6533b854fe1ef96bd12ae031

RESEARCH PRODUCT

Testing the habituation assumption underlying models of parasitoid foraging behavior

Stefano ColazzaAntonino CusumanoAntonino CusumanoKatrina AbramEzio PeriPaul K. Abram

subject

0106 biological sciencesTime allocationForaginglcsh:MedicineOptimal foraging theorySensory systemBiology010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyOptimal foraging theoryParasitoidHabituation; Infochemical cues; Learning; Optimal foraging theory; Patch exploitation; Neuroscience (all); Medicine (all); Biochemistry Genetics and Molecular Biology (all); Agricultural and Biological Sciences (all)03 medical and health sciences0302 clinical medicineLearningHabituationLaboratory of EntomologyNeuroscience (all)Biochemistry Genetics and Molecular Biology (all)Animal BehaviorEcologyHost (biology)Ecology017-4018General NeuroscienceMedicine (all)lcsh:RfungiGeneral Medicinebiology.organism_classificationLaboratorium voor EntomologieInfochemical cuesBehavioral responseSettore AGR/11 - Entomologia Generale E ApplicataAgricultural and Biological Sciences (all)Infochemical cueHabituationEPSGeneral Agricultural and Biological SciencesNeuroscienceEntomologyPatch exploitation030217 neurology & neurosurgery

description

BackgroundHabituation, a form of non-associative learning, has several well-defined characteristics that apply to a wide range of physiological and behavioral responses in many organisms. In classic patch time allocation models, habituation is considered to be a major mechanistic component of parasitoid behavioral strategies. However, parasitoid behavioral responses to host cues have not previously been tested for the known, specific characteristics of habituation.MethodsIn the laboratory, we tested whether the foraging behavior of the egg parasitoidTrissolcus basalisshows specific characteristics of habituation in response to consecutive encounters with patches of host (Nezara viridula) chemical contact cues (footprints), in particular: (i) a training interval-dependent decline in response intensity, and (ii) a training interval-dependent recovery of the response.ResultsAs would be expected of a habituated response, wasps trained at higher frequencies decreased their behavioral response to host footprints more quickly and to a greater degree than those trained at low frequencies, and subsequently showed a more rapid, although partial, recovery of their behavioral response to host footprints. This putative habituation learning could not be blocked by cold anesthesia, ingestion of an ATPase inhibitor, or ingestion of a protein synthesis inhibitor.DiscussionOur study provides support for the assumption that diminishing responses of parasitoids to chemical indicators of host presence constitutes habituation as opposed to sensory fatigue, and provides a preliminary basis for exploring the underlying mechanisms.

10.7717/peerj.3097https://doi.org/10.7717/peerj.3097