Bunyavirales is a very large order including viruses infecting a variety of taxonomic groups such as arthropods, vertebrates, plants, and protozoa. Some bunyaviruses are transmitted between vertebrate hosts by blood-sucking arthropods and cause major diseases in humans and animals. It is not understood why only some bunyaviruses have evolved the capacity to be transmitted by arthropod vectors. Here we show that only vector-borne bunyaviruses express a non-structural protein, NSm, whose function has so far remained largely elusive. Using as experimental system Bunyamwera virus (BUNV) and its invertebrate host, Aedes aegypti, we show that NSm is dispensable for viral replication in mosquito cells in vitro but is absolutely required for successful infection in the female mosquito following a blood meal. More specifically, NSm is required for cell-to-cell spread and egress from the mosquito midgut, a known barrier to viral infection. Notably, the requirement for NSm is specific to the midgut; bypassing this barrier by experimental intrathoracic infection of the mosquito eliminates the necessity of NSm for virus spread in other tissues, including the salivary glands. Overall, we unveiled a key evolutionary process that allows the transmission of vector-borne bunyaviruses between arthropod and vertebrate hosts.
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http://dx.doi.org/10.1038/s41467-024-54809-7 | DOI Listing |
Front Immunol
March 2025
Specialised Microbiology and Laboratories, United Kingdom Health Security Agency (UKHSA), Salisbury, Wiltshire, United Kingdom.
Introduction: Nipah virus (NiV) is one of a group of highly pathogenic viruses classified within the Henipavirus genus. Since 2012 at least 11 new henipa-like viruses have been identified, including from new locations and reservoir hosts; the pathogenicity of these new viruses has yet to be determined, but two of them have been associated with morbidity, including fatalities.
Methods: The efficacy and cross-reactivity of two vaccine candidates derived from the soluble glycoproteins of both NiV and Hendra virus (HeV) was evaluated in our recently established hamster model.
J Evol Biol
March 2025
Integrative Biology, University of California - Berkeley, Berkeley, CA 94720, USA.
Given their ubiquity in nature and their importance to human and agricultural health it is important to gain a better understanding of the drivers of the evolution of infectious disease. Across vertebrates, invertebrates and plants, defence mechanisms can be expressed either constitutively (always present and costly) or induced (activated and potentially costly only upon infection). Theory has shown that this distinction has important implications to the evolution of defence due to differences in their impact on both individual fitness and the feedback of the population level epidemiological outcomes such as prevalence.
View Article and Find Full Text PDFInt J Mol Sci
February 2025
Polytechnic University of Coimbra, Rua da Misericórdia, Lagar dos Cortiços, S. Martinho do Bispo, 3045-093 Coimbra, Portugal.
The present paper addresses topics from various fields of biology. Its purpose is to enlarge the understanding of the usage of bioinformatics tools in the phylogenetic analysis of RNA viruses. The paper highlights the benefits of using information technology in virology, bringing the scientific community closer to unraveling the mysteries of RNA virus evolution and their adaptation to different niches and hosts and facilitating the understanding of their rapid mutation processes.
View Article and Find Full Text PDFInt J Mol Sci
February 2025
Department of Experimental Medicine, University of Rome Tor Vergata, Via Montpellier 1, 00133 Rome, Italy.
Kidney transplantation is currently the treatment of choice for patients with end-stage kidney diseases. Although significant advancements in kidney transplantation have been achieved over the past decades, the host's immune response remains the primary challenge, often leading to potential graft rejection. Effective management of the immune response is essential to ensure the long-term success of kidney transplantation.
View Article and Find Full Text PDFBMC Ecol Evol
March 2025
Museum Koenig Bonn, Leibniz Institute for the Analysis of Biodiversity Change, Adenauerallee 127, D- 53113, Bonn, Germany.
Ecological opportunity is considered a main driver of adaptive diversification. Colonization of new areas and habitats provides novel opportunities, which may lead to phenotypic change and rapid diversification. The geographically isolated island Sulawesi in Indonesia hosts numerous endemic radiations.
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