6533b7dbfe1ef96bd1270acb

RESEARCH PRODUCT

Parasite avoidance behaviours in aquatic environments

Donald C. BehringerAnssi KarvonenJamie Bojko

subject

suojautuminen0106 biological sciences0301 basic medicineAquatic Organismsbehavioural immunityZoologyinfektioteläinten käyttäytyminen010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyHost-Parasite Interactions03 medical and health sciencesloisetAvoidance LearningAnimalsParasite hostingfreshwaterPathogenvesieläimistöbiologyHost (biology)Aquatic ecosystemfungimarineArticlesHost defencebiology.organism_classificationBiological EvolutionInvertebratesinfectionavoidance behaviourtaudinaiheuttajat030104 developmental biologyAvoidance behaviourVertebratesta1181MacroparasiteGeneral Agricultural and Biological SciencesBacteriapathogen

description

Parasites, including macroparasites, protists, fungi, bacteria and viruses, can impose a heavy burden upon host animals. However, hosts are not without defences. One aspect of host defence, behavioural avoidance, has been studied in the terrestrial realm for over 50 years, but was first reported from the aquatic environment approximately 20 years ago. Evidence has mounted on the importance of parasite avoidance behaviours and it is increasingly apparent that there are core similarities in the function and benefit of this defence mechanism between terrestrial and aquatic systems. However, there are also stark differences driven by the unique biotic and abiotic characteristics of terrestrial and aquatic (marine and freshwater) environments. Here, we review avoidance behaviours in a comparative framework and highlight the characteristics of each environment that drive differences in the suite of mechanisms and cues that animals use to avoid parasites. We then explore trade-offs, potential negative effects of avoidance behaviour and the influence of human activities on avoidance behaviours. We conclude that avoidance behaviours are understudied in aquatic environments but can have significant implications for disease ecology and epidemiology, especially considering the accelerating emergence and re-emergence of parasites. This article is part of the Theo Murphy meeting issue ‘Evolution of pathogen and parasite avoidance behaviours'.

https://doi.org/10.1098/rstb.2017.0202