Variation in host home range size decreases rabies vaccination effectiveness by increasing the spatial spread of rabies virus.


Journal

The Journal of animal ecology
ISSN: 1365-2656
Titre abrégé: J Anim Ecol
Pays: England
ID NLM: 0376574

Informations de publication

Date de publication:
06 2020
Historique:
received: 08 08 2018
accepted: 21 11 2019
pubmed: 21 1 2020
medline: 16 1 2021
entrez: 21 1 2020
Statut: ppublish

Résumé

Animal movement influences the spatial spread of directly transmitted wildlife disease through host-host contact structure. Wildlife disease hosts vary in home range-associated foraging and social behaviours, which may increase the spread and intensity of disease outbreaks. The consequences of variation in host home range movement and space use on wildlife disease dynamics are poorly understood, but could help to predict disease spread and determine more effective disease management strategies. We developed a spatially explicit individual-based model to examine the effect of spatiotemporal variation in host home range size on the spatial spread rate, persistence and incidence of rabies virus (RABV) in raccoons (Procyon lotor). We tested the hypothesis that variation in home range size increases RABV spread and decreases vaccination effectiveness in host populations following pathogen invasion into a vaccination zone. We simulated raccoon demography and RABV dynamics across a range of magnitudes and variances in weekly home range size for raccoons. We examined how variable home range size influenced the relative effectiveness of three components of oral rabies vaccination (ORV) programmes targeting raccoons-timing and frequency of bait delivery, width of the ORV zone and proportion of hosts immunized. Variability in weekly home range size increased RABV spread rates by 1.2-fold to 5.2-fold compared to simulations that assumed a fixed home range size. More variable host home range sizes decreased relative vaccination effectiveness by 71% compared to less variable host home range sizes under conventional vaccination conditions. We found that vaccination timing was more influential for vaccination effectiveness than vaccination frequency or vaccination zone width. Our results suggest that variation in wildlife home range movement behaviour increases the spatial spread and incidence of RABV. Our vaccination results underscore the importance of prioritizing individual-level space use and movement data collection to understand wildlife disease dynamics and plan their effective control and elimination.

Identifiants

pubmed: 31957005
doi: 10.1111/1365-2656.13176
pmc: PMC7317853
doi:

Substances chimiques

Rabies Vaccines 0

Banques de données

Dryad
['10.5061/dryad.79cnp5hrn']

Types de publication

Journal Article Research Support, U.S. Gov't, Non-P.H.S.

Langues

eng

Sous-ensembles de citation

IM

Pagination

1375-1386

Informations de copyright

© 2020 The Authors. Journal of Animal Ecology published by John Wiley & Sons Ltd on behalf of British Ecological Society.

