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author Plowright, R. K.
Eby, P.
Hudson, P. J.
Smith, I. L.
Westcott, D.
Bryden, W. L.
Middleton, D.
Reid, P. A.
McFarlane, R. A.
Martin, G.
Tabor, G. M.
Skerratt, L. F.
Anderson, D. L.
Crameri, G.
Quammen, D.
Jordan, D.
Freeman, P.
Wang, L.-F.
Epstein, J. H.
Marsh, G. A.
Kung, N. Y.
McCallum, H.
author_facet Plowright, R. K.
Eby, P.
Hudson, P. J.
Smith, I. L.
Westcott, D.
Bryden, W. L.
Middleton, D.
Reid, P. A.
McFarlane, R. A.
Martin, G.
Tabor, G. M.
Skerratt, L. F.
Anderson, D. L.
Crameri, G.
Quammen, D.
Jordan, D.
Freeman, P.
Wang, L.-F.
Epstein, J. H.
Marsh, G. A.
Kung, N. Y.
McCallum, H.
contents (Uploaded by Plazi for the Bat Literature Project) Viruses that originate in bats may be the most notorious emerging zoonoses that spill over from wildlife into domestic animals and humans. Understanding how these infections filter through ecological systems to cause disease in humans is of profound importance to public health. Transmission of viruses from bats to humans requires a hierarchy of enabling conditions that connect the distribution of reservoir hosts, viral infection within these hosts, and exposure and susceptibility of recipient hosts. For many emerging bat viruses, spillover also requires viral shedding from bats, and survival of the virus in the environment. Focusing on Hendra virus, but also addressing Nipah virus, Ebola virus, Marburg virus and coronaviruses, we delineate this cross-species spillover dynamic from the within-host processes that drive virus excretion to land-use changes that increase interaction among species. We describe how land-use changes may affect co-occurrence and contact between bats and recipient hosts. Two hypoth...
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publishDate 2014
publisher Zenodo
record_format zenodo
spellingShingle Ecological dynamics of emerging bat virus spillover
Plowright, R. K.
Eby, P.
Hudson, P. J.
Smith, I. L.
Westcott, D.
Bryden, W. L.
Middleton, D.
Reid, P. A.
McFarlane, R. A.
Martin, G.
Tabor, G. M.
Skerratt, L. F.
Anderson, D. L.
Crameri, G.
Quammen, D.
Jordan, D.
Freeman, P.
Wang, L.-F.
Epstein, J. H.
Marsh, G. A.
Kung, N. Y.
McCallum, H.
Animals
Chiroptera
Ebola virus
Hendra virus in flying-foxes
Humans
Marburg virus
Models, Biological
Nipah virus
Queensland
RNA Virus Infections
RNA Viruses
Zoonoses
emerging infectious diseases of bat origin
severe acute respiratory syndrome coronavirus
Biodiversity
Mammalia
Chiroptera
Chordata
Animalia
bats
bat
(Uploaded by Plazi for the Bat Literature Project) Viruses that originate in bats may be the most notorious emerging zoonoses that spill over from wildlife into domestic animals and humans. Understanding how these infections filter through ecological systems to cause disease in humans is of profound importance to public health. Transmission of viruses from bats to humans requires a hierarchy of enabling conditions that connect the distribution of reservoir hosts, viral infection within these hosts, and exposure and susceptibility of recipient hosts. For many emerging bat viruses, spillover also requires viral shedding from bats, and survival of the virus in the environment. Focusing on Hendra virus, but also addressing Nipah virus, Ebola virus, Marburg virus and coronaviruses, we delineate this cross-species spillover dynamic from the within-host processes that drive virus excretion to land-use changes that increase interaction among species. We describe how land-use changes may affect co-occurrence and contact between bats and recipient hosts. Two hypoth...
title Ecological dynamics of emerging bat virus spillover
topic Animals
Chiroptera
Ebola virus
Hendra virus in flying-foxes
Humans
Marburg virus
Models, Biological
Nipah virus
Queensland
RNA Virus Infections
RNA Viruses
Zoonoses
emerging infectious diseases of bat origin
severe acute respiratory syndrome coronavirus
Biodiversity
Mammalia
Chiroptera
Chordata
Animalia
bats
bat
url https://doi.org/10.5281/zenodo.13423286