Contact heterogeneity in deer mice: implications for Sin Nombre virus transmission

Christine A Clay1, Erin M Lehmer, Andrea Previtali

  • 1Department of Biology, Westminster College, 1840 South 1300 East, Salt Lake City, UT 84105, USA. cclay@westminstercollege.edu

Insights

A small group of deer mice drive Sin Nombre virus (SNV) transmission due to varied contact rates. Larger mice had higher transmission potential, not sex or breeding status.

Area of Science:

  • Ecology
  • Epidemiology
  • Mammalogy

Background:

  • Disease transmission is often unevenly distributed within host populations.
  • This heterogeneity is linked to variations in host susceptibility and exposure.
  • The '20/80 Rule' suggests a small host fraction drives most pathogen transmission.

Purpose of the Study:

  • To investigate heterogeneity in contact rates among deer mice (Peromyscus maniculatus) as a driver of Sin Nombre virus (SNV) transmission.
  • To determine if contact patterns in deer mice align with the '20/80 Rule'.

Main Methods:

  • Observed direct contacts between wild deer mice in naturalistic foraging arenas.
  • Utilized powder marking to identify and track individual mouse interactions.
  • Quantified frequency and duration of contacts within a deer mouse population in Utah.

Main Results:

  • Deer mice exhibited significant heterogeneity in contact frequency and duration.
  • Contact dynamics followed the '20/80 Rule': 20% of individuals accounted for 80% of contacts.
  • Larger body size was associated with higher SNV transmission potential.
  • Breeding condition and sex did not significantly influence transmission potential.

Conclusions:

  • Contact heterogeneity is a key factor in Sin Nombre virus transmission dynamics in deer mice.
  • Larger deer mice represent a critical reservoir for SNV transmission.
  • Findings support the '20/80 Rule' in a wildlife host-pathogen system, highlighting the importance of individual variation.