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Nakoune, E.

Publications and source records attributed to Nakoune, E..

2 recordsLinked to original sources

Large circulation of a novel vesiculovirus in bats in the Mediterranean region

Bats are the natural reservoirs of a variety of emerging or re-emerging viruses. Among them, rabies virus (genus Lyssavirus, family Rhabdoviridae) is of the first and most iconic described in these animals. Since its first description, various new bat lyssaviruses have been regularly described. Apart from lyssaviruses, other bat rhabdoviruses have been also identified, including members of the Vesiculovirus, Ledantevirus and more recently Alphanemrhavirus and Tupavirus genera. However, the family Rhabdoviridae is one of the most abundant and diverse viral families, with 318 officially recognized species divided into 3 subfamilies and 46 different genera. Thus, the number of bat- associated rhabdoviruses is probably higher. In this study, we first developed and validated a combined nested RT-qPCR technique (pan-rhabdo RT-nqPCR) dedicated to the broad detection of animal rhabdovirus. After validation, this technique was used for a large retrospective screening of archival bat samples (n = 1962), including blood (n = 816), brain (n = 723) and saliva (n = 423). These samples were collected from various bat species over a period of 12 years (2007-2019) in 9 different countries in Europe and Africa. A total of 23 samples (1.2%) from Miniopterus schreibersii, Rhinolophus euryale and Rhinolophus ferrumequinum bat species was found positive for rhabdovirus infection, including 17 (2.1%) blood and 6 (1.4%) saliva samples, all collected from bats originated from the Mediterranean region. The complete virus genome sequences were obtained by next-generation sequencing for most of the positive samples. Molecular and phylogenetic analysis of these sequences demonstrated that these virus isolates, named Mediterranean bat virus (MBV), were closely related, and represented a new species Vesiculovirus mediterranean within the Vesiculovirus genus. MBV was more specifically related to the other bat vesiculoviruses previously described in China and North America, together clustering into a distinct group of bat viruses within this genus. Interestingly, our results suggest that MBV is widely distributed, at least in the West part of the Mediterranean region, where it can act as an arbovirus infecting and circulating in multiple bat species. These findings expand the host range and the viral diversity of bat vesiculoviruses and pave the way for further investigations to determine the route of transmission and the dynamic of diffusion of these viruses into bat colonies, as well as to evaluate their potential hazard for public health.

microbiology↗

Identifying the most probable mammal reservoir hosts for Monkeypox virus based on ecological niche comparisons

BackgroundPrevious human cases or epidemics have suggested that Monkeypox virus (MPXV) can be transmitted through contacts with animals of African rainforests. Although MPXV has been identified in many mammal species, most are likely secondary hosts and the reservoir host has yet to be discovered. Methodology/Principal FindingsIn this study, we provide the full list of African mammal genera (and species) in which MPXV was previously detected and predict the geographic distributions of all species of these genera based on museum specimens and an ecological niche modelling (ENM) method. Then, we reconstruct the ecological niche of MPXV using georeferenced data on animal MPXV sequences and human index cases, and conduct overlap analyses with the ecological niches inferred for 99 mammal species in order to identify the most probable animal reservoir. Conclusions/SignificanceOur results show that the MPXV niche covers three African rainforests, the Congo Basin and Upper and Lower Guinean forests. The four mammal species showing the best niche overlap with MPXV are all arboreal rodents, including three squirrels, Funisciurus anerythrus, Funisciurus pyrropus, and Heliosciurus rufobrachium, and Graphiurus lorraineus. We conclude that the most probable MPXV reservoir is F. anerythrus based on two niche overlap metrics, the areas of higher probabilities of occurrence, and available data on MPXV detection. SummaryMonkeypox (MPX) is an emerging zoonotic disease, endemic to rainforests of West and Central Africa, which manifests as a fever, swollen lymph nodes, and fatigue, followed by a rash with macular lesions progressing from papules to vesicles, pustules and scabs, usually on the face, hands, and feet for two to four weeks. The case fatality rate ranges from 1-3% in West Africa to 5-10% in Central Africa. The disease has been reported in 10 African countries between 1970 and today, with an increasing number of cases over the last decades and several exportations outside the continent, the last one in 2022 resulting in an epidemic involving mostly men who have sex with men, with more than 80,000 cases detected worldwide. Although MPX virus has been identified in many mammal species, most are likely secondary hosts and the reservoir host has yet to be discovered. In this study, we compare the predicted geographic distribution (ecological niche) of the MPX virus with that of 99 mammal species, and conclude that the most probable MPX reservoir is Thomass rope squirrel (Funisciurus anerythrus), followed by three other arboreal rodents, including two squirrels (Funisciurus pyrropus and Heliosciurus rufobrachium) and the Lorrain dormouse (Graphiurus lorraineus).

ecology↗