Références

Lancet Infect Dis. 2002 Jun;2(6):327-43
pubmed: 12144896
Ecol Lett. 2009 Nov;12(11):1147-57
pubmed: 19694783
Philos Trans R Soc Lond B Biol Sci. 2010 Jul 27;365(1550):2289-301
pubmed: 20566505
J Am Vet Med Assoc. 2018 Apr 15;252(8):945-957
pubmed: 29595389
Am J Epidemiol. 1987 Sep;126(3):429-37
pubmed: 3497576
J Am Vet Med Assoc. 2005 Sep 1;227(5):785-92
pubmed: 16178403
Philos Trans R Soc Lond B Biol Sci. 2013 Jun 24;368(1623):20120142
pubmed: 23798690
Am Nat. 2013 Sep;182(3):E73-82
pubmed: 23933730
Vet J. 2015 Jan;203(1):10-7
pubmed: 25466578
PLoS Negl Trop Dis. 2009 Dec 22;3(12):e549
pubmed: 20027214
Mol Ecol. 2007 Dec;16(23):4919-29
pubmed: 17944854
J Anim Ecol. 2015 Nov;84(6):1720-31
pubmed: 26172427
PLoS One. 2006 Dec 20;1:e27
pubmed: 17183654
Am Nat. 2016 Oct;188(4):460-74
pubmed: 27622879
Annu Rev Phytopathol. 2012;50:379-402
pubmed: 22681449
Prev Vet Med. 2005 Oct 12;71(3-4):225-40
pubmed: 16153724
Front Ecol Environ. 2012 Mar 1;10(2):75-82
pubmed: 23482675
N Z Vet J. 2003 Apr;51(2):73-80
pubmed: 16032303
Nature. 2006 Oct 12;443(7112):692-5
pubmed: 17036003
Nature. 2005 Nov 17;438(7066):355-9
pubmed: 16292310
Ecol Appl. 2010 Jan;20(1):278-88
pubmed: 20349847
Ecol Lett. 2008 Jun;11(6):637-50
pubmed: 18400017
J Anim Ecol. 2020 Jun;89(6):1375-1386
pubmed: 31957005
Ecol Lett. 2018 Apr;21(4):588-604
pubmed: 29446237
J Wildl Dis. 2018 Jul;54(3):520-527
pubmed: 29595380
Biol Rev Camb Philos Soc. 2005 May;80(2):205-25
pubmed: 15921049
J R Soc Interface. 2011 Jun 6;8(59):776-86
pubmed: 21030428
Philos Trans R Soc Lond B Biol Sci. 2015 May 26;370(1669):
pubmed: 25870393
Proc Natl Acad Sci U S A. 1997 Jan 7;94(1):338-42
pubmed: 8990210
Science. 2015 Jun 12;348(6240):aaa2478
pubmed: 26068858
Vaccine. 2013 Jun 10;31(26):2811-5
pubmed: 23602534
Proc Natl Acad Sci U S A. 2018 Jul 10;115(28):7374-7379
pubmed: 29941567
Mol Ecol. 2009 Jan;18(1):43-53
pubmed: 19140963
J Wildl Dis. 2006 Jul;42(3):589-605
pubmed: 17092890
J Wildl Dis. 2009 Jul;45(3):772-84
pubmed: 19617488
J Wildl Dis. 1998 Oct;34(4):752-63
pubmed: 9813845
Ecol Lett. 2017 Jan;20(1):3-18
pubmed: 28000433
Nature. 1985 Nov 28-Dec 4;318(6044):323-9
pubmed: 3906406
Nature. 2005 May 26;435(7041):491-6
pubmed: 15917808
Ecol Appl. 2006 Jun;16(3):1026-36
pubmed: 16827000
Nature. 2006 Feb 16;439(7078):843-6
pubmed: 16357869
J Wildl Dis. 2014 Jul;50(3):582-95
pubmed: 24807178
Anim Behav. 1998 May;55(5):1211-27
pubmed: 9632506
Proc R Soc Lond B Biol Sci. 1986 Nov 22;229(1255):111-50
pubmed: 2880348
Proc Biol Sci. 2010 Feb 22;277(1681):633-42
pubmed: 19889705
PLoS One. 2013 Oct 10;8(10):e75830
pubmed: 24130746
Mol Ecol. 2008 Nov;17(22):4874-86
pubmed: 19140978
J Anim Ecol. 2018 May;87(3):559-580
pubmed: 28944450

Auteurs

Katherine M McClure (KM)

United States Department of Agriculture, Animal and Plant Health Inspection Service, National Wildlife Research Center, Fort Collins, CO, USA.
Department of Microbiology, Immunology, and Pathology, Colorado State University, Fort Collins, CO, USA.

Amy T Gilbert (AT)

United States Department of Agriculture, Animal and Plant Health Inspection Service, National Wildlife Research Center, Fort Collins, CO, USA.

Richard B Chipman (RB)

United States Department of Agriculture, Animal and Plant Health Inspection Service, National Rabies Management Program, Concord, NH, USA.

Erin E Rees (EE)

Land and Sea Systems Analysis Inc., Granby, QC, Canada.
National Microbiology Laboratory, Public Health Risk Sciences Division, Public Health Agency of Canada, Saint-Hyacinthe, QC, Canada.

Kim M Pepin (KM)

United States Department of Agriculture, Animal and Plant Health Inspection Service, National Wildlife Research Center, Fort Collins, CO, USA.

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