4.6 Article

Avoidance behaviour in laboratory house mice (Musmusculus) and Norway rats (Rattus norvegicus) towards predator odours

Journal

PLOS ONE
Volume 16, Issue 1, Pages -

Publisher

PUBLIC LIBRARY SCIENCE
DOI: 10.1371/journal.pone.0245441

Keywords

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Funding

  1. ANPCYT (Agencia Nacional de Promocion Cientifica y Tecnica) [PICT 2013-0721]
  2. CONICET (Consejo Nacional de Investigaciones Cientificas y Tecnicas) [PIP 1122015010922]
  3. UBACYT (Universidad de Buenos Aires) [UBACyT 20020130100282BA]

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The study found that TMT, cat urine, and cat body odor have aversive effects on predator-inexperienced Mus musculus and Rattus norvegicus. The results showed different responses of mice and rats in the presence of odors, indicating the potential of fear responses as a method to control rodent pests.
Mus musculus and Rattus sp. are considered pest species because they reach high densities in urban areas, crop fields and food storage and productive systems such as breeding farms and orchards. Their control relies mainly on rodenticide application, but the effectiveness of this application is reduced due to behavioural responses and resistance. Novel methods are based on the use of chemical signals as odours that may be attractants, repellents or may reduce the reproductive success of pest species. The aim of this paper is to study the aversive effect of TMT, cat urine and cat body odour on predator-inexperienced Mus musculus and Rattus norvegicus under laboratory conditions. The experimental apparatus comprised three boxes connected by PVC pipes in a linear arrangement. In lateral boxes, odour sources or distilled water were introduced, while animals were placed in the central box at the beginning of the experiment. Rats showed freezing behaviour, reduced visits in the presence of TMT and cat fur. Mice reduced their visits with cat body and cat urine. This study provides evidence of the usefulness of using fear responses as a way to control rodent pests, which must be adapted to the environment and species to be applied.

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