Disgust in animals and the application of disease avoidance to wildlife management and conservation

Author:

Sarabian Cécile1ORCID,Wilkinson Anna2,Sigaud Marie3ORCID,Kano Fumihiro4,Tobajas Jorge5ORCID,Darmaillacq Anne‐Sophie6,Kalema‐Zikusoka Gladys7,Plotnik Joshua M.8,MacIntosh Andrew J. J.9ORCID

Affiliation:

1. School of Biological Sciences The University of Hong Kong Hong Kong SAR China

2. School of Life Sciences University of Lincoln Lincoln UK

3. Centre d'Écologie et des Sciences de la Conservation Muséum National d'Histoire Naturelle Paris France

4. Centre for the Advanced Study of Collective Behaviour University of Konstanz Konstanz Germany

5. Departamento de Botánica, Ecología y Fisiología Vegetal Universidad de Córdoba Córdoba Spain

6. Ethologie Animale et Humaine Université de Caen Normandie Caen France

7. Conservation Through Public Health Entebbe Uganda

8. Department of Psychology, Hunter College and the Graduate Center City University of New York New York USA

9. Wildlife Research Center Kyoto University Inuyama Japan

Abstract

Abstract Disgust is an adaptive system hypothesized to have evolved to reduce the risk of becoming sick. It is associated with behavioural, cognitive and physiological responses tuned to allow animals to avoid and/or get rid of parasites, pathogens and toxins. Little is known about the mechanisms and outcomes of disease avoidance in wild animals. Furthermore, given the escalation of negative human‐wildlife interactions, the translation of such knowledge into the design of evolutionarily relevant conservation and wildlife management strategies is becoming urgent. Contemporary methods in animal ecology and related fields, using direct (sensory cues) or indirect (remote sensing technologies and machine learning) means, provide a flexible toolbox for testing and applying disgust at individual and collective levels. In this review/perspective paper, we provide an empirical framework for testing the adaptive function of disgust and its associated disease avoidance behaviours across species, from the least to the most social, in different habitats. We predict various trade‐offs to be at play depending on the social system and ecology of the species. We propose five contexts in which disgust‐related avoidance behaviours could be applied, including endangered species rehabilitation, invasive species, crop‐raiding, urban pests and animal tourism. We highlight some of the perspectives and current challenges of testing disgust in the wild. In particular, we recommend future studies to consider together disease, predation and competition risks. We discuss the ethics associated with disgust experiments in the above contexts. Finally, we promote the creation of a database gathering disease avoidance evidence in animals and its applications.

Publisher

Wiley

Subject

Animal Science and Zoology,Ecology, Evolution, Behavior and Systematics

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