Colorado (5.7%, n = 37), and Texas (4.8%, n = 19). Hantavirus seropositive samples were obtained from 32 sites, 10 of which presented seropositive samples in species other than Pe. maniculatus or Pe. leucopus . Seroprevalence was inconsistent across years but showed intra‐annual bimodal trends, and in Pe. maniculatus and Pe. leucopus , the number of captures correlated with seroprevalence in the following months. Seroprevalence was higher in adult males, with only one seropositive sample obtained from a juvenile Peromyscus truei . Higher body mass, presence of scrotal testes, and nonpregnant status were associated with higher seropositivity. The NEON dataset, derived from a multiyear and structured surveillance system, revealed the extensive distribution of hantavirus across broad taxonomic and environmental ranges. Future research should consider winter season surveillance and continued analyses of stored samples for a comprehensive spatiotemporal study of hantavirus circulation in wildlife. Global changes are expected to affect the dynamics of rodent populations by affecting their availability of resources and demography and, consequently, may modify transmission rates of rodent‐borne zoonotic pathogens such as hantavirus. This study can be considered a baseline to assess hantavirus patterns across host taxa, geographies, and seasons in the United States.
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