Contact heterogeneity in deer mice: implications for Sin Nombre virus transmission
- 6 January 2009
- journal article
- Published by The Royal Society in Proceedings Of The Royal Society B-Biological Sciences
- Vol. 276 (1660) , 1305-1312
- https://doi.org/10.1098/rspb.2008.1693
Abstract
Heterogeneities within disease hosts suggest that not all individuals have the same probability of transmitting disease or becoming infected. This heterogeneity is thought to be due to dissimilarity in susceptibility and exposure among hosts. As such, it has been proposed that many host-pathogen systems follow the general pattern whereby a small fraction of the population accounts for a large fraction of the pathogen transmission. This disparity in transmission dynamics is often referred to as '20/80 Rule', i.e. approximately 20 per cent of the hosts are responsible for 80 per cent of pathogen transmission. We investigated the role of heterogeneity in contact rates among potential hosts of a directly transmitted pathogen by examining Sin Nombre virus (SNV) in deer mice (Peromyscus maniculatus). Using foraging arenas and powder marking, we documented contacts between wild deer mice in Great Basin Desert, central Utah. Our findings demonstrated heterogeneity among deer mice, both in frequency and in duration of contacts with other deer mice. Contact dynamics appear to follow the general pattern that a minority of the population accounts for a majority of the contacts. We found that 20 per cent of individuals in the population were responsible for roughly 80 per cent of the contacts observed. Larger-bodied individuals appear to be the functional group with the greatest SNV transmission potential. Contrary to our predictions, transmission potential was not influenced by breeding condition or sex.Keywords
This publication has 42 references indexed in Scilit:
- Differential Resource Allocation in Deer Mice Exposed to Sin Nombre VirusPhysiological and Biochemical Zoology, 2007
- Host heterogeneity dominates West Nile virus transmissionProceedings Of The Royal Society B-Biological Sciences, 2006
- Seasonality and the dynamics of infectious diseasesEcology Letters, 2006
- A Preliminary Study of the Patterns of Sin Nombre Viral Infection and Shedding in Naturally Infected Deer Mice (Peromyscus maniculatus)Vector-Borne and Zoonotic Diseases, 2005
- The effects of reducing population density on contact rates between brushtail possums: implications for transmission of bovine tuberculosisJournal of Applied Ecology, 2002
- Shedding and Intracage Transmission of Sin Nombre Hantavirus in the Deer Mouse ( Peromyscus maniculatus ) ModelJournal of Virology, 2002
- Effect of Fluorescent Powder Marking of Females on Mate Choice by Male White-Footed Mice (Peromyscus leucopus)The American Midland Naturalist, 2001
- Long-Term Studies of Hantavirus Reservoir Populations in the Southwestern United States: A SynthesisEmerging Infectious Diseases, 1999
- Long-Term Hantavirus Persistence in Rodent Populations in Central ArizonaEmerging Infectious Diseases, 1999
- An Evaluation of the Pathological Effects of Fluorescent Powder on Deer Mice (Peromyscus maniculatus)Journal of Mammalogy, 1994